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  • Other Sources  (18)
  • 2020-2022  (11)
  • 1925-1929  (7)
  • 2021  (11)
  • 1926  (6)
  • 1925  (1)
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  • 1
    Publication Date: 2019-06-28
    Description: This report presents a theoretical treatment of the vaporization process of medium and heavy oils. The results of this investigation, which were mostly obtained from the lighter components of the heavy fuels, require a 10- or 16-fold vaporization in comparison with gasoline. We must attain a still finer degree of atomization, in order to include the heavier components.
    Type: NACA-TM-392
    Format: application/pdf
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  • 2
    Publication Date: 2019-06-28
    Description: While little has been accomplished in obtaining an abundant supply of light oils from coal and heavy oils, progress has been made on engine design to make use of the heavier oils. Progress has been made in two different directions which are outlined in this paper: the group of engines with medium and high-pressure carburetion in the cylinder; and the group of engines with low-pressure carburetion of the heavy oils before reaching the cylinder.
    Type: NACA-TM-362
    Format: application/pdf
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  • 3
    Publication Date: 2019-06-28
    Description: The test equipment for studying the vaporization of heavy and medium oils is described as well as some of the experimental properties explored such as vaporization speed and diffusion coefficient. The experiemtal arrangement is also discussed.
    Type: NACA-TM-384
    Format: application/pdf
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  • 4
    Publication Date: 2019-06-28
    Description: This report is an evaluation of the experiments on the use of heavy oils in explosion engines. A method for determining the heat of vaporization of these heavy oils is presented.
    Type: NACA-TM-363
    Format: application/pdf
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  • 5
    Publication Date: 2022-05-06
    Type: Article , NonPeerReviewed
    Format: text
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  • 6
    Publication Date: 2022-05-06
    Description: Bericht des Expeditionsleiters; Bericht über die ozeanographischen Untersuchungen; Ozeanographische Sonderuntersuchungen; Bericht über die biologischen Arbeiten; Bericht über die geologischen Arbeiten; Bericht über die akustischen Lotungen; Bericht über die chemischen Arbeiten; Bericht über die meteorologischen Arbeiten
    Type: Article , NonPeerReviewed
    Format: text
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  • 7
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    Unknown
    Mittler
    Publication Date: 2023-03-29
    Type: Article , NonPeerReviewed
    Format: text
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  • 8
    Publication Date: 2021-03-29
    Description: Geometric 3D models are a very efficient tool to visualize geological units and structural features that have been presented before just in two dimensions on maps or cross-sections. Most of the information of 3D models is presented as 3D views, virtual wells or horizontal or vertical cross-sections. However, are there further options to transfer as much as possible of the complex information of a 3D model in an adequate way to the user? Is it useful and promising to analyse 3D objects like surfaces or volumes in GIS software? In our investigation we performed a GIS based analysis of an existing geotechnical-geological 3D model of periglacial sediments. The two steps were multiple raster calculations to create geotechnical maps and a digital analysis of surface parameters based on geomorphological techniques and statistics. The investigation area is located in southern Lower Saxony and covers the city of Goettingen and surrounding regions within the valley of the river Leine. The valley is filled by unconsolidated, periglacial sediments of Quaternary age with a variable thickness ranging from 1 to 70 m. The analysed 3D model was constructed with GoCAD in a former project (Nix et al. 2009). The model is based on a heterogenous dataset comprising well data, thematic maps, and outcrop descriptions. Finally, the surfaces and volumes of the following units were modelled, with a special focus on their different geotechnical properties: (1) anthropogenic material, (2) floodplain and slope deposits, (3) freshwater limestone, peat and organic clay, (4) loess, displaced loess, and loess loam, (5) fluvial gravel, (6) outwash fan material, (7) solifluction material, (8) mixed, hetereougenous fillings of subrosion sinks and (9) the surface of the underlying hardrocks. Each top and bottom surface of the Gocad volumes was exported as raster file with additional information stored in an associated attribute table. In ArcGIS various geoprocessing tools were used to calculate and analyse these rasters and to develope thematic geotechnical and geological maps. The geomorphological analysis was subdivided in several steps. Firstly, the surfaces were described visually, concerning their outline, shape and distribution, as well as superficial structures like distinct edges, holes, channels. Secondarily, descriptive statistic parameters of thickness, area and elevation of each surface were calculated. Thirdly, geoprocessing tools of the Spatial Analyst were performed on each surface. Finally, several surfaces were combined to analyse them together, calculating ratios and overlay combinations. Seven thematical geoengineering and geological maps were created, each of them presenting one portion of the three-dimensional dataset: Map of the stratigraphy and depth of the Quaternary base, Map of the thickness of the Quaternary sediments, Distribution map of model units 1 m below ground level, Distribution map of model units 2 m below ground level, Maps of types of different foundation soils, Distribution map of sediments with low loading capacity and Map of distribution and quality of the wells. While the map creation focused on the geotechnical aspects of the model, the applied geomorphological analysis revealed various parameters and values that are related to the geological formation of the model units. Despite the complex dataset represented by the analysed 3D model, thematical information could be transfered into 2D as thematic maps. Some geological characteristics and parameters of the model units were extracted by the descriptive and GIS-based analysis. References Nix, T., Wagner, B., Lange, T. , Fritz, J., Sauter, M. (2009): 3D-Baugrundmodell der quartären Sedimente des Leinetals bei Göttingen. – 17. Tagung für Ingenieurgeologie, S. 223-227, Zittau
    Description: poster
    Keywords: 3D model ; Quaternary ; Lower Saxony ; geotechnical ; GIS ; FID-GEO-DE-7
    Language: English
    Type: conferencePaper
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  • 9
    Publication Date: 2021-05-27
    Description: In städtischen Räumen erhobene geologische, hydrogeologische und ingenieurgeologische Punkt- und Flächendaten werden meist dezentral verwaltet. Erst durch das Überführen der unterschiedlichen Punkt- und Flächendaten in ein Raummodell wird eine integrierende Auswertung möglich. Ein solches Raummodell des städtischen Untergrundes kann als Datenbasis für umfassende geowissenschaftliche Planungsunterlagen dienen, die ein Themenspektrum von der Baugrunderschließung, Grundwasser- und Altlastenerkundung bis hin zur flachen Geothermie abdecken. In einem Kooperationsprojekt zwischen dem Geowissenschaftlichen Zentrum der Universität Göttingen (GZG) und dem Landesamt für Bergbau, Energie und Geologie (LBEG) werden am Beispiel des mitteltiefen Untergrundes im Göttinger Stadtgebiet neue Methoden zum Aufbau geologisch/ingenieurgeologischer Raummodelle untersucht. Die bisher entwickelten Konzepte umfassen das einheitliche Aufbereiten von Punkt- und Flächendaten sowie die Definition ingenieurgeologischer Modellierungseinheiten. Aufbereitete Daten und 2D-Schnittdarstellungen dieser Modellierungseinheiten wurden in einem Pilotgebiet mit der Software Gocad in das eigentliche geologische Raummodell und modelltechnisch beschreibbare Basisflächen der Modellierungseinheiten überführt.
    Description: conference
    Keywords: FID-GEO-DE-7
    Language: German
    Type: conferencePaper
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  • 10
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    Unknown
    Kraatz, Berlin
    In:  SUB Göttingen | KART B 140:3930;KART H 140:Hessen
    Publication Date: 2021-07-22
    Description: Geologische Karte 1: 25 000 mit Erläuterungen. Digitalisat des FID GEO (Fachinformationsdienst Geowissenschaften der festen Erde), erstellt durch das GDZ (Göttinger Digitalisierungszentrum), Karte aus dem Bestand der SUB Göttingen. Koordinaten Vorlage: Nullmeridian Ferro E 028 20 - E 028 30 / N 052 06 - N 052 00
    Description: map
    Description: DFG, SUB Göttingen
    Keywords: 912 ; 554.3 ; Geologische Karte ; Hessen ; FID-GEO-DE-7
    Language: German
    Type: map_digi
    Format: 45
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