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  • GFZ Data Services  (382)
  • The Oxford Institute for Energy Studies  (103)
  • 2020-2023  (485)
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  • 1
    Publication Date: 2022-06-28
    Description: Py4HIP is an open-source software tool for Heat-In-Place calculations implemented as a self-explanatory Jupyter notebook written in Python (Py4HIP.ipynb) Calculating the Heat In Place (HIP) is a standard method for assessing the geothermal potential for a defined geological unit (e.g., Nathenson, 1975; Muffler and Cataldi, 1978; Garg and Combs, 2015). The respective implementation in Py4HIP is based on a volumetric quantification of contained energy after Muffler and Cataldi (1978), where the geological unit at hand is considered spatially variable in terms of its temperature, thickness, porosity, density and volumetric heat capacity of its solid and fluid (brine) components. The energy values
    Language: English
    Type: info:eu-repo/semantics/other
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  • 2
    Publication Date: 2022-12-17
    Description: The airborne hyperspectral image was acquired by the AVIRIS-Next Generation (AVIRIS-NG) instrument during the AVIRIS-NG Europe 2021 HyperSense campaign that has been conducted as a joint effort of ESA, NASA/JPL and the University of Zurich. Acquired was an agricultural area near Irlbach, Germany on May 30th, 2021. The data was preprocessed (radiometrically, geometrically and atmospherically corrected) to contain 419 bands in the 402 - 2495 nm spectral range. Metadata was acquired on the same day for the variables Leaf Area Index (LAI), Leaf Chlorophyll content, crop height and phenology. An overview of metadata acquisition and processing can be found in the HYPERedu YouTube videos on ground reference data acquisition in the field and ground reference data acquisition in the lab. More details on LAI and chlorophyll acquisition can be found in the field data guides assembled by the authors of this dataset via enmap.org (Danner et al., 2015; Süß et al., 2015). The dataset is made publically available within the massive open online course (MOOC) "Beyond the Visible - Introduction to Imaging Spectroscopy for Agricultural Applications", available from December 2022.
    Language: English
    Type: info:eu-repo/semantics/workingPaper
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  • 3
    Publication Date: 2022-12-20
    Description: This dataset provides friction data from ring-shear tests on feldspar sand FS900S used for the simulation of brittle behaviour in crust- and lithosphere-scale analogue experiments at the Tectonic Modelling Laboratory of the University of Bern (Zwaan et al. in prep; Richetti et al. in prep). The materials have been characterized by means of internal friction parameters as a remote service by the Helmholtz Laboratory for Tectonic Modelling (HelTec) at the GFZ German Research Centre for Geosciences in Potsdam (Germany). According to our analysis both materials show a Mohr-Coulomb behaviour characterized by a linear failure envelope. Peak, dynamic and reactivation friction coefficients of the feldspar sand are μP = 0.65, μD = 0.57, and μR = 0.62, respectively, and the Cohesion of the feldspar sand is in the order of 5-20 Pa. An insignificant rate-weakening of less than 1% per ten-fold rate change is registered for the feldspar sand. Granular healing is also minor.
    Language: English
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  • 4
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    GFZ Data Services
    Publication Date: 2022-12-20
    Description: This dataset includes five stations of an Ocean Bottom Seismometer (OBS) experiment conducted at the southern end of the Fonualei Rift and Spreading Center in the Lau Basin, southwestern Pacific. The OBS recorded continuously for 32-days on 4 components, including a hydrophone and a 3-component 4.5 Hz geophone. The experiment was conducted during RV Sonne cruise SO267, project ARCHIMEDES I. In the article, the authors report an increasing trend of methane emissions for June and July at a permafrost site in Siberia (Lena River Delta). Using the longest set of observational methane flux data in the Arctic, the authors demonstrate that the continuous warming has begun to trigger the projected enhancement of methane release in Arctic permafrost ecosystems. This software is written in MATLAB. Running the codes ([.m files](Code)) and loading the data files ([.mat files](Data)) requires the pre-installation of [MATLAB](/https://de.mathworks.com/products/matlab.html). IMPORTANT: The repository only contains dummy data. The data that is needed to run the code can be requested by Torsten Sachs and Christian Wille (contact authors). Although the scripts and the data files have been tested for newer versions of MATLAB (〉= MATLAB R2017a). The code might also run in older versions of MATLAB, but this has not been tested.
    Language: English
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  • 5
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    GFZ Data Services
    Publication Date: 2022-12-20
    Description: Orbital products describe positions and velocities of satellites, be it the Global Navigation Satellite System (GNSS) satellites or Low Earth Orbiter (LEO) satellites. These orbital products can be divided into the fastest available ones, the Near Realtime Orbits (NRT), which are mostly available within 15 to 60 minutes delay, followed by Rapid Science Orbit (RSO) products with a latency of two days and finally the Precise Science Orbit (PSO) which, with a latency of up to a few weeks, are the most delayed. The absolute positional accuracy increases with the time delay. This dataset compiles the RSO products for various LEO missions and the appropriate GNSS constellation in sp3 format. The individual solutions for each satellite mission are published with individual DOI as part of this compilation. GNSS Constellation: • GNSS 24h (v01) • GNSS 30h (v02) LEO Satellites: • CHAMP • GRACE • GRACE-FO • SAC-C • TanDEM-X/ TerraSAR-X Each solution is given in the Conventional Terrestrial Reference System (CTS). • The GNSS RSOs are 30-hour long arcs starting at 21:00 the day before the actual day and ending at 03:00 the day after. The accuracy of the GPS RSO sizes at the 3-cm level in terms of RMS values of residuals after Helmert transformation onto IGS combined orbit solutions (Version 1 GNSS RSOs are 24-hour long arcs starting at 00:00 and ending at 24:00 the actual day). • The LEO RSOs are generated based on these 30-hour GNSS RSOs in two pieces for the actual day with arc lengths of 14 hours and overlaps of 2 hours. One starting at 22:00 and ending at 12:00, one starting at 10:00 and ending at 24:00. The accuracy of the LEO RSOs is at the level of 1-2 cm in terms of SLR validation. The exact time covered by an arc is defined in the header of the files and indicated as well as in the filename. This dataset compiles RSO products for various LEO missions and the corresponding GNSS constellation in sp3 format in a revised processing version 2. The switch from previous version 1 to 2 was performed on 18-Feb-2019. Major changes from version 1 to 2 are the change from IERS 2003 to IERS 2010 conventions and ITRF 2008 to ITRF-2014, as well as the temporal extension of the GNSS constellation from previous 24 hours (version 1) to 30 hours (version 2) arcs. This temporal expansion eliminates the chaining of two consecutive 24-hour GNSS constellation solutions previously used to process day-overlapping LEO arcs in Version 1. This 24h GNSS constellation (Version 1) will continue to operate and be stored on the ISDC ftp server, as discussed in more detail in Section 8.1. All RSO LEO arcs will no longer be continued in version 1 after the changeover date and will only be available in version 2 since then.
    Language: English
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  • 6
    Publication Date: 2022-12-06
    Description: The scope of the Science Plan is to describe the scientific background, applications, and activities of the Environmental Mapping and Analysis Program (EnMAP) imaging spectroscopy mission. Primarily, this document addresses scientists and funding institutions, but it may also be of interest to environmental stakeholders and governmental agencies. It is designed to be a living document that will be updated throughout the entire mission lifetime. Chapter 1 provides a brief overview of the principles and current state of imaging spectroscopy. This is followed by an introduction to the EnMAP mission, including its objectives and impact on international programs as well as major environmental and societal challenges. Chapter 2 describes the EnMAP system together with data products and access, calibration/validation, and synergies with other missions. Chapter 3 gives an overview of the major fields of application such as vegetation and forests, geology and soils, coastal and inland waters, cryosphere, urban areas, atmosphere and hazards. Finally, Chapter 4 outlines the scientific exploitation strategy, which includes the strategy for community building and training, preparatory flight campaigns and software developments. A list of abbreviations is provided in the annex to this document and an extended glossary of terms and abbreviations is available on the EnMAP website.
    Language: English
    Type: info:eu-repo/semantics/report
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  • 7
    Publication Date: 2022-08-10
    Language: German
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  • 8
    Publication Date: 2022-08-10
    Language: English
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  • 9
    Publication Date: 2022-09-05
    Description: The WHU-GRACE-GPD01s models are the latest monthly gravity field solutions recovered from GRACE intersatellite geopotential difference (GPD) data processed at the School of Geodesy and Geomatics, Wuhan University, China. The intersatellite GPDs are estimated from GRACE Level-1B (RL03) data based on the improved energy balance equation and remove-compute-restore (RCR) technique, and the background models are consistent with GRACE Level-2 processing standards document (RL06). Further details are presented in Zhong et al. (2020, 2022). The WHU-GRACE-GPD01s models include two sets of GRACE monthly solutions: one is the unconstrained monthly solutions with the maximum degree and order of 60, the other is the constrained monthly solutions up to the maximum degree and order 96 with Kaula regularization constraint, and the optimal regularization parameter is determined using variance component estimation (VCE). This work is supported by the National Natural Science Foundation of China (No. 41974015, 41474019, 42061134007) and the Project Supported by the Special Fund of Hubei Luojia Laboratory (Grant No. 220100004).
    Language: English
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  • 10
    Publication Date: 2022-09-05
    Description: The International Geodynamics and Earth Tide Service (IGETS) was established in 2015 by the International Association of Geodesy. IGETS continues the activities of the Global Geodynamics Project (GGP) between 1997 and 2015 to provide support to geodetic and geophysical research activities using superconducting gravimeter (SG) data within the context of an international network. As part of this network, the Onsala station (code OS, instrument GWR OSG 054) was established in 2009 thanks to the financial support of the Committee for Infrastructure of the Swedish Research Council, until 2021, and of the Swedish geodetic survey Lantmäteriet since 2021. Continuous time-varying gravity and atmospheric pressure data from OS are integrated in the IGETS data base hosted by ISDC (Information System and Data Centre) at GFZ. The OS station (longitude: 11.9266 E; latitude: 57.3858 N and elevation: 7.93 m) is located at the Onsala Space Observatory, south of Gothenbourg, a well instrumented site for geodetic and meteorological studies (https://www.chalmers.se/en/researchinfrastructure/oso/Pages/default.aspx). An air-circulation system controls the humidity and temperature in the gravimeter house and there are 3 pillars available. Absolute gravity measurements are done every year by Lantmäteriet. - The time series of gravity and barometric pressure started in July 2009 and is going on. - The time sampling of the raw gravity and barometric pressure data of IGETS Level 1 is 1 minute. For a detailed description of the IGETS data base and the provided files see Voigt et al. (2016, http://doi.org/10.2312/GFZ.b103-16087). Rainfall data are also provided as auxiliary data to IGETS database. OS data are used in conjunction with projects of the Nordic Geodetic Commission (NKG) - Working Group for Geodynamics (https://www.nordicgeodeticcommission.com/working-group-of-geodynamics/). Interactive graphs are available at https://lab3.oso.chalmers.se/wx/gravimeter_data/
    Language: English
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  • 11
    Publication Date: 2022-10-23
    Description: This dataset provides results from rheological tests of glucose syrup from two suppliers tested within the EPOS Multi-scale Laboratories (MSL) trans-national access (TNA) program 2019 at the Laboratory of Experimental Tectonics (LET), Univ. Roma TRE, Italy. Syrups Glucowheat 45/81 (GW45) and Glucowheat 60/79 (GW60) are produced by Blattmann Schweiz AG, Switzerland (2019 batch). Syrups GlucoSweet 44 (GS44) and GlucoSweet 62 (GS62) are produced by ADEA (Amidi Destrini ed Affini), Italy (2019 batch) . The four tested glucose syrups are labeled according to their DE value (dextrose equivalent value). For tested products from Blattmann Schweiz AG, the second number refers to the weight percentage of dry substance. Glucose syrup GS44 is used in full lithospheric scale analogue experiments at the Tectonic Modelling Lab (TecLab) at the University of Bern, Switzerland as a low-viscosity material simulating the asthenospheric mantle lithosphere to provide isostatic equilibration. The materials have been analyzed using a MCR301 Rheometer (Anton Paar) equipped with parallel plates geometry and rotational regime . To prevent the evaporation of the samples during the measurements, an external water-lock device has been used.
    Language: English
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  • 12
    Publication Date: 2022-05-28
    Description: The new unconstrained GRACE monthly solution SWPU-GRACE2021 is recently developed with the dynamic approach. The reprocessed GRACE L1B RL03 data and de-aliasing product AOD1B RL06 are applied to compute SWPU-GRACE2021. The arc length is variable according to the L1B data quality, but the maximum is no more than 24 hours. The bias vector and scale matrix of the GRACE Accelerometer observation ACC1B product are estimable parameters. The data covers the period from April 2002 to Mai 2017. Due to data quality problems, there are some data gaps between September 2016 and April 2017.
    Language: English
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  • 13
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    GFZ Data Services
    Publication Date: 2022-07-13
    Description: Ireland Array is an array of 20 broadband seismometers that was operated by the Dublin Institute for Advanced Studies across the Republic of Ireland. The array comprised up to 20 stations running simultaneously, all equipped with Trillium 120PA seismometers and Taurus data loggers. The 20 stations were installed in 20102012. Some of the stations were moved to new locations in Ireland in the course of the operation of the array, either in order to enhance the data sampling of the island or when the old deployment sites became unsuitable. Ireland Array dramatically increased the seismic data sampling of Ireland and enabled advances and discoveries in the studies of the structure and evolution of Ireland’s crust and lithosphere, seismicity of Ireland, and mechanisms of the Paleogene intraplate volcanism in Ireland and surroundings.
    Language: English
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  • 14
    Publication Date: 2022-07-13
    Description: Project SWEAP (Southwest Indian Ridge Earthquakes and Plumes), a collaborative effort led by the Alfred-Wegener-Institute, installed a network of 10 broad-band ocean bottom seismometers (OBS) along the ultraslow-spreading Oblique Supersegment of the Southwest Indian Ridge. The presented data set covers the continuous records of 8 stations of the network provided by the DEPAS instrument pool. One station of the original network could not be recovered, another one did not return data. The instruments were spaced at roughly 15 km intervals in a triangular shape network to either side of the rift axis covering about 60 km along axis between 13°E and 13.8°E and 60 km across axis between 52°S and 52.6°S. The determination of the OBS positions is described by Schmid et al. (2016). The network design was optimized for detecting and locating deep seismicity in the area. The rift valley was filled with soft silica ooze, producing considerable delay of S-phases at selected stations. Instrument deployment started during RV Polarstern cruise ANT-XXIX/2 on December 05 2012. Instrument recovery was completed during RV Polarstern cruise ANT-XXIX/8 on November 26 2013. 5 Refraction seismic lines were acquired by RV Polarstern cruise ANT-XXIX/8 from November 17 to 19 in 2013. All OBS could be synchronized with the GPS clock upon recovery such that skew values describing the clock drift are available for all stations. The non-linear clock drift of station SWE05 was determined by means of noise cross-correlations and applied to the data set. All other stations show a linear drift, which was corrected.
    Language: English
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  • 15
    Publication Date: 2022-07-14
    Description: Gakkel Deep is a pilot project that installed a network of four broadband ocean bottom seismometers (OBS) near Gakkel Deep, the deepest depression in the Arctic Ocean, at the eastern end of the ultraslow spreading Gakkel Ridge. The area is covered year-round by sea ice. In order to enable a safe recovery of the OBS in a sea ice covered ocean, the OBS were modified to include a positioning system that allows to track the instruments at meter accuracy during descent and ascent and when stuck beneath ice floes. This pilot studied aimed at testing the recovery procedure of the OBS, checking the performance of the modified instrument design, getting an overview of ambient seismic noise at the bottom of the Arctic Ocean and at contributing to a better understanding of the origin of the Gakkel Deep depression with more than 3000 m of topography. The network is shaped as a rectangle with 8 km and 10 km side length and is centered at about 82°N 119.5°E at water depths between 3600 m and 4100 m. It is positioned slightly to the east of the present plate boundary in an area with volcanic structures. Instruments from the German Instrument Pool of Amphibian Seismology (DEPAS) were deployed during RV Polarstern cruise PS115/2 on September 15, 2018. Instrument recovery was completed during RV Polarstern cruise PS122/1 on September 27, 2019. The data set contains about 377 days of continuous records at 250 Hz sample rate. The station locations were determined with Ultra Short Baseline (USBL) ranging, the accuracy is approx. 10 m. The non-linear clock drift was determined by means of noise cross-correlations and applied to the data set.
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  • 16
    Publication Date: 2022-01-18
    Description: Abstract
    Description: The DFG Priority Program 1803 “EarthShape” (www.earthshape.net) investigates Earth surface shaping by biota. As part of this project, we present Light Detection and Ranging (LiDAR) data of land surface areas for the four core research sites of the project. The research sites are located along a latitudinal gradient between ~26 °S and ~38 °S in the Chilean Coastal Cordillera. From north to south, the names of these sites are: National Park Pan de Azúcar; Private Reserve Santa Gracia; National Park La Campana; and National Park Nahuelbuta. The three datasets contain raw 3D point cloud data captured from an airborne LiDAR system, and the following derivative products: a) digital terrain models (DTM, sometimes also referred to as DEM [digital elevation model]) which are (2.5D) raster datasets created by rendering only the LiDAR returns which are assumed to be ground/bare-earth returns and b) digital surface models (DSM) which are also 2.5D raster datasets produced by rendering all the returns from the top of the Earth’s surface, including all objects and structures (e.g. buildings and vegetation). The LiDAR data were acquired in 2008 (southernmost Nahuelbuta [NAB] catchment), 2016 (central La Campana [LC] catchment) and 2020 (central Santa Gracia [SGA] catchment). Except for Nahuelbuta (data already was available from the data provider from a previous project), the flights were carried out as part of the "EarthShape" project. The LiDAR raw data (point cloud/ *.las files) were compressed, merged (as *.laz files) and projected using UTM 19 S (UTM 18 S for the southernmost Nahuelbuta catchment, respectively) and WGS84 as coordinate reference system. A complementary fourth dataset for the northernmost site in the National Park Pan de Azúcar, derived from Uncrewed Aerial Vehicle (UAV) flights and Structure from Motion (SfM) photogrammetry, is expected to be obtained during the first half of 2022 and will be added to the above data set.
    Description: Other
    Description: The DFG Priority Program 1803 "EarthShape - Earth Surface Shaping by Biota" (2016-2022) explored between scientific disciplines and includes geoscientists and biologists to study from different viewpoints the complex question how microorganisms, animals, and plants influence the shape and development of the Earth’s surface over time scales from the present-day to the young geologic past. All study sites are located in the north-to-south trending Coastal Cordillera mountains of Chile, South America. These sites span from the Atacama Desert in the north to the Araucaria forests approximately 1300 km to the south. The site selection contains a large ecological and climate gradient ranging from very dry to humid climate conditions. For more information visit: www.earthshape.net
    Keywords: 3D point cloud ; LiDAR scanner ; Elevation Models ; EarthShape ; Chile ; Coastal Cordillera ; Private Reserve Santa Gracia ; National Park La Campana ; National Park Nahuelbuta ; Earth Remote Sensing Instruments 〉 Active Remote Sensing 〉 Altimeters 〉 Lidar/Laser Altimeters 〉 AIRBORNE LASER SCANNER ; EARTH SCIENCE 〉 LAND SURFACE 〉 TOPOGRAPHY 〉 TERRAIN ELEVATION ; EARTH SCIENCE 〉 LAND SURFACE 〉 TOPOGRAPHY 〉 TOPOGRAPHICAL RELIEF ; EARTH SCIENCE 〉 SPECTRAL/ENGINEERING 〉 LIDAR ; EARTH SCIENCE SERVICES 〉 MODELS 〉 LAND SURFACE MODELS ; Models/Analyses 〉 DEM ; radiation 〉 laser
    Type: Dataset , Dataset
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  • 17
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    GFZ Data Services
    Publication Date: 2022-01-28
    Description: Abstract
    Description: PDToolbox is a collection of methods helpful for doing probability distribution computations in Python. The aim of the PDToolbox Python module is to provide a set of features, based on simple probability distributions, that are not available from the scipy.stats module. This includes fast batch computations of (weighted) maximum likelihood estimates, computation of critical empirical distribution statistics, and more niche probability distributions or related code in the pdtoolbox.special module. The module contains code that is described in (ADD citations of the two articles).
    Description: Other
    Description: LICENSE: GNU General Public License, Version 3, 29 June 2007 Copyright © 2021 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany PDToolbox is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. PDToolbox is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see 〈http://www.gnu.org/licenses/〉.
    Keywords: goodness-of-fit ; Anderson-Darling ; Lilliefors ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOTHERMAL DYNAMICS 〉 GEOTHERMAL ENERGY 〉 ENERGY DISTRIBUTION ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION 〉 STATISTICAL APPLICATIONS
    Type: Software , Software
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  • 18
    Publication Date: 2022-02-01
    Description: Abstract
    Description: The River Plume Workflow is part of the Flood Event Explorer (FEE, Eggert et al., 2022), developed at the GFZ German Research Centre for Geosciences in close collaboration with Helmholtz-Zentrum Hereon. It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/). The focus of the River Plume Workflow is the impact of riverine flood events on the marine environment. At the end of a flood event chain, an unusual amount of nutrients and pollutants is washed into the North Sea, which can have consequences, such as increased algae blooms. The workflow aims to enable users to detect a river plume in the North Sea and to determine its spatio-temporal extent. Identifying river plume candidates can either happen manually in the visual interface or also through an automatic anomaly detection algorithm, using Gaussian regression. In both cases a combination of observational data, namely FerryBox transects and satellite data, and model data are used. Once a river plume candidate is found, a statistical analysis supplies additional detail on the anomaly and helps to compare the suspected river plume to the surrounding data. Simulated trajectories of particles starting on the FerryBox transect at the time of the original observation and modelled backwards and forwards in time help to verify the origin of the river plume and allow users to follow the anomaly across the North Sea. An interactive map enables users to load additional observational data into the workflow, such as ocean colour satellite maps, and provides them with an overview of the flood impacts and the river plume’s development on its way through the North Sea. In addition, the workflow offers the functionality to assemble satellite-based chlorophyll observations along model trajectories as a time series. They allow scientists to understand processes inside the river plume and to determine the timescales on which these developments happen. For example, chlorophyll degradation rates in the Elbe river plume are currently investigated using these time series. The workflow's added value lies in the ease with which users can combine observational FerryBox data with relevant model data and other datasets of their choice. Furthermore, the workflow allows users to visually explore the combined data and contains methods to find and highlight anomalies. The workflow’s functionalities also enable users to map the spatio-temporal extent of the river plume and investigate the changes in productivity that occur in the plume. All in all, the River Plume Workflow simplifies the investigation and monitoring of flood events and their impacts in marine environments.
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; DASF ; Workflow ; river plume ; ferrybox ; impact ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 FLOODS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 19
    Publication Date: 2022-02-01
    Description: Abstract
    Description: The Socio-Economic Flood Impacts Workflow is part of the Flood Event Explorer (FEE, Eggert et al., 2022), developed at the GFZ German Research Centre for Geosciences . It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/). The Socio-Economic Flood Impacts Workflow aims to support the identification of relevant controls and useful indicators for the assessment of flood impacts. It should support answering the question What are useful indicators to assess socio-economic flood impacts?. Floods impact individuals and communities and may have significant social, economic and environmental consequences. These impacts result from the interplay of hazard - the meteo-hydrological processes leading to high water levels and inundation of usually dry land, exposure - the elements affected by flooding such as people, build environment or infrastructure, and vulnerability - the susceptibility of exposed elements to be harmed by flooding. In view of the complex interactions of hazard and impact processes a broad range of data from disparate sources need to be compiled and analysed across the boundaries of climate and atmosphere, catchment and river network, and socio-economic domains. The workflow approaches this problem and supports scientists to integrate observations, model outputs and other datasets for further analysis in the region of interest. The workflow provides functionalities to select the region of interest, access hazard, exposure and vulnerability related data from different sources, identifying flood periods as relevant time ranges, and calculate defined indices. The integrated input data set is further filtered for the relevant flood event periods in the region of interest to obtain a new comprehensive flood data set. This spatio-temporal dataset is analysed using data-science methods such as clustering, classification or correlation algorithms to explore and identify useful indicators for flood impacts. For instance, the importance of different factors or the interrelationships among multiple variables to shape flood impacts can be explored. The added value of the Socio-Economic Flood Impacts Workflow is twofold. First, it integrates scattered data from disparate sources and makes it accessible for further analysis. As such, the effort to compile, harmonize and combine a broad range of spatio-temporal data is clearly reduced. Also, the integration of new datasets from additional sources is much more straightforward. Second, it enables a flexible analysis of multivariate data and by reusing algorithms from other workflows it fosters a more efficient scientific work that can focus on data analysis instead of tedious data wrangling.
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; DASF ; Workflow ; hydrometeorological controls ; indicators ; impact assessment ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 FLOODS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 20
    Publication Date: 2022-02-01
    Description: Abstract
    Description: The Flood Similarity Workflow is part of the Flood Event Explorer (FEE, Eggert et al., 2022), developed at the GFZ German Research Centre for Geosciences . It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/). River floods and associated adverse consequences are caused by complex interactions of hydro-meteorological and socio-economic pre-conditions and event characteristics. The Flood Similarity Workflow supports the identification, assessment and comparison of hydro-meteorological controls of flood events. The analysis of flood events requires the exploration of discharge time series data for hundreds of gauging stations and their auxiliary data. Data availability and accessibility and standard processing techniques are common challenges in that application and addressed by this workflow. The Flood Similarity Workflow allows the assessment and comparison of arbitrary flood events. The workflow includes around 500 gauging stations in Germany comprising discharge data and the associated extreme value statistics as well as precipitation and soil moisture data. This provides the basis to identify and compare flood events based on antecedent catchment conditions, catchment precipitation, discharge hydrographs, and inundation maps. The workflow also enables the analysis of multidimensional flood characteristics including aggregated indicators (in space and time), spatial patterns and time series signatures. The added value of the Flood Event Explorer comprises two major points. First, scientist work on a common, homogenized database of flood events and their hydro-meteorological controls for a large spatial and temporal domain , with fast and standardized interfaces to access the data. Second, the standardized computation of common flood indicators allows a consistent comparison and exploration of flood events.
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; DASF ; Workflow ; hydrometeorological controls ; compare ; assess ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 FLOODS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 21
    Publication Date: 2022-02-01
    Description: Abstract
    Description: The Smart Monitoring Workflow (Tocap) is part of the Flood Event Explorer (FEE, Eggert et al., 2022), developed at the GFZ German Research Centre for Geosciences in close collaboration with the Helmholtz-Centre for Environmental Research UFZ Leipzig. It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/). A deeper understanding of the Earth system as a whole and its interacting sub-systems depends not only on accurate mathematical approximations of the physical processes but also on the availability of environmental data across time and spatial scales. Even though advanced numerical simulations and satellite-based remote sensing in conjunction with sophisticated algorithms such as machine learning tools can provide 4D environmental datasets, local and mesoscale measurements continue to be the backbone in many disciplines such as hydrology. Considering the limitations of human and technical resources, monitoring strategies for these types of measurements should be well designed to increase the information gain provided. One helpful set of tools to address these tasks are data exploration frameworks providing qualified data from different sources and tailoring available computational and visual methods to explore and analyse multi-parameter datasets. In this context, we developed a Smart Monitoring Workflow to determine the most suitable time and location for event-driven, ad-hoc monitoring in hydrology using soil moisture measurements as our target variable. The Smart Monitoring Workflow consists of three main steps. First is the identification of the region of interest, either via user selection or recommendation based on spatial environmental parameters provided by the user. Statistical filters and different color schemes can be applied to highlight different regions. The second step is accessing time-dependent environmental parameters (e.g., rainfall and soil moisture estimates of the recent past, weather predictions from numerical weather models and swath forecasts from Earth observation satellites) for the region of interest and visualizing the results. Lastly, a detailed assessment of the region of interest is conducted by applying filter and weight functions in combination with multiple linear regressions on selected input parameters. Depending on the measurement objective (e.g highest/lowest values, highest/lowest change), most suitable areas for monitoring will subsequently be visually highlighted. In combination with the provided background map, an efficient route for monitoring can be planned directly in the exploration environment. The added value of the Smart Monitoring Workflow is multifold. The workflow gives the user a set of tools to visualize and process their data on a background map and in combination with data from public environmental datasets. For raster data from public databases, tailor-made routines are provided to access the data in the spatial-temporal limits required by the user. Aiming to facilitate the design of terrestrial monitoring campaigns, the platform and device-independent approach of the workflow gives the user the flexibility to design a campaign at the desktop computer first and to refine it later in the field using mobile devices. In this context, the ability of the workflow to plot time-series of forecast data for the region of interest empowers the user to react quickly to changing conditions, e.g thunderstorm showers, by adapting the monitoring strategy, if necessary. Finally, the integrated routing algorithm assists to calculate the duration of a planned campaign as well as the optimal driving route between often scattered monitoring locations.
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; DASF ; Workflow ; smart monitoring ; campaign planning ; tocap ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 FLOODS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 22
    Publication Date: 2022-02-01
    Description: Abstract
    Description: The Climate Change Workflow is part of the Flood Event Explorer (FEE, Eggert et al., 2022), developed at the GFZ German Research Centre for Geosciences in close collaboration with Helmholtz-Zentrum Hereon , Climate Service Center Germany. It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/). The goal of the Climate Change Workflow is to support the analysis of climate-driven changes in flood-generating climate variables, such as precipitation or soil moisture, using regional climate model simulations from the Earth System Grid Federation (ESGF) data archive. It should support to answer the geoscientific question How does precipitation change over the course of the 21st century under different climate scenarios, compared to a 30-year reference period over a certain region? Extraction of locally relevant data over a region of interest (ROI) requires climate expert knowledge and data processing training to correctly process large ensembles of climate model simulations, the Climate Change Workflow tackles this problem. It supports scientists to define the regions of interest, customize their ensembles from the climate model simulations available on the Earth System Grid Federation (ESGF), define variables of interest, and relevant time ranges. The Climate Change Workflow provides: (1) a weighted mask of the ROI ; (2) weighted climate data of the ROI; (3) time series evolution of the climate over the ROI for each ensemble member; (4) ensemble statistics of the projected change; and lastly, (5) an interactive visualization of the region’s precipitation change projected by the ensemble of selected climate model simulations for different Representative Concentration Pathways (RCPs). The visualization includes the temporal evolution of precipitation change over the course of the 21st century and statistical characteristics of the ensembles for two selected 30 year time periods for the mid and the end of the 21st century (e.g. median and various percentiles). The added value of the Climate Change Workflow is threefold. First, there is a reduction in the number of different software programs necessary to extract locally relevant data. Second, the intuitive generation and access to the weighted mask allows for the further development of locally relevant climate indices. Third, by allowing access to the locally relevant data at different stages of the data processing chain, scientists can work with a vastly reduced data volume allowing for a greater number of climate model ensembles to be studied; which translates into greater scientific robustness. Thus, the Climate Change Workflow provides much easier access to an ensemble of high-resolution simulations of precipitation, over a given ROI, presenting the region’s projected precipitation change using standardized approaches and supporting the development of additional locally relevant climate indices.
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; DASF ; Workflow ; Climate Change ; ESGF ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 FLOODS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 23
    Publication Date: 2022-02-01
    Description: Abstract
    Description: The Digital Earth Flood Event Explorer supports geoscientists and experts to analyse flood events along the process cascade event generation, evolution and impact across atmospheric, terrestrial, and marine disciplines. It applies the concept of scientific workflows and the component-based Data Analytics Software Framework (DASF, Eggert and Dransch, 2021) to an exemplary showcase. It aims at answering the following geoscientific questions: - How does precipitation change over the course of the 21st century under different climate scenarios over a certain region? - What are the main hydro-meteorological controls of a specific flood event? - What are useful indicators to assess socio-economic flood impacts? - How do flood events impact the marine environment? - What are the best monitoring sites for upcoming flood events? The Flood Event Explorer developed scientific workflows for each geoscientific question providing enhanced analysis methods from statistics, machine learning, and visual data exploration that are implemented in different languages and software environments, and that access data form a variety of distributed databases. The collaborating scientists are from different Helmholtz research centers and belong to different scientific fields such as hydrology, climate-, marine-, and environmental science, and computer- and data science. It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/).
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; DASF ; Workflows ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 FLOODS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 24
    Publication Date: 2022-02-11
    Description: Abstract
    Description: This dataset provides friction data from ring-shear tests (RST) on twice broken rice used in the GEC Laboratory in CY Cergy Paris University in stick-slip experiments. They were obtained by Sarah Visage as part of her doctoral training (funded by the ANR DISRUPT programme) during an invitation at the Helmholtz Laboratory for Tectonic Modelling (HelTec) at the GFZ German Research Centre for Geosciences in Potsdam. Like any granular material, the twice broken rice is characterized by several internal friction coefficients μ and cohesions C, classicaly qualified as dynamic, static, and reactivation coefficients. In adition, since the rice exhibits a stick slip behaviour, the various shear - velocity or shear-displacement curves exhibit high frequency oscillations and we therefore define maximum, minimum, and mean values corresponding respectively to the curve peaks, curve troughs and smoothed curve.
    Keywords: EPOS ; Multiscale laboratories ; analogue models of geologic processes ; property data of analogue modelling materials ; analogue modelling results ; software tools ; Cohesion ; deformation 〉 fracturing ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES ; fault ; Flour 〉 Rice ; Force sensor ; Friction coefficient ; Matlab (Mathworks) ; Rate-state parameters ; Ring-shear tester
    Type: Dataset , Dataset
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  • 25
    Publication Date: 2022-02-17
    Description: Abstract
    Description: Volcanic projectiles are centimeter- to meter-sized clasts – both solid-to-molten rock fragments or lithic eroded from conduits – ejected during explosive volcanic eruptions that follow ballistic trajectories. Despite being ranked as less dangerous than large-scale processes such as pyroclastic density currents (hot avalanches of gas and pyroclasts), volcanic projectiles still represent a constant threat to life and properties in the vicinity of volcanic vents, and frequently cause fatal accidents on volcanoes. Mapping of their size, shape, and location in volcanic deposits can be combined to model possible trajectories of projectiles from the vent to their final position, and to estimate crucial source parameters of the driving eruption, such as ejection velocity and pressure differential at the vent. Moreover, size and spatial distributions of volcanic projectiles from past eruptions, coupled with ballistic modelling of their trajectory, are crucial to forecast their possible impact in future eruptions. The reliability of such models strongly depends on i) the appropriate physical functions and input parameters and ii) observational validations. In this study, we aimed to unravel intra-conduit processes that strongly control the dynamic of volcanic projectiles by combining numerical modelling and novel experimentally-determined source parameter. In particular, the multiphase ASHEE model (Cerminara 2016; Cerminara et al. 2016) suited for testing post-fragmentation conduit dynamics based on a robust shock tube experimental dataset. By exploding mixtures of pumice and dense lithic particles within a specially designed transparent autoclave, and by using a raft of pressure sensors, ultra-high-speed cameras and pre-sieved natural particles, we observed and quantified: i) kinematic data of the particles and of the gas front along the shock tube and outside, ii) pressure decay at 1GHz resolution. By feeding the ASHEE model with these datasets, and using initial and boundary conditions similar to that of the experiment, we defined domains composed by a pressurized shock tube and the outside chamber at ambient conditions, and tested particles particle motion according to a Lagrangian approach, as well as gas flow with a Eulerian approach (a 3D finite-volume numerical solver, compressible). The comparison between data and model yields estimate of the particle kinematic inside the tube, the pressure evolution at the top and the bottom of the tube, and the eruption source parameters at the tube exit.
    Description: Methods
    Description: We designed a series of rapid decompression experiments in which we systematically varied componentry, particle size, and packing arrangement of the initial samples. We also carried empty run experiments, where only the gas phase is decompressed. We used the pressure evolution and high-speed footage of these experiments to i) benchmark the expansion of the gas phase against the expansion of gas and particle mixture, and ii) develop 1D and 3D models of particle acceleration.
    Keywords: Eperimental volcanology ; ASHEE model ; Conduit dynamic ; Ejection behavior ; Numerical modelling ; EPOS ; multi-scale laboratories ; rock and melt physical properties ; analysis 〉 physicochemical analysis 〉 granulometry ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 IGNEOUS ROCKS 〉 IGNEOUS ROCK PHYSICAL/OPTICAL PROPERTIES ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY 〉 ERUPTION DYNAMICS 〉 PYROCLASTIC PARTICAL SIZE DISTRIBUTION ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY 〉 ERUPTION DYNAMICS 〉 PYROCLASTICS COMPOSITION/TEXTURE ; experiment 〉 test 〉 comparative test ; experiment 〉 test 〉 testing method 〉 calibration ; research 〉 scientific research 〉 experimental study ; science 〉 natural science 〉 earth science 〉 geology 〉 volcanology ; science 〉 physical science
    Type: Dataset , Dataset
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  • 26
    Publication Date: 2022-02-18
    Description: TechnicalInfo
    Description: This is a synthetic dataset. It was created from the outputs of the glacial isostatic adjustment model VILMA (Klemann et al. 2008). It consists of realtive sea level (RSL) data on a global regular grid. The resolution is 256 x 512 points (Lat x Lon). The tomporal range is from 123 ka BP until present day. Time steps vary between 2.5 kyrs at the beginning and 0.5 kyrs towards the end. The data were created for a specific configuration of the GIA model: lithosphere thickness = 60 km, lithosphere viscosity = 1.0E31 Pa s, upper mantle thickness = 610 km, upper mantle viscosity = 1.0E20 Pa s, lower mantle thickness = 3,221 km, lower mantle viscosity = 1.0E21 Pa s. The RSL data are accompanied by a observation locations mask. This mask was used to identify those locations in the global RSL dataset where real observations are available.
    Description: TechnicalInfo
    Description: The dataset consists of realtive sea level (RSL) data on a global regular grid. The resolution is 256 x 512 points (Lat x Lon). The temporal range is from 123 ka BP until present day. Time steps vary between 2.5 kyrs at the beginning and 0.5 kyrs towards the end. The data were created for a specific configuration of the GIA model: lithosphere thickness = 60 km, lithosphere viscosity = 1.0E31 Pa s, upper mantle thickness = 610 km, upper mantle viscosity = 1.0E20 Pa s, lower mantle thickness = 3,221 km, lower mantle viscosity = 1.0E21 Pa s. The RSL data are accompanied by observation locations masks. These masks were used to mark those locations in the global RSL dataset where real-life observations are available in order to restrict usage of the synthetic data to those locations.
    Keywords: Synthetic data ; Relative sea level ; EARTH SCIENCE 〉 OCEANS 〉 SEA SURFACE TOPOGRAPHY 〉 SEA SURFACE HEIGHT ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOMORPHIC LANDFORMS/PROCESSES 〉 GLACIAL PROCESSES 〉 CRUST REBOUND ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOMORPHIC LANDFORMS/PROCESSES 〉 GLACIAL PROCESSES 〉 GLACIER CRUST SUBSIDENCE ; EARTH SCIENCE 〉 SOLID EARTH 〉 GRAVITY/GRAVITATIONAL FIELD 〉 CRUSTAL MOTION 〉 ISOSTATIC ADJUSTMENTS
    Type: Dataset , Dataset
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  • 27
    Publication Date: 2022-02-23
    Description: Abstract
    Description: This data set is Part 2 of the compiles whole-rock chemical data for late-Variscan low-F biotite and two-mica granites in the German Erzgebirge, in the Saxothuringian Zone of the Variscan Orogen. The group of F-poor biotite granites is represented by the composite massifs of Kirchberg and Niederbobritzsch, the Plohn Granite Suite (PGS), the Aue Granite Suite (AGS), and the subsurface granites of Beiersdorf und Bernsbach. For the group of two-mica granites, compositional data for the multi-stage Bergen massif and the granites from Lauter and Schwarzenberg are reported (Figure 1). Crystal-melt fractionation was the dominant process controlling the evolution of bulk composition in the course of massif/pluton formation. However, metasomatic and hydrothermal processes involving late-stage residual melts and high-T late- to post-magmatic fluids became increasingly more important in highly evolved units and have variably modified the abundances of mobile elements. Interaction with the various metamorphic country rocks and infiltration of meteoric low-T fluids have further disturbed the initial chemical patterns in the endocontact zones and zones influenced by surface weathering. The data set reports whole-rock geochemical analyses for enclaves, granites, aplites, endocontact rocks, and some facial varieties. The data are presented as Excel (xlsx) and machine-readable txt formats. The content of the excel sheet and further information on the granites and regional geology are provided in the data description file.
    Keywords: granite ; peraluminous granite ; aplite ; enclave ; fractional crystallization ; composite pluton ; alteration ; ore mineralization ; whole-rock geochemistry ; tungsten ; molybdenum ; uranium ; Kirchberg pluton ; Plohn granite suite ; Bergen pluton ; Aue-Schwarzenberg Granite Zone ; late Carboniferous ; Variscan orogen ; Saxothuringian Zone ; Erzgebirge ; Germany ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 ELEMENTS ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 IGNEOUS ROCKS ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 MINERALS
    Type: Dataset , Dataset
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  • 28
    Publication Date: 2022-03-01
    Description: Abstract
    Description: Fatbox - Fault Analysis Toolbox is a python module for the extraction and analysis of faults (and fractures) in raster data. We often observer faults in 2-D or 3-D raster data (e.g. geological maps, numerical models or seismic volumes), yet the extraction of these structures still requires large amounts of our time. The aim of this module is to reduce this time by providing a set of functions, which can perform many of the steps required for the extraction and analysis of fault systems. The basic idea of the module is to describe fault systems as graphs (or networks) consisting of nodes and edges, which allows us to define faults as components, i.e. sets of nodes connected by edges, of a graph. Nodes, which are not connected through edges, thus belong to different components (faults).
    Description: TechnicalInfo
    Description: Copyright [2022] Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: clustering ; signal-processing ; image-processing ; network-analysis ; deformation ; faults ; Python 3 ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION 〉 STATISTICAL APPLICATIONS ; EARTH SCIENCE SERVICES 〉 DATA MANAGEMENT/DATA HANDLING 〉 TRANSFORMATION/CONVERSION
    Type: Software , Software
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  • 29
    Publication Date: 2022-03-14
    Description: Abstract
    Description: This data set is the source of my doctoral thesis and of three resulting publications. Through whole rock geochemistry of selected samples and microprobe and geochronological analyses of key minerals, formerly selected by extensive microscopical studies, standard geothermobarometry and modelling was applied. It has been shown that metamorphic rocks, in particular, the eclogites of the northern Kaghan Valley, Pakistan, were buried to depths of 140-100 km (36-30 kbar) at 790-640°C. Subsequently, cooling during decompression (exhumation) towards 40-35 km (17-10 kbar) and 630-580°C has been superseded by a phase of reheating to about 720-650°C at roughly the same depth before final exhumation has taken place. In the southern-most part of the Kaghan Valley, amphibolite facies assemblages with formation conditions similar to the deduced reheating phase indicate a juxtaposition of both areas after the eclogite facies stage and thus a stacking of Indian Plate units. Radiometric dating of zircon, titanite and rutile by U-Pb and amphibole and micas by Ar-Ar reveal peak pressure conditions at 47-48 Ma. With a maximum exhumation rate of 14 cm/a these rocks reached the crust-mantle boundary at 40-35 km within 1 Ma. Subsequent exhumation (46-41 Ma, 40-35 km) decelerated to ca. 1 mm/a at the base of the continental crust but rose again to about 2 mm/a in the period of 41-31 Ma, equivalent to 35-20 km. Apatite fission track (AFT) and (U-Th)/He ages from eclogites, amphibolites, micaschists and gneisses yielded moderate Oligocene to Miocene cooling rates of about 10°C/Ma in the high altitude northern parts of the Kaghan Valley using the mineral-pair method. AFT ages are of 24.5±3.8 to 15.6±2.1 Ma whereas apatite (U-Th)/He analyses yielded ages between 21.0±0.6 and 5.3±0.2 Ma. The southern-most part of the Valley is dominated by younger late Miocene to Pliocene apatite fission track ages of 7.6±2.1 and 4.0±0.5 Ma that support earlier tectonically and petrologically findings of a juxtaposition and stack of Indian Plate units. As this nappe is tectonically lowermost, a later distinct exhumation and uplift driven by thrusting along the Main Boundary Thrust is inferred. Out of this geochemical, petrological, isotope-geochemical and low temperature thermochronology investigations it was concluded that the exhumation was buoyancy driven and caused an initial rapid exhumation: exhumation as fast as recent normal plate movements (ca. 10 cm/a). As the exhuming units reached the crust-mantle boundary the process slowed down due to changes in buoyancy. Most likely, this exhumation pause has initiated the reheating event that is petrologically evident (e.g. glaucophane rimmed by hornblende, ilmenite overgrowth of rutile). Late stage processes involved widespread thrusting and folding with accompanied regional greenschist facies metamorphism, whereby contemporaneous thrusting on the Batal Thrust (seen sometimes equivalent to the MCT) and back sliding of the Kohistan Arc along the inverse reactivated Main Mantle Thrust caused final exposure of these rocks. Similar circumstances have been seen at Tso Morari, Ladakh, India, 200 km further east where comparable rock assemblages occur. In conclusion, as exhumation was already done well before the initiation of the monsoonal system, climate dependent effects (erosion) appear negligible in comparison to far-field tectonic effects. Thus, the channel flow model is not applicable for this part of the Himalayas.
    Keywords: whole rock geochemistry ; microprobe ; U-Pb geochronology ; Ar/Ar geochronology ; apatite fission track ; U-Th/He thermochronology ; metamorphic rocks ; eclogite ; Himalayas ; Pakistan ; Kaghan Valley ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOCHEMISTRY 〉 GEOCHEMICAL PROCESSES ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOCHEMISTRY 〉 GEOCHEMICAL PROPERTIES ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOCHEMISTRY 〉 GEOCHEMICAL PROPERTIES 〉 ISOTOPIC AGE ; In Situ/Laboratory Instruments 〉 Spectrometers/Radiometers 〉 LA-ICP-MS ; In Situ/Laboratory Instruments 〉 Spectrometers/Radiometers 〉 XRF
    Type: Dataset , Dataset
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  • 30
    Publication Date: 2022-03-16
    Description: Abstract
    Description: A sequence of three strong (M W 7.2–6.4) and several moderate (M W 4.4–5.7) earthquakes struck the Pamir Plateau and surrounding mountain ranges of Tajikistan, China, and Kyrgyzstan in 2015–2017. With a local seismic network in operation in the Xinjiang province since August 2015, an aftershock network on the Pamir Plateau of Tajikistan since February 2016, and additional permanent regional seismic stations, we were able to record the succession of the fore-, main-, and aftershock sequences at local distances with good azimuthal coverage. We located 11,784 seismic events and determined the moment tensor for 33 earthquakes. The seismicity delineates the major tectonic structures of the Pamir, i.e., the thrusts that absorb shortening along the plateau thrust front, and the strike-slip and normal faults that dissect the Plateau into a westward extruding and a northward advancing block. Fault ruptures were activated subsequently at increasing distances from the initial M W 7.2 Sarez. All mainshock areas but the initial one exhibited foreshock seismicity which was not modulated by the occurrence of the earlier earthquakes. The tabular ASCII data of the seismic event catalog consist of origin date, time, location, depth and magnitude of the events, along with the quality measures: number of P- and S-wave arrival time picks, location root-mean-square misfit and localization method. The tabular ASCII data of the moment tensor catalog consist of origin date, time, location, the six independent components of the moment tensor, the moment magnitude, and the orientation of the preferred fault plane parameterized as fault strike, dip and rake.
    Keywords: Pamir ; Tajikistan ; China ; Xingjiang ; disaster 〉 natural disaster 〉 geological disaster ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES 〉 EARTHQUAKE MAGNITUDE/INTENSITY ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES 〉 EARTHQUAKE OCCURRENCES ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 NEOTECTONICS ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 PLATE TECTONICS 〉 FAULT MOVEMENT 〉 FAULT MOVEMENT DIRECTION ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 PLATE TECTONICS 〉 STRESS ; environment 〉 geophysical environment ; geological process 〉 seismic activity 〉 earthquake ; land 〉 world 〉 Asia 〉 Central Asia ; physical process 〉 diffusion
    Type: Dataset , Dataset
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  • 31
    facet.materialart.
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉The invasion of Ukraine by Russian forces has led to sharp rises in gas prices in Europe and around the world with real concerns about the possible curtailment of gas flows from Russia to Europe. Pipeline imports from Russia began falling in the last quarter of 2021 and declined even further in January and most […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/ukraine-invasion-what-this-means-for-the-european-gas-markets/"〉Ukraine Invasion: What This Means for the European Gas Market〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
    Print ISSN: 0959-7727
    Topics: Energy, Environment Protection, Nuclear Power Engineering
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  • 32
    Publication Date: 2022
    Description: 〈p〉In late 2021, China experienced a severe electricity supply crisis that affected 20 provinces. Industrial activity was curtailed, and even households suffered prolonged outages in some areas. The country is no stranger to periodic energy supply shortages and in many outages in the past, the principal causes involved either poor policy coordination or a clash […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-forum-the-2021-energy-crisis-implications-for-chinas-energy-market-and-policies/"〉Oxford Energy Forum – The 2021 energy crisis: Implications for China’s energy market and policies – Issue 131〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 33
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Following Russia’s invasion of Ukraine on 24 February 2022, energy markets are in turmoil. Oil and gas prices are rising and exhibiting high volatility as the markets grapple with the impact of sanctions and the prospect of reduced flows from Russia . China is heavily exposed to Russian commodity exports and to global markets. The […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/the-russian-invasion-of-ukraine-and-chinas-energy-markets/"〉The Russian invasion of Ukraine and China’s energy markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 34
    Publication Date: 2022
    Description: 〈p〉In this podcast, James Henderson talks to Anouk Honoré about her forthcoming article “Demand-side factors behind the historical gas price rally in Europe in 2021”. This article is part of a trilogy entitled “A Series of Unfortunate Events” that analyses the main supply and demand factors in the European gas market(s) that contributed to rising gas prices since summer […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-a-series-of-unfortunate-events-demand-side-factors-in-the-european-gas-price-rally-in-2021/"〉Oxford Energy Podcast – A Series of Unfortunate Events:​ Demand-Side Factors in the European Gas Price Rally ​in 2021〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/02/Podcast-132-EU-Gas-Demand.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/02/Podcast-132-EU-Gas-Demand.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 35
    Publication Date: 2022
    Description: 〈p〉In this latest OIES podcast James Henderson talks to Mike Fulwood and Jack Sharples about their latest research on the possible impact of an interruption of Russian gas supplies to Europe. After a quick update on current gas prices Jack Sharples reviews the current state of gas supply to Europe, looking at flows in 2021 […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-the-russian-invasion-of-ukraine-implications-for-the-european-gas-market/"〉Oxford Energy Podcast – The Russian invasion of Ukraine – implications for the European gas market〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-135-The-Russian-invasion-of-Ukraine-–-implications-for-the-European-gas-market.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-135-The-Russian-invasion-of-Ukraine-–-implications-for-the-European-gas-market.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 36
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉This month’s OIES Oil Monthly Special Issue assesses the implications of the Ukraine war on our short-term oil market outlook for market balances and prices to 2023. The analysis considers two scenarios. A Reference case in which self-sanctioning measures and obstacles in redirecting Russian crude flows due to financing and shipping constraints results in a […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-oil-monthly-issue-12/"〉OIES Oil Monthly – Special Issue 12〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 37
    Publication Date: 2022
    Description: 〈p〉This paper aims to examine consumer behaviour towards, and the willingness to adopt, ‘green steel’ in the automotive sector. Semi-structured interviews were held with experts from global, regional and country-specific industry associations and automakers. This paper appraises potential demand for green steel within different vehicle types (based both on size and powertrain) and shows that manufacturers […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/steeling-the-race-green-steel-as-the-new-clean-material-in-the-automotive-sector/"〉Steeling the race: ‘Green steel’ as the new clean material in the automotive sector〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 38
    Publication Date: 2022
    Description: 〈p〉In this podcast David Ledesma discusses the implications of Russia’s invasion of Ukraine for global oil markets with Bassam Fattouh, Director of OIES based on his latest paper: Russia-Ukraine crisis: Implications for global oil markets with Andreas Economou and Ahmed Mehdi. In this wide-ranging discussion, Bassam Fattouh discusses what the potential loss of Russian oil […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-russia-ukraine-crisis-implications-for-global-oil-markets/"〉Oxford Energy Podcast – Russia-Ukraine crisis – Implications for global oil markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-134-Russia-Ukraine-crisis-Implications-for-global-oil-markets.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-134-Russia-Ukraine-crisis-Implications-for-global-oil-markets.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 39
    Publication Date: 2022
    Description: 〈p〉In September-October 2021, China experienced a severe electricity supply crisis that impacted over twenty provinces, leading to industrial curtailment and residential supply cuts in some areas. In this podcast David Ledesma discusses the causes and implications of this supply crisis with Michal Meidan Director of the Gas Research Programme & the China Energy Research Programme […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-the-2021-energy-crisis-implications-for-chinas-energy-market-and-policies/"〉Oxford Energy Podcast – The 2021 energy crisis: Implications for China’s energy market and policies〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-133-The-2021-energy-crisis-Implications-for-Chinas-energy-market-and-policies.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-133-The-2021-energy-crisis-Implications-for-Chinas-energy-market-and-policies.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 40
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉This paper considers potential import routes for low-carbon and renewable hydrogen (H2) to main European markets like Germany. In particular, it analyses claims made by Hydrogen Europe and subsequently picked up by the European Commission in its Hydrogen Strategy that there will be 40GW of electrolyser capacity in nearby countries providing hydrogen imports to Europe […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/potential-development-of-renewable-hydrogen-imports-to-european-markets-until-2030/"〉Potential development of renewable hydrogen imports to European markets until 2030〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 41
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉After weeks of tensions, Russian President Vladimir Putin ordered Russian troops to invade Ukraine, prompting an international sanctions response targeting Russia’s economy but not directly its oil supplies or energy payments. But as sanctions on Russia intensified and as financial institutions started to refuse financing Russia-related transactions, including opening letters of credit or clearing payments […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/russia-ukraine-crisis-implications-for-global-oil-markets/"〉Russia-Ukraine crisis: Implications for global oil markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 42
    Publication Date: 2022
    Description: 〈p〉The specter of climate change has impacted shareholder sentiment making many market participants evaluate their business models in accordance with Cop-26 pledges – looking for ways of winning the mandate for capital in a sustainable way. The most familiar approach to reducing carbon footprint is by creating ‘GHG-verified’ claims. Typically, these involve a verified account […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/ghg-verified-mechanisms-for-internationally-traded-crude-oil-and-possible-impact-on-oil-benchmarks/"〉GHG-verified mechanisms for internationally traded crude oil and possible impact on oil benchmarks〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 43
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Central banks worldwide are stepping up actions in relation to climate change and taking on an increasingly important role in supporting the energy transition. Given the prominent role that central banks play in the financial markets and in influencing financing conditions, they can act as a powerful catalyst in addressing climate change. But their involvement […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/central-banks-green-shift-and-the-energy-transition/"〉Central Banks’ ‘Green Shift’ and the Energy Transition〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 44
    Publication Date: 2022
    Description: 〈p〉On 8 March 2022, the European Commission published the outline of a plan to make Europe independent from Russian fossil fuels well before 2030, starting with gas, in light of Russia’s invasion of Ukraine. The Commission noted that EU gas imports from Russia in 2021 (pipeline and LNG combined) totalled 155 billion cubic metres (bcm), […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/the-eu-plan-to-reduce-russian-gas-imports-by-two-thirds-by-the-end-of-2022-practical-realities-and-implications/"〉The EU plan to reduce Russian gas imports by two-thirds by the end of 2022: Practical realities and implications〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 45
    Publication Date: 2022
    Description: 〈p〉On 17 March, Michal Meidan testified before the U.S.-China Economic & Security Review Commission on China’s Energy Plans and Practices. In her testimony, Michal discussed the outlook for China’s fossil fuel demand in China, the successes and challenges associated with fossil fuel supply and how this fits into the country’s low carbon energy transition. Michal […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/statement-before-the-u-s-china-economic-and-security-review-commission-policymaking-and-energy-supply-and-demand-in-chinas-domestic-economy/"〉Statement before the U.S.-China Economic and Security Review Commission: Policymaking and Energy Supply and Demand in China’s Domestic Economy〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 46
    Publication Date: 2022-03-22
    Description: Abstract
    Description: We present a dataset of in-situ measurements in the marginal area of a CO2- and brine-rich cavernous structure in an underground salt mine. The data were collected within the framework of the BMBF-project ProSalz. One aim was to reveal the sources and dynamics of fluid movement as well as temporal and spatial distribution of fluids in a potentially weakened cavern rim. Over a period of three years pressure and gas monitoring was carried out along a transect from a cavernous structure to undisturbed rock salt. In addition, temperature and relative humidity data from the underground gallery were recorded. The gas inflow into isolated borehole sections provided an insight into short- and long-term changes of gas migration patterns in rock salt. Pressure increases of up to 4kPa/day and CO2 concentrations of up to 1.2%, especially at the start of the campaign were measured. The gas migration is coupled to discrete fractures and was limited spatially and temporary. Overall, gas occurrences were not correlated to their distance to the cavern, suggesting no wide-ranging fluid-rock interaction within the rim of the investigated natural cavernous structure in rock salt.
    Description: Methods
    Description: The gas pressures in C1, B3, B6, B10A and B10B were measured with pressure sensors (Greisinger) connected to the packer system. The data were recorded with a data logger (ADL-MX Advanced Datalogger, Meier-NT). The humidity and temperature data were recorded using a humidity sensor (Galltec + Mela). The gases were collected underground in sampling bags (calibrated instruments), and analysed in the lab using an OmniStar mass spectrometer (Pfeiffer).
    Keywords: rock salt ; potassium bearing salt deposits ; salt cavern ; gas migration ; long time monitoring ; in situ underground study ; compound material 〉 sedimentary material 〉 chemical sedimentary material 〉 evaporite 〉 rock salt ; EARTH SCIENCE 〉 PALEOCLIMATE 〉 LAND RECORDS 〉 BOREHOLES ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOCHEMISTRY
    Type: Dataset , Dataset
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  • 47
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In 2021, China experienced several episodes of power shortages and outages, heightening already existing concerns about energy security. In response, the government instituted a rapid succession of market reforms and other regulatory changes, which have pushed the majority of power users into the power market and also allowed for a wider range of electricity prices. […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-chinas-power-market-reforms-in-an-age-of-insecurity/"〉Oxford Energy Podcast – China’s power market reforms in an age of insecurity〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-136-–-Chinas-power-market-reforms-in-an-age-of-insecurity.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-136-–-Chinas-power-market-reforms-in-an-age-of-insecurity.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 48
    Publication Date: 2022
    Description: 〈p〉The dramatic rise in European, and indeed in global, gas prices over the summer of 2021, leading to unprecedented prices in Q4, has been the subject of much debate. Is it simply a market reflection of stronger than expected demand and weaker than expected supplies? Or is it a step change in the context of […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/a-series-of-unfortunate-events-explaining-european-gas-prices-in-2021-the-role-of-the-traded-gas-hubs/"〉A Series of Unfortunate Events – Explaining European Gas Prices in 2021: The role of the traded gas hubs〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 49
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this OIES podcast James Henderson talks to Anouk Honoré and Jack Sharples about the EU plan to diversify gas imports away from Russia in 2022. They discuss the latest strategy published by the European Commission on March 8, which addresses both the supply and demand-side options. The podcast considers the potential to import an […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-eu-plans-to-reduce-russian-gas-imports/"〉Oxford Energy Podcast – EU plans to reduce Russian gas imports〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-137-EU-plans-to-reduce-Russian-gas-imports-.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/03/Podcast-137-EU-plans-to-reduce-Russian-gas-imports-.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 50
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉India has been implementing climate actions since 2001, when it was one of very few countries to pass an Energy Conservation Act, followed by an industrial emissions trading scheme to force large manufacturing companies to become more energy efficient. A National Action Plan for Climate Change (NAPCC) was passed in 2008, and included relatively modest […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/indias-progress-on-its-climate-action-plan-an-update-in-early-2022/"〉India’s Progress on its Climate Action Plan – An Update in Early 2022〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 51
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Russia’s invasion of Ukraine has catalysed a chorus of dismay and outrage from western companies with investments in Russia and has led some to announce their withdrawal from the country. Furthermore, it has also caused the US and the EU to impose sanctions on individuals and companies involved in the energy sector and to announce […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/thoughts-on-the-impact-of-foreign-companies-exiting-the-russian-oil-and-gas-industry/"〉Thoughts on the impact of foreign companies exiting the Russian oil and gas industry〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 52
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉On February 4 2022 China’s President Xi Jinping and Russia’s President Vladimir Putin signed a series of new oil and gas contracts including an additional 10 bcma gas pipeline deal. This comment reviews how the new gas deal between Russia and China fits into their strategies, highlights the key implications of expanded gas cooperation between […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/russia-and-china-expand-their-gas-deal-key-implications/"〉Russia and China Expand Their Gas Deal: Key Implications〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 53
    Publication Date: 2022-04-04
    Description: Abstract
    Description: We present a new Python-based Jupyter Notebook that helps interpreting detrital tracer thermochronometry datasets and quantifying the statistical confidence of such analysis. Users are referred to the linked GitHub repository for usage and methods. https://github.com/mdlndr/ESD_thermotrace
    Description: TechnicalInfo
    Description: MIT License Copyright (c) 2021 Andrea Madella Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
    Description: Other
    Description: The DFG Priority Program 1803 "EarthShape - Earth Surface Shaping by Biota" (2016-2022; https://www.earthshape.net/) explored between scientific disciplines and includes geoscientists and biologists to study from different viewpoints the complex question how microorganisms, animals, and plants influence the shape and development of the Earth’s surface over time scales from the present-day to the young geologic past. All study sites are located in the north-to-south trending Coastal Cordillera mountains of Chile, South America. These sites span from the Atacama Desert in the north to the Araucaria forests approximately 1300 km to the south. The site selection contains a large ecological and climate gradient ranging from very dry to humid climate conditions.
    Keywords: Detrital Tracer Thermochronology ; EarthShape ; EARTH SCIENCE 〉 LAND SURFACE 〉 EROSION/SEDIMENTATION ; EARTH SCIENCE 〉 LAND SURFACE 〉 EROSION/SEDIMENTATION 〉 EROSION ; EARTH SCIENCE 〉 LAND SURFACE 〉 EROSION/SEDIMENTATION 〉 SEDIMENT CHEMISTRY ; EARTH SCIENCE 〉 LAND SURFACE 〉 EROSION/SEDIMENTATION 〉 SEDIMENT COMPOSITION ; EARTH SCIENCE 〉 LAND SURFACE 〉 EROSION/SEDIMENTATION 〉 SEDIMENT TRANSPORT ; EARTH SCIENCE 〉 LAND SURFACE 〉 GEOMORPHOLOGY ; EARTH SCIENCE 〉 LAND SURFACE 〉 GEOMORPHOLOGY 〉 FLUVIAL LANDFORMS/PROCESSES ; EARTH SCIENCE 〉 LAND SURFACE 〉 GEOMORPHOLOGY 〉 TECTONIC LANDFORMS/PROCESSES ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 SEDIMENTS ; science 〉 natural science 〉 earth science 〉 sedimentology
    Type: Software , Software
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  • 54
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉This new OIES presentation features a comprehensive empirical assessment of the implications of the Ukraine war on oil price and supply/demand dynamics via a number of forecast scenarios examining the size of disruption in Russian supplies, OPEC and non-OPEC supply response, the impact of the latest US announcement of SPR release and other uncertainty scenarios. […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/russias-invasion-of-ukraine-and-global-oil-market-scenarios/"〉Russia’s invasion of Ukraine and global oil market scenarios〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 55
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Brent is the world’s most important crude oil benchmark. Arguably, it is responsible for pricing almost seventy percent of globally traded crude oil and long-term LNG. Over time however, the falling production of Brent has forced the price reporting agencies (PRAs) to introduce new grades in the ‘basket’ of crudes eligible for delivery as ‘Brent’ […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/the-future-of-the-brent-oil-benchmark-a-radical-makeover/"〉The Future of the Brent Oil Benchmark: A Radical Makeover〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 56
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this first of a new series of podcasts, OIES presents a regular review of the impact of the Russia-Ukraine war on energy markets. James Henderson interviews Mike Fulwood and Jack Sharples on the drivers of current price dynamics, the situation with Russian gas flows to Europe, the availability of LNG supply to Europe and […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-series-russia-ukraine-conflict-impact-on-energy-markets/"〉OIES Podcast Series: Russia-Ukraine War – Impact on Energy Markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/OIES-Podcast-Series-Russia-Ukraine-Conflict-–-Impact-on-Energy-Markets-1.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/OIES-Podcast-Series-Russia-Ukraine-Conflict-–-Impact-on-Energy-Markets-1.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 57
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉On 31 March 2022, President Putin signed a Decree on the Special Procedure for the Fulfilment by Foreign Buyers of Obligations to Russian Natural Gas Suppliers, which, in essence, requires buyers from ‘unfriendly’ countries to pay in roubles for gas delivered to them after 1 April 2022. The key objective of this comment is to discuss […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/rouble-gas-payment-mechanism-implications-for-gas-supply-contracts/"〉Rouble gas payment mechanism: implications for gas supply contracts〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 58
    Publication Date: 2022-04-06
    Description: Abstract
    Description: Starting in 2016, the Taroko Earth Surface Observatory (TESO), a catchment-wide geomorphic observatory was set up in the Liwu catchment in the Taroko National Park in Taiwan. The set up consists of two basic station types: combined seismic and weather stations, featuring a broadband seismometer logging and a multi-parameter weather sensor, and hydrometric stations, the instrumentation of which are specific at each location. Seismic data hosted by the GEOFON database is openly accessible in real time. Waveform data are available from the GEOFON data centre, under network code TQ.
    Keywords: EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY ; In Situ/Laboratory Instruments 〉 Magnetic/Motion Sensors 〉 Seismometers ; In Situ Land-based Platforms 〉 GEOPHYSICAL STATIONS/NETWORKS
    Type: Other , Seismic Network
    Format: 〉1T
    Format: SEED data
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  • 59
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉The gas market in Europe is in a state of real uncertainty as to whether Russia will cut off gas supplies to Europe, or whether the EU should sanction imports of gas on the grounds that their payments are fuelling the Russian war machine in Ukraine. The current situation of uncertainty and not knowing whether […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/russian-gas-to-the-eu-to-sanction-or-not-to-sanction/"〉Russian gas to the EU: to sanction or not to sanction〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 60
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉This month’s Special Issue continues to assess the implications of the Ukraine war on our short-term oil market outlook for supply/demand and price dynamics to 2023, featuring the first detailed assessment of the impacts on OECD products demand. The analysis considers two principal scenarios. A Reference case in which self-sanctioning measures and obstacles in redirecting Russian crude and petroleum […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-oil-monthly-issue-13/"〉OIES Oil Monthly – Issue 13〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 61
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this latest OIES podcast we continue our weekly updates of the impact of the war between Russia and Ukraine on energy markets. This week we review the significant increase in global LNG supply and its availability to the European market, while also considering the other sources of non-Russian supply. We also review the flows […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-series-impact-of-russia-ukraine-war-on-energy-markets-2/"〉OIES Podcast – Impact of Russia-Ukraine War on Energy Markets Series – 2〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/OIES-Podcast-Series-Impact-of-Russia-Ukraine-War-on-Energy-Markets-2.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/OIES-Podcast-Series-Impact-of-Russia-Ukraine-War-on-Energy-Markets-2.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 62
    Publication Date: 2022-04-14
    Description: Abstract
    Description: The stochastic erosion in-situ cosmogenic nuclide model is a 1D numerical model that simulates the evolution of the concentrations of in situ-produced Be-10, C-14, and He-3 alongside the bedrock thermal field in the shallow Earth surface. It is useful for evaluating cosmogenic nuclide data derived from field samples, in order to determine the erosion rate, erosion style, as well as the time-integrated bedrock thermal history. The model simulates erosion in four styles: no erosion, uniform (steady-state) erosion, episodic erosion, and stochastic erosion. It is particularly useful for evaluating the time-temperature evolution of bedrock hillslopes in mountainous regions.
    Description: TechnicalInfo
    Description: Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. - Neither the name of the copyright holder nor the names of its contributors may be used to endorse or promote products derived from this software without specific prior written permission. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
    Keywords: cosmogenic nuclides ; stochastic erosion ; rockfalls ; hillslopes processes ; alpine permafrost ; Beryllium-10 ; Carbon-14 ; Helium-3 ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOCHEMISTRY 〉 GEOCHEMICAL PROCESSES ; EARTH SCIENCE SERVICES 〉 MODELS
    Type: Software , Software
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  • 63
    Publication Date: 2022-04-14
    Description: Abstract
    Description: This dataset provides friction data from ring-shear tests (RST) for wheat flour used as a fine-grained, cohesive analogue material for simulating brittle upper crustal rocks in the analogue labor-atory of the Institute of Geophysics of the Czech Academy of Science (IGCAS). It is characterized by means of internal friction coefficients µ and cohesion C. According to our analysis the materials show a Mohr-Coulomb behaviour characterized by a linear failure envelope. Peak friction coefficients µP of the tested material is ~0.72, dynamic friction coeffi-cients µD is ~0.67 and reactivation friction coefficients µR is ~0.70. Cohesions of the material range between 27 and 50 Pa. The material shows a minor rate-weakening of ~1.5% per ten-fold change in shear velocity v and a stick-slip behaviour at low shear velocities.
    Keywords: EPOS ; Multi-scale laboratories ; analogue models of geologic processes ; property data of analogue modelling materials ; analogue modelling results ; software tools ; Cohesion ; deformation 〉 fracturing ; earth interior setting 〉 crust setting 〉 continental-crustal setting 〉 upper continental crustal setting ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION 〉 CALIBRATION/VALIDATION ; fault ; Force sensor ; Friction coefficient ; Iron Powder ; Ring-shear tester ; Sand 〉 Quartz Sand ; tectonic and structural features
    Type: Dataset , Dataset
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  • 64
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Brent is the world’s most important crude oil benchmark. However, the falling production of Brent has forced the price reporting agencies to introduce new grades in the ‘basket’ of crudes eligible for delivery as ‘Brent’ and widen the loading dates that can be used in their assessments. Brent has become just a brand name in […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-the-future-of-the-brent-oil-benchmark-a-radical-makeover/"〉OIES Podcast – The Future of the Brent Oil Benchmark: A Radical Makeover〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/PODCAST-140-Future-of-the-Brent-Benchmark.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/PODCAST-140-Future-of-the-Brent-Benchmark.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 65
    Publication Date: 2022
    Description: 〈p〉Green Bonds have experienced a massive growth in the recent years and have received growing attention following the Paris Agreement. In this podcast David Ledesma talks to Andrea Maino, Research Fellow at the OIES, about his recent paper “Financing the Energy Transition: The Role, Opportunities and Challenges of Green Bonds” that was published by the […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-financing-the-energy-transition-the-role-opportunities-and-challenges-of-green-bonds/"〉OIES Podcast – Financing the Energy Transition: The Role, Opportunities and Challenges of Green Bonds〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/Podcast-138-Financing-the-Energy-Transition-The-Role-Opportunities-and-Challenges-of-Green-Bonds.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/Podcast-138-Financing-the-Energy-Transition-The-Role-Opportunities-and-Challenges-of-Green-Bonds.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 66
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this podcast, David Ledesma talks to Martin Lambert, Head of OIES Hydrogen Research, about the key messages from the recent European Hydrogen Conference and how they fit with the ongoing research in OIES.   In particular, they cover the heightened energy security concerns following the Russian invasion of Ukraine, and hydrogen ambitions in the REPowerEU […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-energy-podcast-hydrogen-current-challenges-in-creating-viable-business-cases/"〉OIES Podcast – Hydrogen: Current challenges in creating viable business cases〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/Podcast-142-Hydrogen-Challenges-creating-viable-business-cases.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/Podcast-142-Hydrogen-Challenges-creating-viable-business-cases.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 67
    Publication Date: 2022-04-20
    Description: Abstract
    Description: The new unconstrained GRACE monthly solution SWPU-GRACE2021 is recently developed with the dynamic approach. The reprocessed GRACE L1B RL03 data and de-aliasing product AOD1B RL06 are applied to compute SWPU-GRACE2021. The arc length is variable according to the L1B data quality, but the maximum is no more than 24 hours. The bias vector and scale matrix of the GRACE Accelerometer observation ACC1B product are estimable parameters. The data covers the period from April 2002 to Mai 2017. Due to data quality problems, there are some data gaps between September 2016 and April 2017.
    Keywords: GRACE ; monthly gravity field model ; ICGEM ; geodesy ; global gravity field model ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEODETICS ; EARTH SCIENCE 〉 SOLID EARTH 〉 GRAVITY/GRAVITATIONAL FIELD 〉 GRAVITATIONAL FIELD
    Type: Dataset , Dataset
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  • 68
    Publication Date: 2022
    Description: 〈p〉In this third of our series on the impact of the Russia-Ukraine war on energy markets James Henderson talks to Bassam Fattouh about the impact of a potential Russian oil embargo on oil supply, demand and prices. Dr Fattouh outlines the conclusions from the latest OIES Oil Monthly, which analyses a number of scenarios for […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-impact-of-russia-ukraine-war-on-energy-markets-series-3-oil-market-focus/"〉OIES Podcast – Impact of Russia-Ukraine War on Energy Markets Series – 3 – Oil Market Focus〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/Podcast-143-Impact-of-Russia-Ukraine-War-on-Energy-Markets-Series-3-Oil-Market-Focus.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/Podcast-143-Impact-of-Russia-Ukraine-War-on-Energy-Markets-Series-3-Oil-Market-Focus.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 69
    Publication Date: 2022-04-25
    Description: Abstract
    Description: Long-term tide gauge records provide valuable insights to sea level variations, but interpretation requires an accurate determination of the associated vertical land motion. Within the Tide Gauge Benchmark Monitoring Working Group of the International GNSS Service, we performed a dedicated reprocessing (1994-2020) for GNSS stations co-located with tide gauges. Based on 341 stations the GFZ contribution to the third TIGA reprocessing provides vertical land motion rates for 230 stations at or close to recently active tide gauges. We limited the processing to GPS observations.
    Description: Methods
    Description: To ensure the highest accuracy, we used the classical network approach with ambiguity fixing according to Ge et al. (2005) but without orbit determination. Therefore, we introduced the orbit and clock products provided in the GFZ repro3 solution (Männel et al., 2020, 2021). The processing strategy follows the current geodetic IERS conventions (https://www.iers.org/IERS/EN/Publications/TechnicalNotes/tn36.htm) and the IGS repro3 settings (http://acc.igs.org/repro3/repro3.html). The processing is described in detail in our dedicated Analysis Center Notes (ftp://isdcftp.gfz-potsdam.de/gnss/products/tiga3/gfz_tiga3.acn). In line with repro3 we applied the antenna correction file igsR3_2077.atx where the GPS transmitter offsets were adjusted to the pre-launch calibrated Galileo PCOs provided by EUSPA. The derived station coordinates are thus given in the consistently derived IGSR3 reference frame whose terrestrial scale differs by around 1.2 ppb from the ITRF2014 scale as described in IGS-mail 8026 (https://lists.igs.org/pipermail/igsmail/2021/008022.html). More details are presented in the associated publication (Männel et al., 2022). Despite daily coordinates, we also estimated hourly zenith total delays and daily gradients to account for tropospheric delays. The results are provided in the following formats: • troposphere delays and gradients (GFZ1R3TFIN_〈YYYY〉〈DDD〉0000_01D_01H_TRO.TRO.gz, data format: tro: https://files.igs.org/pub/data/format/sinex_tro_v2.00.pdf), • station coordinates (GFZ1R3FIN_〈YYYY〉〈DDD〉0000_01D_01D_SOL.SNX.gz,data format: snx: https://www.iers.org/IERS/EN/Organization/AnalysisCoordinator/SinexFormat/sinex.html), The file naming follows the IGS Long Product Filename Convention (http://acc.igs.org/repro3/Long_Product_Filenames_v1.0.pdf). All files are .gz compressed.
    Keywords: GNSS ; tide gauge ; station coordinates ; vertical land motion ; TIGA ; Earth Remote Sensing Instruments 〉 Passive Remote Sensing 〉 Positioning/Navigation 〉 GPS ; EARTH SCIENCE 〉 OCEANS 〉 COASTAL PROCESSES 〉 LOCAL SUBSIDENCE TRENDS ; EARTH SCIENCE 〉 OCEANS 〉 COASTAL PROCESSES 〉 SEA LEVEL RISE ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOMORPHIC LANDFORMS/PROCESSES 〉 TECTONIC PROCESSES 〉 ISOSTATIC UPLIFT ; In Situ/Laboratory Instruments 〉 Gauges 〉 TIDE GAUGES
    Type: Dataset , Dataset
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  • 70
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this latest OIES podcast we continue our weekly updates of the impact of the war between Russia and Ukraine on energy markets. This week James Henderson, Jack Sharples and Mike Fulwood review continuing flows of Russian gas to Europe, despite the threat of an embargo. We note the increase in volumes since the invasion […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-impact-of-russia-ukraine-war-on-energy-markets-series-4/"〉OIES Podcast – Impact of Russia-Ukraine War on Energy Markets Series – 4〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/PODCAST-145-Impact-of-Russia-Ukraine-War-on-Energy-Markets-4.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/PODCAST-145-Impact-of-Russia-Ukraine-War-on-Energy-Markets-4.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 71
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Here you will find the pre-read for session 4 of the April 2022 Sponsors’ Meeting. Session 4 – Gas Sponsors Meeting April 2022〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/pre-read-session-4-energy-transition-scenarios-and-impacts-on-natural-gas/"〉Pre-read Session 4 – Energy Transition Scenarios and Impacts on Natural Gas〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 72
    Publication Date: 2022-04-28
    Description: Abstract
    Description: The GOCE satellite carries three magnetometers as part of its drag-free attitude orbit control system (DFACS). The magnetometers do not belong to the scientific payload of the mission. After postprocessing of the data, information on the geomagnetic field and on electric currents in near Earth space are derived. The GOCE fluxgate magnetometer data (MAG) have been combined into to a single time series. The provided data consists of raw magnetic field data as provided by Level 1b (RAW), magnetic field data aligned, calibrated and corrected (ACAL_CORR), CHAOS7 magnetic model predictions for core, crustal and large-scale magnetospheric field (CHAOS7, Finlay et al., 2020), housekeeping information, e.g. magnetorquer, solar array and battery currents (HK), Magnetic coordinates (APEX) and radial and field-aligned currents derived from magnetic data (FAC). The calibration and characterization follows the approach given in the references for GOCE calibration. The data are provided in NASA cdf format (https://cdf.gsfc.nasa.gov/) and accessible at: ftp://isdcftp.gfz-potsdam.de/platmag/MAGNETIC_FIELD/GOCE/Analytical/v0205/ and further described in a README.
    Keywords: Platform Magnetometers ; Satellite-based magnetometers ; Earth's magnetic field ; Geomagnetism ; Earth Observation Satellites 〉 Earth Explorers 〉 GOCE ; Earth Remote Sensing Instruments 〉 Passive Remote Sensing 〉 Magnetic Field/Electric Field Instruments 〉 MAGNETOMETERS ; Earth Remote Sensing Instruments 〉 Passive Remote Sensing 〉 Magnetic Field/Electric Field Instruments 〉 MTQ ; Solar/Space Observing Instruments 〉 Magnetic Field/Electric Field Instruments 〉 FLUXGATE MAGNETOMETERS
    Type: Dataset , Dataset
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  • 73
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    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉The strong increase in Turkish demand and the call on Russian pipeline flows, in the context of tight European markets in late 2021 and the high price environment in 2022, raises questions about the outlook for 2022. Following the Russian invasion of Ukraine and Europe’s anticipated need for higher LNG imports, markets are eyeing with […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/turkeys-supply-demand-balance-and-renewal-of-its-ltcs/"〉Turkey’s supply-demand balance and renewal of its LTCs〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 74
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    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this OIES podcast David Ledesma talks to Michal Meidan about China’s recently published energy five-year plans and how they align with the country’s near-term priorities. David and Michal discuss the macroeconomic outlook in China and the implications of the zero-tolerance approach to COVID for oil and gas demand, as well as how the Russian […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-chinas-energy-plans-and-macroeconomic-realities/"〉OIES Podcast – China’s energy plans and macroeconomic realities?〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/PODCAST-144-Chinas-energy-plans-and-macroeconomic-realities.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/04/PODCAST-144-Chinas-energy-plans-and-macroeconomic-realities.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 75
    Publication Date: 2022-05-02
    Description: Abstract
    Description: The dataset presented here is an earthquake catalog for the central Sea of Marmara (Turkey) obtained by applying a traditional STA/LTA technique to the continuous waveforms. The magnitude of completeness of this catalog is MW = 1.4. The full description of the data processing and creation of the catalog is provided in the paper “Near - fault monitoring reveals combined seismic and slow activation of a fault branch within the Istanbul-Marmara seismic gap in NW Turkey” published by Martínez-Garzón et al., in Seismological Research Letters. The data are provided as the following two ASCII tables: The file 2021-004_Martinez-Garcon-et-al_Initial_seismicity_catalog contains the seismic events for which we could successfully calculate an earthquake location. The ASCII table has the following columns: columns: id, year, month, day, hour, minute, second, serial time, latitude, longitude, depth [km], magnitude, horizontal error [km], vertical error [km], RMS, maximum azimuthal gap [degree]. The table 2021-004_Martinez-Garcon-et-al_Relocated_seismicity_catalog contains the seismic events for which we could refine the initial location and obtain a double-difference refined location. The ASCII table has the following columns: id, latitude, longitude, depth [km], horizontal error [km], vertical error [km].
    Keywords: Earthquake catalog ; Marmara region ; near-fault monitoring ; SMARTnet ; GONAF ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOMORPHIC LANDFORMS/PROCESSES 〉 TECTONIC LANDFORMS 〉 FAULTS ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES 〉 EARTHQUAKE MAGNITUDE/INTENSITY
    Type: Dataset , Dataset
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  • 76
    Publication Date: 2022-05-02
    Description: Abstract
    Description: AnyPetro is a Matlab-based, GUI-controlled software for adjusting the parameters of arbitrary and non-linear petrophysical models to laboratory data. A Gauss-Newton scheme is applied for the minimization of a damped least-squares objective function. Thereby the Jacobian matrix is calculated explicitely with the perturbation method. Data weighting, model parameter transformations and different regularizations are provided. The petrophysical model resp. the forward operator is introduced by the user in the form of a short text file. Example data files and forward operators as well as Matlab App and standalone installers are provided. The software tool has been developed for and successfully applied to the fitting of various petrophysical data sets (e.g. porosity, specific surface, electrical conductivity, spectral induced polarization) from fluid, unconsolidated, solid and crushed samples to non-linear, multi-parameter models (e.g. electrical CO2-water interaction, Debye Decomposition, crushed rock conductivity).
    Description: Other
    Description: GNU GENERAL PUBLIC LICENSE (Version 3, 29 June 2007) Copyright (C) 〈2022〉 Jana H. Börner, Volker Herdegen This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see 〈https://www.gnu.org/licenses/〉
    Keywords: inversion ; petrophysics ; parameter fitting ; laboratory ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION ; EARTH SCIENCE SERVICES 〉 MODELS 〉 PHYSICAL/LABORATORY MODELS ; science 〉 natural science 〉 earth science 〉 geophysics
    Type: Software , Software
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  • 77
    Publication Date: 2022-05-03
    Description: Abstract
    Description: "2-year seismological experiment near Fagradalsfjall, Reykjanes peninsula in 2021/22" is a two-year seismological experiment realized near the eruptive site at Fagradalsfjall on the Reykjanes peninsula, Iceland, by Eva Eibl (University of Potsdam) in collaboration with Gylfi P. Hersir, Egill Á. Gudnason and Friðgeir Pétursson from ISOR Iceland. From March to September 2021 an effusive, basaltic eruption happened in Geldingadalir near mount Fagradalsfjall on the Reykjanes peninsula. The aim of the seismic experiment was to monitor volcano-seismic signals such as LP events, VT events and tremor, before, during and after the eruption from 14 March 2021 to August 2022. We used two broadband seismometers (Nanometrics Trillium Compact 120 s) and two rotational sensors (iXblue blueSeis-3A) and stored the data on DataCubes and CommunicationCubes, respectively. Sensors were until mid-June installed on the surface and shielded from wind using a bucket. From mid-June they were buried 40cm deep in the ground at about 2 km from the eruptive vent. At any given time, at least one station recorded the seismic signals caused by the eruption. Waveform data are available from the GEOFON data centre, under network code 9F.
    Keywords: Broadband seismic waveforms ; Seismic monitoring ; temporary local seismic network ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY ; In Situ/Laboratory Instruments 〉 Magnetic/Motion Sensors 〉 Seismometers ; In Situ Land-based Platforms 〉 GEOPHYSICAL STATIONS/NETWORKS
    Type: Other , Seismic Network
    Format: ~600G
    Format: SEED data
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  • 78
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉India has taken on the unique challenge of trying to decarbonize while also growing its economy at 8-9% per annum. This is the required growth rate in order to meet the aspirations of its people related to decent employment, reliable economic growth, and improved standards of living. If you’ve heard the expression “trying to change […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oxford-energy-podcast-indias-progress-on-its-climate-action-plan/"〉OIES Podcast – India’s Progress on its Climate Action Plan〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-146-Indias-Progress-on-its-Climate-Action-Plan.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-146-Indias-Progress-on-its-Climate-Action-Plan.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 79
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉This new OIES presentation features our initial empirical assessment of the implications of the proposed EU ban on Russian oil for supply/demand and price dynamics to 2023. Although the degree of uncertainty surrounding the actual size of Russian supply disruptions remains high, March 2022 data show a very small m/m disruption of less than 1% […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/implication-of-the-proposed-eu-ban-of-russian-oil-for-global-oil-markets/"〉Implication of the proposed EU ban of Russian oil for global oil markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 80
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this latest OIES podcast, we continue our weekly updates of the impact of the war between Russia and Ukraine on energy markets. This week James Henderson, Jack Sharples and Mike Fulwood discuss the recent cancelation of the Russian gas export contracts with Poland and Bulgaria and the implications for the European gas market. They […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-impact-of-russia-ukraine-war-on-energy-markets-series-5/"〉OIES Podcast – Impact of Russia-Ukraine War on Energy Markets Series – 5〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-147-Impact-of-Russia-Ukraine-War-on-Energy-Markets-5.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-147-Impact-of-Russia-Ukraine-War-on-Energy-Markets-5.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 81
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉This new OIES presentation raises some key questions: How are oil markets coping with the shock so far? What types of trade patterns and trading practices are emerging? Will these shifts be permanent? Russian invasion has raised the ambition for an accelerated energy transition away from hydrocarbons (at least in Europe). Does the Russian invasion […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/russias-invasion-of-ukraine-new-oil-order/"〉Russia’s Invasion of Ukraine: New Oil Order?〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 82
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉As infrastructures that connect the energy source with the energy use, energy networks constitute a crucial element of national and global energy systems. They also play a key role in helping with balancing supply and demand, thus ensuring that energy is not only available in the right places but also at the right time. Energy […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/energy-networks-in-the-energy-transition-era/"〉Energy Networks in the Energy Transition Era〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 83
    Publication Date: 2022
    Description: 〈p〉On 21 April 2022, the European Commission published its guidance for EU Member States and their gas buyers on the Russian Presidential decree, which requested payment for Russian (pipeline) gas, delivered after 1 April 2022, in rubles. The decree and its implications for gas supply contracts have been analysed in a previous OIES publication. This comment […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/the-ec-guidance-on-the-russian-gas-for-rubles-decree-all-things-to-all-people/"〉The EC guidance on the Russian ‘gas for rubles’ decree: all things to all people?〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 84
    Publication Date: 2022-05-11
    Description: Abstract
    Description: Groundwater can respond quickly to precipitation and is the main contribution to streamflow in most catchments in humid, temperate climates. To better understand shallow groundwater dynamics in a boreal headwater catchment, we installed a network of groundwater wells in two areas in the Krycklan catchment in Northern Sweden. This dataset contains groundwater level data and sampling data from a small headwater catchment (3.5 ha, 54 wells) and a hillslope (1 ha, 21 wells). The dataset is arranged in to subsets, Dataset 1 and 2, the first containing groundwater levels and related information while the second contains information on the chemical sampling procedure and laboratory results. The average wells depth was 274 cm (range: 70 - 581 cm) and recorded the groundwater level variation at a 10-30 min interval between 18. July 2018 – 1. November 2020. Manual water level measurements (0 - 26 per well) during the summer seasons in 2018 and 2019 were used to confirm and re-calibrate the water level logger results. The groundwater level data for each well was carefully processed and quality controlled, using six data labels. The location and depths of the wells are in the file 2022-020_Erdbruegger-et-al_Krycklan_gw_wells.csv and the groundwater levels and classifications 2022-020_Erdbruegger-et-al_Krycklan_gw_levels.csv. The absolute and relative positions of the wells were measured with a high-precision GPS and terrestrial laser scanner (TLS) to determine differences in groundwater levels and thus groundwater gradients (the report of the registration of the point clouds can be found in the files 2022-020_Erdbruegger-et-al_TSL_registration_report_[A/B].rtf). During the summer of 2019, all wells with sufficient water were sampled and analyzed for electrical conductivity, pH, absorbance, anion and cation concentrations, as well as δ18O and δ2H (information on the sampling and the laboratory results can be found in the files 2022-020_Erdbruegger-et-al_Krycklan_gw_chemistry.csv, 2022-020_Erdbruegger-et-al_Field_protocol.csv, 2022-020_Erdbruegger-et-al_Lab_analysis_description.pdf). This combined hydrometric and hydrochemical dataset can be useful to test models that simulate groundwater dynamics and to evaluate subsurface hydrological connectivity. The full description of the data and methods is provided in citation of article XX when available.
    Keywords: boreal catchment ; EARTH SCIENCE 〉 TERRESTRIAL HYDROSPHERE 〉 GROUND WATER 〉 GROUNDWATER CHEMISTRY ; hydrosphere 〉 hydrologic cycle 〉 hydrologic balance 〉 runoff 〉 drainage 〉 drainage system 〉 natural drainage system ; hydrosphere 〉 water (geographic) 〉 groundwater ; science 〉 natural science 〉 water science 〉 hydrology
    Type: Dataset , Dataset
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  • 85
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this latest OIES Podcast, David Ledesma is joined by Mike Fulwood and Jack Sharples to discuss the latest trends on the European gas market. We begin with the latest pricing developments, with day-ahead prices in NW Europe declining slightly, while remaining above 90 EUR/MWh. On the supply side, it was noted that in the […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-impact-of-russia-ukraine-war-on-energy-markets-series-6/"〉OIES Podcast – Impact of Russia-Ukraine War on Energy Markets Series – 6〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/PODCAST-148-Impact-of-Russia-Ukraine-War-on-Energy-Markets-Series-–-6-.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/PODCAST-148-Impact-of-Russia-Ukraine-War-on-Energy-Markets-Series-–-6-.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 86
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    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉The completion of the Article 6 rulebook of the Paris Agreement is a necessary step towards building a robust framework in which participants can use collaborative approaches and a market-based mechanism to promote climate and sustainable development goals. There is widespread expectation that the Article 6 rulebook will create the conditions for effective and robust […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/article-6-and-voluntary-carbon-markets/"〉Article 6 and Voluntary Carbon Markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 87
    Publication Date: 2022-05-20
    Description: Abstract
    Description: floodsimilarity provides classes and methods to conduct a similarity analysis between multiple flood events. The library mainly consists of two parts: (1) algorithms to compute indices and other statistics based on pandas and xarray (2) well-defined data structures for data exchange (e.g. through the Similarity Backend Module) floodsimilarity is used by the Digital Earth Similarity Backend Module (Eggert, 2021) as part of the Digital Earth Flood Event Explorer. It is developed at the GFZ German Research Centre for Geosciences and funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project.
    Description: TechnicalInfo
    Description: Copyright © 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0. Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
    Keywords: Digital Earth ; Flood ; Flood Event Explorer ; EARTH SCIENCE 〉 TERRESTRIAL HYDROSPHERE 〉 SURFACE WATER 〉 FLOODS ; EARTH SCIENCE 〉 TERRESTRIAL HYDROSPHERE 〉 SURFACE WATER 〉 RUNOFF ; EARTH SCIENCE SERVICES 〉 DATA ANALYSIS AND VISUALIZATION
    Type: Software , Software
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  • 88
    Publication Date: 2022-05-20
    Description: Abstract
    Description: This data set includes digital image correlation data from analog earthquakes experiments. The data consists of grids of surface strain and time series of surface displacement (horizontal and vertical) and strain. The data have been derived using a stereo camera setup and processed with LaVision Davis 10 software. Detailed descriptions of the experiments and results regarding the surface pattern of the strain can be found in Kosari et al. (2022), to which this data set is supplementary. We use an analog seismotectonic scale model approach (Rosenau et al., 2019 and 2017) to generate a catalog of analog megathrust earthquakes (Table 1). The presented experimental setup is modified from the 3D setup used in Rosenau et al. (2019) and Kosari et al. ( 2020). The subduction forearc model wedge is set up in a glass-sided box (1000 mm across strike, 800mm along strike, and 300 mm deep) with a dipping, elastic basal conveyor belt and a rigid backwall. An elastoplastic sand-rubber mixture (50 vol.% quartz sandG12: 50 vol.% EPDM rubber) is sieved into the setup representing a 240 km long forearc segment from the trench to the volcanic arc. The shallow part of the wedge includes a basal layer of sticky rice grains characterized by unstable stick-slip sliding representing the seismogenic zone. Stick-slip sliding in rice is governed by a rate-and-state dependent friction law similar to natural rocks. According to Coulomb wedge theory (Dahlen et al., 1984), two types of wedge configurations have been designed: a “compressional” configuration represents an interseismically compressional and coseismically stable wedge (compressional configuration), and a “critical” configuration, which is interseismically stable (close to critically compressional) and may reach a critical extensional state coseismically (critical configuration). In the compressional configuration, a flat-top (surface slope α=0) wedge overlies a single large rectangular in map view stick-slip patch (Width*Length=200*800 mm) over a 15-degree dipping basal thrust. In the critical configuration, the surface angle of the elastoplastic wedge varies from the coastal segment onshore (α=10) to the inner-wedge offshore (α=15) segments over a 5-degree dipping basal thrust. Slow continuous compression of the wedge by moving the basal conveyor belt at a speed velocity of 0.05 mm/s simulates plate convergence and results in the quasi-periodic nucleation of quasi-periodic stick-slip events (analog earthquakes) within the rice layer. The wedge responds elastically to these basal slip events, similar to crustal rebound during natural subduction megathrust earthquakes.
    Keywords: EPOS ; multi-scale laboratories ; analogue models of geologic processes ; analogue modeling results ; Digital Image Correlation (DIC) / Particle Image Velocimetry (PIV) 〉 StrainMaster (La Vision GmbH) ; High frame rate camera ; Time lapse camera ; megathrust ; Rubber ; Sand 〉 Quartz Sand ; Subduction box ; tectonic and structural features ; tectonic process 〉 subduction ; tectonic setting 〉 plate margin setting 〉 active continental margin setting ; tectonic setting 〉 plate margin setting 〉 subduction zone setting ; Digital Image Correlation (DIC) / Particle Image Velocimetry (PIV) 〉 StrainMaster (La Vision GmbH) ; High frame rate camera ; Sand 〉 Quartz Sand ; Subduction box ; Time lapse camera ; megathrust ; tectonic and structural features ; tectonic process 〉 subduction ; tectonic setting 〉 plate margin setting 〉 active continental margin setting ; tectonic setting 〉 plate margin setting 〉 subduction zone setting ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOMORPHIC LANDFORMS/PROCESSES 〉 TECTONIC PROCESSES 〉 SUBDUCTION ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES
    Type: Dataset , Dataset
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  • 89
    Publication Date: 2022
    Description: 〈p〉In this podcast David Ledesma talks to Gulmira Rzayeva, Senior Visiting Research Fellow about Turkey’s unprecedented demand surge in 2021. Despite well developed natural gas import capacity and diverse supply sources, security of supply became a major issue for the country during the summer of 2021 and the winter of 2021/2022. At the same time, […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-turkeys-gas-supply-demand-balance-and-renewal-of-its-long-term-contracts/"〉OIES Podcast – Turkey’s gas supply-demand balance and renewal of its long-term contracts〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-149-Turkeys-gas-supply-demand-balance-and-renewal-of-its-long-term-contracts.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-149-Turkeys-gas-supply-demand-balance-and-renewal-of-its-long-term-contracts.mp3"〉💾〈/a〉〈/p〉〈/div〉
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    Topics: Energy, Environment Protection, Nuclear Power Engineering
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  • 90
    facet.materialart.
    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉The new issue of OIES Oil Monthly, including our latest short-term oil market outlook to 2023, is now available. – The disruption in Russian supplies intensified in April with an estimated loss of 1 mb/d of production m/m. We now expect Russian oil production shut ins to average between 1.6 mb/d and 3 mb/d in […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oil-monthly-issue-14/"〉Oil Monthly – Issue 14〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 91
    Publication Date: 2022-05-18
    Description: Abstract
    Description: This data publication presents data from a solaroptical spectral investigation in the area of the Rammelsberg non-ferrous metal mine in the Harz Mountains near the city of Goslar. The investigation refers to the local communion stone quarry (“Kommunionssteinbruch”) above the former mining area. As this is a nature conservation zone, all measurements were carried out in-situ without any physical sampling action. The field measurements were carried out in June 2019 in cooperation with Bergbau Goslar GmbH and the German Research Centre for Geosciences (GFZ). The data were collected within the research project ReMon (Remote Monitoring of Tailings Using Satellites and Drones, https://www.gfz-potsdam.de/en/section/remote-sensing-and-geoinformatics/projects/remon/) which aims at developing a prototypical monitoring system for mine tailings by using different sensors scaling from satellite- to drone-based. The data were analysed in the unpublished B.Sc. thesis of Constantin Hildebrand (Hildebrand, 2019). Sixteen different surface materials were determined and examined on-site. Point and imaging hyperspectral data were acquired (with the spectroradiometer PSR+ 3500 operating in the range of 350 - 2500 nm and with the Cubert FireflEYEUHD-185 hyperspectral camera with a range of 450 - 950 nm, respectively), both data sets are presented as spectral libraries. Chemical analyses of the samples were performed by using Laser-Induced Breakdown Spectroscopy (LIBS). LIBS data were collected using a handheld LIBS analyzer, the SciAps Z-300. In this data publication the different in-situ measurements are presented for each of the sixteen samples. Detailed information about the analysed material, the area of spectral sampling and geochemical analyses are explained in this report and can also be found in the additional Excel® sheet provided with the data.
    Keywords: Hyperspectral Imagery ; Imaging spectroscopy ; Mineral mapping ; 3D reconstruction ; non-ferrous metals ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 IGNEOUS ROCKS 〉 IGNEOUS ROCK PHYSICAL/OPTICAL PROPERTIES ; EARTH SCIENCE 〉 SOLID EARTH 〉 ROCKS/MINERALS/CRYSTALS 〉 SEDIMENTARY ROCKS 〉 SEDIMENTARY ROCK PHYSICAL/OPTICAL PROPERTIES
    Type: Dataset , Dataset
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  • 92
    Publication Date: 2022-05-23
    Description: Abstract
    Description: The 50 km long KTB Line 4 was recorded in 1985 as part of deep seismic reflection investigations for the DEKORP (German Continental Seismic Reflection Program) and KTB (German Continental Deep Drilling Program) projects. The network of lines consists of two DEKORP profiles, DEKORP 4N and its appendix 4Q, and six shorter KTB profiles, KTB 8501 – 8506, arranged in the form of a grid parallel and perpendicular to the main tectonic lineaments. The purpose of the investigations was to explore the planned target area for the Continental Deep Drilling Site in the Upper Palatinate with high-fold near-vertical incidence vibroseis acquisition. The main focus was on the crustal structure of the central Mid-European Variscides down to the Moho and the uppermost mantle and, in particular, on the suture between the Moldanubian Zone and the northward adjacent Saxothuringian Zone as well as on the metamorphic Zone of Erbendorf-Vohenstrauss. The array of the KTB profiles represents the pre-cursor of the 3-D seismic survey ISO 1989 (Integrated Seismics Oberpfalz). Details of the experiment, first results and interpretations were published by DEKORP Research Group (1987, 1988). Results discussed together with the drilling site were presented in a number of works which can be found in Emmermann & Wohlenberg (1989). The Technical Report of KTB 8504 gives complete information about acquisition and processing parameters. The European Variscides, extending from the French Central Massif to the East European Platform, originated during the collision between Gondwana and Baltica in the Late Palaeozoic. Due to involvement of various crustal blocks in the orogenesis, the mountain belt is subdivided into distinct zones. The external fold-and-thrust belts of the Rhenohercynian and Saxothuringian as well as the predominantly crystalline body of the Moldanubian dominate the central European segment of the Variscides. Polyphase tectonic deformation, magmatism and metamorphic processes led to a complex interlinking between the units. The Saxothuringian represents the infill of a Cambro-Ordovician basin. The Moldanubian contains blocks of pre-Variscan crust and their Palaezoic cover. During the Variscan orogeny the Moldanubian crust was thrust toward the northwest over the Saxothuringian foreland. Both units were welded to one another by a low-pressure metamorphism accompanied by polyphase deformation (DEKORP Research Group, 1987, 1988). The NNW-SSE trending line KTB 8504 runs ca. 15 km southwest from the KTB drill site, nearly parallel to KTB 8505, KTB 8506 and DEKORP 4N and perpendicular to KTB 8501 – 8503. The profile is located southwest of the Franconian Line inside the Permo-Carboniferous and younger sediments of the Mesozoic foreland, which is underlain by a westward continuation of the Erbendorf-Vohenstrauss Zone (DEKORP Research Group, 1988).
    Description: Other
    Description: The German Continental Seismic Reflection Program DEKORP (DEutsches KOntinentales Reflexionsseismisches Programm) was carried out between 1984 – 1999 as the German national reflection seismic program funded by the Federal Ministry of Research and Technology (BMFT), Bonn [now: the Federal Ministry of Education and Research (BMBF)]. DEKORP was administrated by the former Geological Survey of Lower Saxony (NLfB), Hannover [now: the State Authority for Mining, Energy and Geology (LBEG)]. In 1994 the DEKORP management was taken over by the Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences. The aim of DEKORP was to investigate the deep crustal structure of Germany with high-resolution near-vertical incidence (mostly vibro)seismic acquisition, supplemented by wide-angle seismic and other target-oriented piggy-back experiments, all complemented by optimized methods of data processing and interpretation. The DEKORP project was closely linked with the KTB (German continental deep-drilling program) and was an equivalent to many other deep-seismic programs world-wide such as COCORP, BIRPS, LITHOPROBE, ECORS, CROP, BELCORP, IBERSEIS and many more. The DEKORP-Atlas (Meissner & Bortfeld, 1990) gives a detailed overview about most of the different campaigns and results. In sum, the resulting DEKORP database includes approximately 40 crustal-scale 2D-seismic reflection lines covering a total of ca. 4 700 km and one 3D-seismic reflection survey covering ca. 400 km². Each DEKORP survey is provided with all datasets that are necessary for either a re-processing (i.e. raw unstacked field records in SEGY) or a re-interpretation (i.e. finally processed sections in SEGY or PNG). The raw data are sorted by records or by CDPs. The final data are available as unmigrated or migrated stacks without or with coherency enhancement. Automatical line-drawings are also included. All data come with additional meta information for each domain (source, receiver, CDP) like coordinates, elevations, locations and static corrections combined in ASCII-tables for geometry assignment. Furthermore, all metadata originating from paper copies are made available as scanned files in PNG or PDF, e.g. field and observer reports, location maps in different scales, near-surface profile headers and others. The DEKORP datasets provide unique and deep insights into the subsurface below Germany covering the earth’s crust from the surface to the upper mantle and are increasingly requested by academic institutions and commercial companies. Fields of applications are geothermal development, hazard analysis, hydrocarbon/shale gas exploration, underground gas storage, tunnel construction and much more.
    Keywords: DEKORP ; Deutsches Kontinentales Reflexionsseismisches Programm ; KTB ; Kontinentales Tiefbohrprogramm ; deep crustal structure ; crustal-scale seismics ; near-vertical incidence reflection ; Vibroseis acquisition ; Variscan Orogenic Belt ; Saxothuringian ; Moldanubian ; Bohemian Massif ; Zone of Tirschenreuth-Mähring ; Mohorovičić discontinuity ; scientific drilling ; tectonothermal activity ; seismic risks ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES 〉 SEISMIC PROFILE ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 PLATE TECTONICS ; lithosphere 〉 earth's crust
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  • 93
    Publication Date: 2022-05-23
    Description: Abstract
    Description: The 47 km long KTB Line 1 was recorded in 1985 as part of deep seismic reflection investigations for the DEKORP (German Continental Seismic Reflection Program) and KTB (German Continental Deep Drilling Program) projects. The network of lines consists of two DEKORP profiles, DEKORP 4N and its appendix 4Q, and six shorter KTB profiles, KTB 8501 – 8506, arranged in the form of a grid parallel and perpendicular to the main tectonic lineaments. high-fold near-vertical incidence vibroseis acquisition. The main focus was on the crustal structure of the central Mid-European Variscides down to the Moho and the uppermost mantle and, in particular, on the suture between the Moldanubian Zone and the northward adjacent Saxothuringian Zone as well as on the metamorphic Zone of Erbendorf-Vohenstrauss. The array of the KTB profiles represents the pre-cursor of the 3-D seismic survey ISO 1989 (Integrated Seismics Oberpfalz). Details of the experiment, first results and interpretations were published by DEKORP Research Group (1987, 1988). Results discussed together with the drilling site were presented in a number of works which can be found in Emmermann & Wohlenberg (1989). The Technical Report of KTB 8501 gives complete information about acquisition and processing parameters. The European Variscides, extending from the French Central Massif to the East European Platform, originated during the collision between Gondwana and Baltica in the Late Palaeozoic. Due to involvement of various crustal blocks in the orogenesis, the mountain belt is subdivided into distinct zones. The external fold-and-thrust belts of the Rhenohercynian and Saxothuringian as well as the predominantly crystalline body of the Moldanubian dominate the central European segment of the Variscides. Polyphase tectonic deformation, magmatism and metamorphic processes led to a complex interlinking between the units. The Saxothuringian represents the infill of a Cambro-Ordovician basin. The Moldanubian contains blocks of pre-Variscan crust and their Palaezoic cover. During the Variscan orogeny the Moldanubian crust was thrust toward the northwest over the Saxothuringian foreland. Both units were welded to one another by a low-pressure metamorphism accompanied by polyphase deformation (DEKORP Research Group, 1987, 1988). The WSW – ENE striking line KTB 8501 is located ca. 12 km north of the KTB borehole. From southwest to northeast KTB 8501 crosses KTB 8504, DEKORP 4N, KTB 8505 and KTB 8506. As well as the lines KTB 8502 and 8503 the profile 8501 was arranged parallel to strike running across the NW-SE directed system of block-faults at the southwestern margin of the Bohemian Massif (DEKORP Research Group, 1988). The most important tectonic lineament, crossed by KTB 8501, is the NW-trending Franconian Line. The fault zone separates the crystalline Bohemian Massif from the foreland, which is covered by Mesozoic and Upper Palaeozoic sedimentary rocks (DEKORP Research Group, 1987).
    Description: Other
    Description: The German Continental Seismic Reflection Program DEKORP (DEutsches KOntinentales Reflexionsseismisches Programm) was carried out between 1984 – 1999 as the German national reflection seismic program funded by the Federal Ministry of Research and Technology (BMFT), Bonn [now: the Federal Ministry of Education and Research (BMBF)]. DEKORP was administrated by the former Geological Survey of Lower Saxony (NLfB), Hannover [now: the State Authority for Mining, Energy and Geology (LBEG)]. In 1994 the DEKORP management was taken over by the Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences. The aim of DEKORP was to investigate the deep crustal structure of Germany with high-resolution near-vertical incidence (mostly vibro)seismic acquisition, supplemented by wide-angle seismic and other target-oriented piggy-back experiments, all complemented by optimized methods of data processing and interpretation. The DEKORP project was closely linked with the KTB (German continental deep-drilling program) and was an equivalent to many other deep-seismic programs world-wide such as COCORP, BIRPS, LITHOPROBE, ECORS, CROP, BELCORP, IBERSEIS and many more. The DEKORP-Atlas (Meissner & Bortfeld, 1990) gives a detailed overview about most of the different campaigns and results. In sum, the resulting DEKORP database includes approximately 40 crustal-scale 2D-seismic reflection lines covering a total of ca. 4 700 km and one 3D-seismic reflection survey covering ca. 400 km². Each DEKORP survey is provided with all datasets that are necessary for either a re-processing (i.e. raw unstacked field records in SEGY) or a re-interpretation (i.e. finally processed sections in SEGY or PNG). The raw data are sorted by records or by CDPs. The final data are available as unmigrated or migrated stacks without or with coherency enhancement. Automatical line-drawings are also included. All data come with additional meta information for each domain (source, receiver, CDP) like coordinates, elevations, locations and static corrections combined in ASCII-tables for geometry assignment. Furthermore, all metadata originating from paper copies are made available as scanned files in PNG or PDF, e.g. field and observer reports, location maps in different scales, near-surface profile headers and others. The DEKORP datasets provide unique and deep insights into the subsurface below Germany covering the earth’s crust from the surface to the upper mantle and are increasingly requested by academic institutions and commercial companies. Fields of applications are geothermal development, hazard analysis, hydrocarbon/shale gas exploration, underground gas storage, tunnel construction and much more.
    Keywords: DEKORP ; Deutsches Kontinentales Reflexionsseismisches Programm ; KTB ; Kontinentales Tiefbohrprogramm ; deep crustal structure ; crustal-scale seismics ; near-vertical incidence reflection ; Vibroseis acquisition ; Variscan Orogenic Belt ; Saxothuringian ; Moldanubian ; Bohemian Massif ; Franconian Line ; Zone of Erbendorf-Vohenstrauss ; Mohorovičić discontinuity ; scientific drilling ; tectonothermal activity ; seismic risks ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 EARTHQUAKES 〉 SEISMIC PROFILE ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 PLATE TECTONICS ; lithosphere 〉 earth's crust
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  • 94
    facet.materialart.
    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Following the Russian invasion of Ukraine, global energy markets have tightened with prices of oil and gas surging. At the same time, Chinese oil and gas demand has been relatively weak, raising questions about the impact of high prices on China’s appetite for imported oil and gas. This comment argues that China’s weakening economy, due […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/chinas-diminished-appetite-for-imported-oil-and-gas-is-the-price-not-right/"〉China’s diminished appetite for imported oil and gas: is the price not right?〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 95
    facet.materialart.
    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉The cement industry is responsible for seven per cent of global industrial greenhouse gas emissions. Despite all the environmental techniques adopted by the industry, clinker production is, and will be, associated with significant amounts of CO2 emissions due to the calcination process. In contrast to other energy-intensive industries, emissions caused by fuel consumption do not […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/the-role-of-ccus-in-decarbonizing-the-cement-industry-a-german-case-study/"〉The role of CCUS in decarbonizing the cement industry: A German case study〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 96
    facet.materialart.
    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉In this latest OIES podcast – the seventh in our series on the impact of the Russian invasion of Ukraine on the European gas market – we continue our analysis of ongoing developments in European gas supply, namely pipeline and LNG imports. With LNG imports at record levels in recent months, and non-Russian pipeline imports […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-impact-of-russia-ukraine-war-on-energy-markets-series-7/"〉OIES Podcast – Impact of Russia-Ukraine War on Energy Markets Series – 7〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/PODCAST-151-Impact-of-Russia-Ukraine-War-on-Energy-Markets-Series-–-7.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/PODCAST-151-Impact-of-Russia-Ukraine-War-on-Energy-Markets-Series-–-7.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 97
    facet.materialart.
    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Energy networks are infrastructures that transfer energy from the production source to the consumers’ premises. They constitute various forms of technologies ranging from established networks, such as electricity and natural gas, to emerging grids, such as hydrogen, heating, and cooling. The net-zero carbon target will result in a significant change in energy systems with important […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/oies-podcast-energy-networks-in-the-energy-transition-era/"〉OIES Podcast – Energy Networks in the Energy Transition Era〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉 〈div class="enclosure"〉〈p class="enclosure-content"〉〈audio preload="none" src="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-150-Energy-Networks-in-the-Energy-Transition-Era.mp3" controls="controls"〉〈/audio〉 〈a download="" href="https://a9w7k6q9.stackpathcdn.com/wpcms/wp-content/uploads/2022/05/Podcast-150-Energy-Networks-in-the-Energy-Transition-Era.mp3"〉💾〈/a〉〈/p〉〈/div〉
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  • 98
    facet.materialart.
    Unknown
    The Oxford Institute for Energy Studies
    Publication Date: 2022
    Description: 〈p〉Since our previous edition of the Quarterly Gas Review, the Russian build-up of troops around Ukraine’s border has erupted into a full-scale invasion. European gas prices, which were already high, surged. In response to the invasion, the European Commission and various European governments announced their intention to reduce dependency on Russian gas imports. In response, […]〈/p〉 〈p〉The post 〈a rel="nofollow" href="https://www.oxfordenergy.org/publications/quarterly-gas-review-short-and-medium-term-outlook-for-gas-markets/"〉Quarterly Gas Review: Short- and Medium-Term Outlook for Gas Markets〈/a〉 appeared first on 〈a rel="nofollow" href="https://www.oxfordenergy.org/"〉Oxford Institute for Energy Studies〈/a〉.〈/p〉
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  • 99
    Publication Date: 2022-05-30
    Description: Abstract
    Description: Py4HIP is an open-source software tool for Heat-In-Place calculations implemented as a self-explanatory Jupyter notebook written in Python (Py4HIP.ipynb) Calculating the Heat In Place (HIP) is a standard method for assessing the geothermal potential for a defined geological unit (e.g., Nathenson, 1975; Muffler and Cataldi, 1978; Garg and Combs, 2015). The respective implementation in Py4HIP is based on a volumetric quantification of contained energy after Muffler and Cataldi (1978), where the geological unit at hand is considered spatially variable in terms of its temperature, thickness, porosity, density and volumetric heat capacity of its solid and fluid (brine) components. The energy values provided by Py4HIP as ASCII lists and map representations correspond to the stored energy in J/m^2.
    Description: TechnicalInfo
    Description: Requirements: Py4HIP requires Python 〉= 3.5, JupyterLab, and uses the following packages: • numpy • pandas • pathlib (for creating folders) • matplotlib (for plotting figures)
    Keywords: heat in place ; geothermal potential ; contained energy ; subsurface reservoir ; rock properties ; EARTH SCIENCE ; EARTH SCIENCE 〉 SOLID EARTH ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOTHERMAL DYNAMICS
    Type: Software , Software
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  • 100
    Publication Date: 2022-05-31
    Description: Abstract
    Description: These data files contain short periods of electrical data recorded at Stromboli volcano, Italy, in 2019 and 2020 using a prototype version of the Biral Thunderstorm Detector BTD-200. This sensor consists of two antennas, the primary and secondary antenna, which detect slow variations in the electrostatic field resulting from charge neutralisation due to electrical discharges. The sensor recorded at three different locations: BTD1 (38.79551°N, 15.21518°E), BTD2 (38.80738°N, 15.21355°E) and BTD3 (38.79668°N, 15.21622°E). Electrical data of the following explosions is provided (each in a separate data file): - Three Strombolian explosions on 12 June 2019 at 12:46:53, 12:49:27 and 12:56:10 UTC, respectively. - A major explosion on 25 June 2019 at 23:03:08 UTC. - A major explosion on 19 July 2020 at 03:00:42 UTC. - A major explosion on 16 November 2020 at 09:17:45 UTC. - A paroxysmal event at 3 July 2019 at 14:45:43 UTC. Each filename indicates the location of the BTD, the starting date and time of the file in UTC, and a short description of the three data columns inside the file (unixtime, primary, secondary). The first column provides the Unix timestamp of each data point, which is the time in seconds since 01/01/1970. All time is provided in UTC. The second column provides the measured voltage [V] recorded by the primary antenna. The third column provides the measured voltage [V] recorded by the secondary antenna.
    Keywords: volcanic lightning ; volcanic ash ; paroxysm ; major explosions ; Stromboli ; strombolian ; thunderstorm detector ; triboelectrification ; spatial charge ; EPOS ; multi-scale laboratories ; rock and melt physical properties ; EARTH SCIENCE 〉 ATMOSPHERE 〉 ATMOSPHERIC ELECTRICITY 〉 ELECTRIC FIELD ; EARTH SCIENCE 〉 ATMOSPHERE 〉 ATMOSPHERIC ELECTRICITY 〉 LIGHTNING ; EARTH SCIENCE 〉 HUMAN DIMENSIONS 〉 NATURAL HAZARDS 〉 VOLCANIC ERUPTIONS ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOMORPHIC LANDFORMS/PROCESSES 〉 TECTONIC LANDFORMS 〉 VOLCANO ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY 〉 ERUPTION DYNAMICS 〉 ASH/DUST DISPERSION ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY 〉 ERUPTION DYNAMICS 〉 VOLCANIC EXPLOSIVITY ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY 〉 VOLCANO MAGNITUDE/INTENSITY ; EARTH SCIENCE 〉 SOLID EARTH 〉 TECTONICS 〉 VOLCANIC ACTIVITY 〉 VOLCANO PREDICTIONS ; EARTH SCIENCE SERVICES 〉 ENVIRONMENTAL ADVISORIES 〉 GEOLOGICAL ADVISORIES 〉 VOLCANIC ACTIVITY ; geological process 〉 volcanism 〉 volcanic eruption ; land 〉 natural area 〉 terrestrial area 〉 mountainous area 〉 volcano ; science 〉 natural science 〉 earth science 〉 geology 〉 volcanology
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