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  • 1
    Digitale Medien
    Digitale Medien
    Springer
    Journal of seismology 1 (1997), S. 73-85 
    ISSN: 1573-157X
    Schlagwort(e): peak ground acceleration map ; seismic hazard ; seismic energy ; spatially smoothed activity ; Slovenia
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Geologie und Paläontologie , Physik
    Notizen: Abstract A progress report on the mapping effort for construction of a peak ground acceleration (PGA) map of Slovenia for 475-year return period for rock and firm soil is presented. The methodology is similar to that recently applied in Central and Eastern United States. It is based on historical seismicity spatially smoothed to different length scales. The procedure is described by Frankel (1995). He uses the characteristic earthquake recurrence relationship and in his firt version four different seismicity models. We also use four seismicity models. But instead of characteristic earthquake recurrence, we use the doubly truncated exponential magnitude-frequency relationship; no evidence of characteristic earthquakes in Slovenia has been found yet. Three of our models are similar to Frankel's first three models. Model 1 uses spatially smoothed activity rate based on magnitude 3.7 and above events since 1880. Model 2 deals with spatially smoothed activity rate based on magnitude 5.0 abd above events since 1690. Model 3 smoothes the observed activity over the entire region; it represents a uniform seismicity zone. Frankel skipped this model in his latest version (Frankel et al. 1996). In model 4, we introduce a new approach of calculating seismic activity rate taking into account released seismic energy. The ground motion attenuation model of Pugliese and Sabetta (1989) is used for all models. PGA maps for models 1, 2, 3 and 4 have been calculated, and a weighted mean map derived from them. A map of model 1 has been compared with the corresponding source zone map; the two maps do not differ significantly. A worst-case map derived from all four models has also been produced.
    Materialart: Digitale Medien
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    Publikationsdatum: 1997-01-01
    Beschreibung: A progress report on the mapping effort for construction of a peak ground acceleration (PGA) map of Slovenia for a 475-year return period for rock and firm soil is presented. The methodology is similar to that recently applied in central and eastern United States. It is based on historical seismicity spatially smoothed to different length scales. The procedure is described by Frankel (1995). He uses the characteristic earthquake recurrence relationship and in his first version, four different seismicity models. We also use four seismicity models, but instead of characteristic earthquake recurrence, we use the doubly truncated exponential magnitude-frequency relationship; no evidence of characteristic earthquakes in Slovenia has yet been found. Three of our models are similar to Frankel's first three models. Model 1 uses spatially smoothed activity rate based on magnitude 3.7 and above events since 1880. Model 2 deals with spatially smoothed activity rate based on magnitude 5.0 and above events since 1690. Model 3 smoothes the observed activity over the entire region; it represents a uniform seismicity zone. Frankel changed this model in his latest version (Frankel et al., 1996). In model 4, we introduce a new approach to calculating seismic activity rate taking into account released seismic energy. The ground motion attenuation model of Pugliese and Sabetta (1989) is used for all models. PGA maps for models 1, 2, 3 and 4 have been calculated, and a weighted mean map derived from them. A map of model 1 has been compared with the corresponding source zone map; the two maps do not differ significantly. A worst-case map derived from all four models has also been produced.
    Print ISSN: 1383-4649
    Digitale ISSN: 1573-157X
    Thema: Geologie und Paläontologie , Physik
    Publiziert von Springer
    Standort Signatur Erwartet Verfügbarkeit
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  • 3
    Publikationsdatum: 2009-04-10
    Print ISSN: 1570-761X
    Digitale ISSN: 1573-1456
    Thema: Geologie und Paläontologie
    Publiziert von Springer
    Standort Signatur Erwartet Verfügbarkeit
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  • 4
  • 5
    Publikationsdatum: 2021-10-25
    Beschreibung: Introduction: Physician’s burnout has been recognized as an increasing and significant work-related syndrome, described by the combination of emotional exhaustion (EE) and depersonalization (D), together with low personal accomplishment (PA). It has many negative consequences on personal, organizational, and patient care levels. This systematic review aimed to analyze research articles where psychological interventions with elements of mindfulness (PIMs) were used to support physicians in order to reduce burnout and foster empathy and well-being. Methods: Systematic searches were conducted in May 2019, within six electronic databases PubMed, EBSCOhost MEDLINE, PsycArticles, Cochrane Library, JSTOR, and Slovenian national library information system. Different combinations of boolean operators were used—mindfulness, empathy, medicine/family medicine/general practice/primary care, burnout, doctors/physicians, intervention, and support group. Additional articles were manually searched from the reference list of the included articles. Studies with other healthcare professionals (not physicians and residents) and/or medical students, and those where PIMs were applied for educational or patient’s treatment purposes were excluded. Results: Of 1194 studies identified, 786 screened and 139 assessed for eligibility, there were 18 studies included in this review. Regardless of a specific type of PIMs applied, results, in general, demonstrate a positive impact on empathy, well-being, and reduction in burnout in participating physicians. Compared with other recent systematic reviews, this is unique due to a broader selection of psychological interventions and emphasis on a sustained effect measurement. Conclusions: Given the pandemic of COVID-19, it is of utmost importance that this review includes also interventions based on modern information technologies (mobile apps) and can be used as an awareness-raising material for physicians providing information about feasible and easily accessible interventions for effective burnout prevention and/or reduction. Future research should upgrade self-reported data with objective psychological measures and address the question of which intervention offers more benefits to physicians.
    Print ISSN: 1661-7827
    Digitale ISSN: 1660-4601
    Thema: Energietechnik , Medizin
    Standort Signatur Erwartet Verfügbarkeit
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  • 6
    Publikationsdatum: 2024-04-20
    Beschreibung: The Slovenian Environment Agency (ARSO) and Geological Survey of Slovenia (GeoZS) jointly developed a new seismic hazard model for the 2021 Slovenian probabilistic seismic hazard assessment (PSHA) in the scope of a seven-year project starting in 2014. Fault and area source parameters and their uncertainties were estimated, using all available seismological, geological, and seismotectonic data, models, and interpretations. A fault source is a 3D structure, which is described by a fault trace, dip, seismogenic depth, and parameters that describe its kinematics (activity, fault source type, rake, slip rate values) and maximum magnitude the source can generate. An area source is represented by a polygon described with characteristic structural domain (faults, fault systems) and its style of faulting, seismogenic/hypocentral depth, activity rate, and maximum magnitude. The database contains 89 seismogenic faults and 18 area sources in Slovenia and its surroundings. Data includes shapefiles describing the geometry of seismogenic sources, and Excel parametrization tables, linked through source ID and name. Shapefiles provide fault surface traces and polygons for area sources. Both fault and area parametrization tables include two Excel sheets: the first level (sheet names Fault sources and Area Sources) describes all estimated source parameters, and the second (sheet names FS_PSHA and AS_PSHA) consists of parameters that were used in the 2021 Slovenian PSHA model and calculation of national seismic hazard maps. The owner of the database is ARSO, which led the PSHA and financed the seven-year project on active faults in Slovenia, carried out by GeoZS and ARSO. Seismogenic source delineation and estimation of many source parameters were done in the scope of this project. Other parameters were estimated by ARSO based on seismological data.
    Schlagwort(e): area source; probabilistic seismic hazard assessment (PSHA); seismic hazard model; seismogenic fault source; Slovenia; Slovenia_seismic_hazard_model
    Materialart: Dataset
    Format: application/zip, 287.4 kBytes
    Standort Signatur Erwartet Verfügbarkeit
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  • 7
    Publikationsdatum: 2021-05-12
    Beschreibung: The H2020 Project SERA (WP25-JRA3; http://www.sera-eu.org) is committed to updating and extending the 2013 European Seismic Hazard Model (ESHM13; Woessner et al., 2015, Bull. Earthquake Eng.) to form the basis of the next revision of the European seismic design code (CEN-EC8). Following the probabilistic framework established for ESHM13, the 2020 update (ESHM20) requires a continent-wide seismogenic model based on input from earthquake catalogs, tectonic information, and active faulting. The development of the European Fault-Source Model (EFSM20) fulfills the requirements related to active faulting. EFSM20 has two main categories of seismogenic faults: crustal faults and subduction systems. Crustal faults are meant to provide the hazard model with seismicity rates in a variety of tectonic contexts, including onshore and offshore active plate margins and plate interiors. Subduction systems are meant to provide the hazard model with both slab interface and intraslab seismicity rates. The model covers an area that encompasses a buffer of 300 km around all target European countries (except for Overseas Countries and Territories, OTCs), and a maximum of 300 km depth for slabs. The compilation of EFSM20 relies heavily on publicly available datasets and voluntarily contributed datasets spanning large regions, as well as solicited local contributions in specific areas of interest. The current status of the EFSM20 compilation includes 1,256 records of crustal faults for a total length of ~92,906 km and four subduction systems, namely the Gibraltar Arc, Calabrian Arc, Hellenic Arc, and Cyprus Arc. In this contribution, we present the curation of the main datasets and their associated information, the criteria for the prioritization and harmonization across the region, and the main strategy for transferring the earthquake fault-source input to the hazard modelers. The final version of EFSM20 will be made available through standard web services published in the EFEHR (http://www.efehr.org) and EPOS (https://www.seismofaults.eu) platforms adopting FAIR data principles. The SERA project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No.730900.
    Beschreibung: European Union's Horizon 2020 research and innovation programme under grant agreement No.730900
    Beschreibung: Published
    Beschreibung: Online
    Beschreibung: 3T. Sorgente sismica
    Schlagwort(e): Seismic Hazard Assessment ; SHA ; Seismogenic fault ; EFSM20 ; SERA ; Solid Earth
    Repository-Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Materialart: Conference paper
    Standort Signatur Erwartet Verfügbarkeit
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  • 8
    Publikationsdatum: 2022-11-18
    Beschreibung: Seismology and Earthquake Engineering Research Infrastructure Alliance for Europe (SERA), H2020, grant agreements 730900.
    Beschreibung: Published
    Beschreibung: 2T. Deformazione crostale attiva
    Beschreibung: 6T. Studi di pericolosità sismica e da maremoto
    Beschreibung: 4IT. Banche dati
    Schlagwort(e): Geology ; Earth sciences of Europe ; Earth sciences of Africa ; Earth sciences of Asia ; Earth Sciences and Geology ; earthquakes ; hazard model ; seismogenic faults ; slip rate ; crustal fault sources ; subduction fault sources ; Seismology ; 04.04. Geology ; 04.06. Seismology ; 04.07. Tectonophysics
    Repository-Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Materialart: web product
    Standort Signatur Erwartet Verfügbarkeit
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