84 datasets found
  1. a

    Global Oil and Gas Features

    • hub.arcgis.com
    • maps-cadoc.opendata.arcgis.com
    • +1more
    Updated Nov 25, 2020
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    Oil Spill Response Ltd (2020). Global Oil and Gas Features [Dataset]. https://hub.arcgis.com/maps/ef2d703fcf43426ba4a6108001974570
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    Dataset updated
    Nov 25, 2020
    Dataset authored and provided by
    Oil Spill Response Ltd
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    Description

    Version: GOGI_V10_2This data was downloaded as a File Geodatabse from EDX at https://edx.netl.doe.gov/dataset/global-oil-gas-features-database. This data was developed using a combination of big data computing, custom search and data integration algorithms, and expert driven search to collect open oil and gas data resources worldwide. This approach identified over 380 data sets and integrated more than 4.8 million features into the GOGI database.Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase” Acknowledgements: This work was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.Link to SourcePoint of Contact: Jennifer Bauer email:jennifer.bauer@netl.doe.govMichael D Sabbatino email:michael.sabbatino@netl.doe.gov

  2. A

    Data from: Global Oil & Gas Features Database

    • data.amerigeoss.org
    • osti.gov
    • +1more
    zip
    Updated Aug 9, 2019
    + more versions
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    Energy Data Exchange (2019). Global Oil & Gas Features Database [Dataset]. https://data.amerigeoss.org/es/dataset/27625d9b-4a28-4bdf-bc5c-09834f7a9dfb
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    zip(153584902), zip(214354463)Available download formats
    Dataset updated
    Aug 9, 2019
    Dataset provided by
    Energy Data Exchange
    Description

    This submission contains a zip file with the developed Global Oil & Gas Features Database (as an ArcGIS geodatabase). Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase

    Acknowledgements:

    This work was performed under a CRADA between NETL and EDF, and was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.

  3. Global Oil & Gas Infrastructure Features Database EDX Spatial Web Map

    • osti.gov
    Updated Mar 20, 2018
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    Sabbatino, Michael (2018). Global Oil & Gas Infrastructure Features Database EDX Spatial Web Map [Dataset]. https://www.osti.gov/dataexplorer/biblio/1502839-global-oil-amp-gas-infrastructure-features-database-geocube-collection
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    Dataset updated
    Mar 20, 2018
    Dataset provided by
    United States Department of Energyhttp://energy.gov/
    National Energy Technology Laboratoryhttps://netl.doe.gov/
    Authors
    Sabbatino, Michael
    Description

    This submission offers a link to a web mapping application hosted instance of the Global Oil & Gas Features Database (GOGI), via EDX Spatial. This offers users with the ability to visualize, interact, and create maps with data of their choice, as well as download specific attributes or fields of view from the database. This data can also be downloaded as a File Geodatabse from EDX at https://edx.netl.doe.gov/dataset/global-oil-gas-features-database. Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase” This data was developed using a combination of big data computing, custom search and data integration algorithms, and expert driven search to collect open oil and gas data resources worldwide. This approach identified over 380 data sets and integrated more than 4.8 million features into the GOGI database. Acknowledgements: This work was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.

  4. Development of an Open Global Oil and Gas Infrastructure Inventory and...

    • osti.gov
    • data.wu.ac.at
    Updated Mar 22, 2018
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    National Energy Technology Laboratory (NETL), Pittsburgh, PA, Morgantown, WV, and Albany, OR (United States). Energy Data eXchange (2018). Development of an Open Global Oil and Gas Infrastructure Inventory and Geodatabase [Dataset]. http://doi.org/10.18141/1427573
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    Dataset updated
    Mar 22, 2018
    Dataset provided by
    National Energy Technology Laboratoryhttps://netl.doe.gov/
    United States Department of Energyhttp://energy.gov/
    Description

    This submission contains a technical report describing the development process and visual graphics for the Global Oil and Gas Infrastructure database. Access the GOGI database using the following link: https://edx.netl.doe.gov/dataset/global-oil-gas-features-database There is a web-mapping tool that allows you to visualize and interact with this data also available here: https://edxspatial.arcgis.netl.doe.gov/maps/edxspatial-gogi-index.html Acknowledgement: This work was performed under a CRADA between NETL and EDF, and was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.

  5. a

    LNG

    • esriid-oilgas-tiger.opendata.arcgis.com
    Updated Nov 25, 2020
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    Oil Spill Response Ltd (2020). LNG [Dataset]. https://esriid-oilgas-tiger.opendata.arcgis.com/maps/OSRL::lng
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    Dataset updated
    Nov 25, 2020
    Dataset authored and provided by
    Oil Spill Response Ltd
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    Description

    Version: GOGI_V10_2This data was downloaded as a File Geodatabse from EDX at https://edx.netl.doe.gov/dataset/global-oil-gas-features-database. This data was developed using a combination of big data computing, custom search and data integration algorithms, and expert driven search to collect open oil and gas data resources worldwide. This approach identified over 380 data sets and integrated more than 4.8 million features into the GOGI database.Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase” Acknowledgements: This work was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.Link to SourcePoint of Contact: Jennifer Bauer email:jennifer.bauer@netl.doe.govMichael D Sabbatino email:michael.sabbatino@netl.doe.gov

  6. a

    Basins

    • hub.arcgis.com
    Updated Nov 25, 2020
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    Oil Spill Response Ltd (2020). Basins [Dataset]. https://hub.arcgis.com/maps/OSRL::basins
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    Dataset updated
    Nov 25, 2020
    Dataset authored and provided by
    Oil Spill Response Ltd
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    Description

    Version: GOGI_V10_2This data was downloaded as a File Geodatabse from EDX at https://edx.netl.doe.gov/dataset/global-oil-gas-features-database. This data was developed using a combination of big data computing, custom search and data integration algorithms, and expert driven search to collect open oil and gas data resources worldwide. This approach identified over 380 data sets and integrated more than 4.8 million features into the GOGI database.Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase” Acknowledgements: This work was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.Link to SourcePoint of Contact: Jennifer Bauer email:jennifer.bauer@netl.doe.govMichael D Sabbatino email:michael.sabbatino@netl.doe.gov

  7. a

    Platforms and Well Pads

    • arc-gis-hub-home-arcgishub.hub.arcgis.com
    Updated Nov 25, 2020
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    Oil Spill Response Ltd (2020). Platforms and Well Pads [Dataset]. https://arc-gis-hub-home-arcgishub.hub.arcgis.com/datasets/OSRL::global-oil-and-gas-features?layer=11
    Explore at:
    Dataset updated
    Nov 25, 2020
    Dataset authored and provided by
    Oil Spill Response Ltd
    License

    Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
    License information was derived automatically

    Area covered
    Proliv Longa, Proliv Longa, Bering Sea, Pacific Ocean, Arctic Ocean, Ross Sea, South Pacific Ocean, North Pacific Ocean
    Description

    Version: GOGI_V10_2This data was downloaded as a File Geodatabse from EDX at https://edx.netl.doe.gov/dataset/global-oil-gas-features-database. This data was developed using a combination of big data computing, custom search and data integration algorithms, and expert driven search to collect open oil and gas data resources worldwide. This approach identified over 380 data sets and integrated more than 4.8 million features into the GOGI database.Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase” Acknowledgements: This work was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.Link to SourcePoint of Contact: Jennifer Bauer email:jennifer.bauer@netl.doe.govMichael D Sabbatino email:michael.sabbatino@netl.doe.gov

  8. k

    World Oil Database

    • datasource.kapsarc.org
    • data.kapsarc.org
    Updated Mar 16, 2025
    + more versions
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    (2025). World Oil Database [Dataset]. https://datasource.kapsarc.org/explore/dataset/world-oil-database/
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    Dataset updated
    Mar 16, 2025
    Description

    This dataset contains world oil database from 2002-2021. Data from Joint Organisations Data Initiative. Follow datasource.kapsarc.org for timely data to advance energy economics research.

  9. d

    USGS National and Global Oil and Gas Assessment Project- Gulf Coast...

    • catalog.data.gov
    • data.usgs.gov
    Updated Jul 6, 2024
    + more versions
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    U.S. Geological Survey (2024). USGS National and Global Oil and Gas Assessment Project- Gulf Coast Smackover Conventional Oil and Gas Assessment Unit Boundaries, Assessment Input Data, and Fact Sheet Data Tables [Dataset]. https://catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-project-gulf-coast-smackover-conventional-
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    Dataset updated
    Jul 6, 2024
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Area covered
    Smackover
    Description

    This data release contains the boundaries of assessment units and input data for the assessment of undiscovered conventional oil and gas resources in the Smackover formation in the U.S. Gulf Coast. The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water boundary forms part of the Assessment Unit boundary. In addition to the shapefile, for U.S. assessments, allocation tables are provided that enumerate percentages assigned to various land categories. Machine-readable tables are also provided that contain the input and results for each assessment unit summarized in the USGS Fact Sheet. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  10. d

    USGS National and Global Oil and Gas Assessment Project-U.S. Gulf Coast,...

    • catalog.data.gov
    • data.usgs.gov
    Updated Jul 6, 2024
    + more versions
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    U.S. Geological Survey (2024). USGS National and Global Oil and Gas Assessment Project-U.S. Gulf Coast, Deep Tuscaloosa Conventional Gas: Assessment Unit Boundary, Assessment Input Data, and Fact Sheet Data Tables [Dataset]. https://catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-project-u-s-gulf-coast-deep-tuscaloosa-con
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    Dataset updated
    Jul 6, 2024
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Area covered
    Tuscaloosa
    Description

    This data release contains the boundaries of assessment units and input data for the assessment of undiscovered Deep Tuscaloosa Group sandstones conventional gas resources in the U.S. Gulf Coast in Louisiana and Mississippi. The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water boundary forms part of the Assessment Unit boundary. In addition to the shapefile, for U.S. assessments, allocation tables are provided that enumerate percentages assigned to various land categories. Machine-readable tables are also provided that contain the input and results for each assessment unit summarized in the USGS Fact Sheet. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  11. d

    USGS National and Global Oil and Gas Assessment Project - Williston Basin,...

    • catalog.data.gov
    • data.usgs.gov
    Updated Jul 6, 2024
    + more versions
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    U.S. Geological Survey (2024). USGS National and Global Oil and Gas Assessment Project - Williston Basin, Gas Assessment Unit Boundaries and Assessment Input Data Forms [Dataset]. https://catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-project-williston-basin-gas-assessment-uni
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    Dataset updated
    Jul 6, 2024
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Description

    This data release contains the boundaries of assessment units and input data for the assessment of undiscovered gas resources in the Williston Basin province in Montana, North Dakota and South Dakota. The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water boundary forms part of the Assessment Unit boundary. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  12. d

    USGS National and Global Oil and Gas Assessment Project—Senegal Basin...

    • datasets.ai
    • data.usgs.gov
    • +1more
    55
    Updated Aug 9, 2024
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    Department of the Interior (2024). USGS National and Global Oil and Gas Assessment Project—Senegal Basin Province: Assessment Unit Boundaries, Assessment Input Data, and Fact Sheet Data Tables [Dataset]. https://datasets.ai/datasets/usgs-national-and-global-oil-and-gas-assessment-projectsenegal-basin-province-assessment-u
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    55Available download formats
    Dataset updated
    Aug 9, 2024
    Dataset authored and provided by
    Department of the Interior
    Area covered
    Senegal
    Description

    This data release contains the boundaries of assessment units, assessment input data and resulting fact sheet data tables for the assessment of undiscovered oil and gas resources in the Senegal Basin Province of northwest Africa. The Assessment Unit is the fundamental unit used in the National and Global Oil and Gas Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. Machine-readable tables are provided that contain the input and results for each assessment unit summarized in the USGS Fact Sheet. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  13. c

    USGS National and Global Oil and Gas Assessment Project—Greater Caspian...

    • s.cnmilf.com
    • data.usgs.gov
    Updated Feb 22, 2025
    + more versions
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    U.S. Geological Survey (2025). USGS National and Global Oil and Gas Assessment Project—Greater Caspian Area: Assessment Unit Boundaries, Assessment Input Data, and Fact Sheet Data Tables [Dataset]. https://s.cnmilf.com/user74170196/https/catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-projectgreater-caspian-area-assessment-uni
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    Dataset updated
    Feb 22, 2025
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Description

    This data release contains the boundaries of assessment units, assessment input data, and resulting fact sheet data tables for the assessment of undiscovered oil and gas resources in the Greater Caspian area. The assessment unit is the fundamental unit used in the National and Global Oil and Gas Assessment Project for the assessment of undiscovered oil and gas resources. The assessment unit is defined within the context of the higher-level total petroleum system. The assessment unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the total petroleum system, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The assessment unit boundary is defined geologically as the limits of the geologic elements that define the assessment unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. Machine-readable tables are provided that contain the input and results for each assessment unit summarized in the U.S. Geological Survey (USGS) Fact Sheet. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  14. Oil And Gas Digital Rock Analysis Market Analysis North America, APAC,...

    • technavio.com
    Updated Jul 15, 2024
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    Technavio (2024). Oil And Gas Digital Rock Analysis Market Analysis North America, APAC, Europe, Middle East and Africa, South America - US, Canada, China, Russia, France - Size and Forecast 2024-2028 [Dataset]. https://www.technavio.com/report/oil-and-gas-digital-rock-analysis-market-industry-analysis
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    Dataset updated
    Jul 15, 2024
    Dataset provided by
    TechNavio
    Authors
    Technavio
    Time period covered
    2021 - 2025
    Area covered
    Global, Canada, France, United States, Russia
    Description

    Snapshot img

    Oil And Gas Digital Rock Analysis Market Size 2024-2028

    The oil and gas digital rock analysis market size is forecast to increase by USD 119.4 million, at a CAGR of 3.27% between 2023 and 2028.

    The market is experiencing significant growth, driven by several key factors. The increasing consumption of oil and gas globally is a major growth driver, as traditional fossil fuels continue to dominate the energy sector. Additionally, the rise in unconventional oil and gas resources, such as shale and tight formations, necessitates advanced digital rock analysis techniques to optimize extraction and improve efficiency. Volatility in global crude oil prices also underscores the need for cost-effective and accurate digital rock analysis solutions to help companies make informed decisions and mitigate risks. Market trends include the adoption of artificial intelligence and machine learning technologies, increasing collaboration between oil and gas companies and technology providers, and the growing importance of data-driven insights In the industry. Challenges include data security and privacy concerns, the need for standardization and interoperability, and the high cost of implementation and maintenance of digital rock analysis solutions.
    

    What will be the Size of the Oil And Gas Digital Rock Analysis Market During the Forecast Period?

    Request Free Sample

    The market is witnessing significant growth due to the increasing adoption of advanced imaging techniques in the exploration and production of both conventional and unconventional reservoirs. Logging activities are a crucial part of oil and gas operations, and the integration of digital imaging and advanced microscopy in these processes is revolutionizing the industry. Geologists, geochemists, petrophysicists, and petroleum engineers utilize various techniques such as CT Scanning, Micro CT Scanning, Scanning Electron Microscope, and other advanced analysis tools to study reservoir rocks at the pore scale.
    These techniques provide precise and realistic simulations, enabling optimal resource extraction from unconventional resources. Physics plays a vital role in digital rock analysis, with fluid dynamics being a significant area of focus. The market is driven by the computational capabilities of these techniques, which allow for the simulation of complex reservoir behavior and enhanced oil recovery processes. Skilled workers are essential in the implementation and interpretation of these advanced analysis tools.
    

    How is this Oil And Gas Digital Rock Analysis Industry segmented and which is the largest segment?

    The oil and gas digital rock analysis industry research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in 'USD million' for the period 2024-2028, as well as historical data from 2018-2022 for the following segments.

    Type
    
      Conventional
      Unconventional
    
    
    Geography
    
      North America
    
        Canada
        US
    
    
      APAC
    
        China
    
    
      Europe
    
        France
    
    
      Middle East and Africa
    
    
    
      South America
    

    By Type Insights

    The conventional segment is estimated to witness significant growth during the forecast period.
    

    The market primarily focuses on the examination of reservoir rocks using advanced imaging techniques and data analysis to optimize hydrocarbon production from both conventional and unconventional resources. Conventional reservoirs, including mature and depleting fields, continue to dominate the market due to the extensive use of digital rock analysis in enhancing well recovery and crude oil production. This approach combines the expertise of various disciplines, such as geology, geochemistry, petrophysics, petroleum engineering, and physics, to investigate the pore structures and fluid behavior in rock formations. Advanced microscopy techniques, CT scanning, and modeling methods are employed to acquire high-resolution images of rock pores and mineral grains, enabling a better understanding of the reservoir's physical and fluid flow properties.

    This data is then analyzed to develop reservoir characterization models, reservoir simulation models, and production optimization workflows. Research institutions and universities are also contributing significantly to the market by advancing imaging technologies and modeling methods for digital rock analysis. The shale revolution and the development of tight oil resources have led to a growing interest in digital rock analysis for unconventional reservoirs. The ability to characterize the complex pore structures and fluid flow properties of these formations is crucial for maximizing hydrocarbon production and improving well recovery. Digital rock analysis plays a vital role in understanding the unique properties of unconventional reservoirs, contributing to the growth of the market.

    Get a glance at the market report of the share of various segments Request Free Samp

  15. c

    USGS National and Global Oil and Gas Assessment Project - Northern Alaska...

    • s.cnmilf.com
    • data.usgs.gov
    • +1more
    Updated Jul 6, 2024
    + more versions
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    U.S. Geological Survey (2024). USGS National and Global Oil and Gas Assessment Project - Northern Alaska Province, Western North Slope Assessment Unit Boundaries and Assessment Input Data Forms [Dataset]. https://s.cnmilf.com/user74170196/https/catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-project-northern-alaska-province-western-n
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    Dataset updated
    Jul 6, 2024
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Area covered
    North Slope Borough, Arctic Alaska, Alaska
    Description

    This data release contains the boundaries of assessment units and input data for the assessment of undiscovered oil and gas resources of strata older than the Torok Formation of the Western North Slope in the Northern Alaska province. The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water boundary forms part of the Assessment Unit boundary. Methodology of assessments is documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  16. d

    USGS National and Global Oil and Gas Assessment Project - San Juan Basin...

    • catalog.data.gov
    • data.usgs.gov
    Updated Jul 6, 2024
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    U.S. Geological Survey (2024). USGS National and Global Oil and Gas Assessment Project - San Juan Basin Province, Fruitland Total Petroleum System Assessment Units and Input Data Forms [Dataset]. https://catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-project-san-juan-basin-province-fruitland-
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    Dataset updated
    Jul 6, 2024
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Description

    This data release contains the boundaries of assessment units and input data for the assessment of gas resources in the Fruitland Total Petroleum System of New Mexico and Colorado. The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water boundary forms part of the Assessment Unit boundary. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  17. d

    Data from: USGS National and Global Oil and Gas Assessment Project-Burgos,...

    • catalog.data.gov
    • data.usgs.gov
    • +2more
    Updated Jul 6, 2024
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    U.S. Geological Survey (2024). USGS National and Global Oil and Gas Assessment Project-Burgos, Tampico-Misantla, and Sabinas Provinces, Northeast Mexico, Assessment Unit Boundaries [Dataset]. https://catalog.data.gov/dataset/usgs-national-and-global-oil-and-gas-assessment-project-burgos-tampico-misantla-and-sabina
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    Dataset updated
    Jul 6, 2024
    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Area covered
    Mexico, Misantla, Sabinas
    Description

    The Assessment Unit is the fundamental unit used in the National and Global Petroleum Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies.

  18. g

    USGS National and Global Oil and Gas Assessment Project—Barents Sea Area:...

    • gimi9.com
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    USGS National and Global Oil and Gas Assessment Project—Barents Sea Area: Assessment Unit Boundaries, Assessment Input Data, and Fact Sheet Data Tables | gimi9.com [Dataset]. https://www.gimi9.com/dataset/data-gov_usgs-national-and-global-oil-and-gas-assessment-projectbarents-sea-area-assessment-unit-bo/
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    Area covered
    Barents Sea
    Description

    This data release contains the boundaries of assessment units, assessment input data and resulting fact sheet data tables for the assessment of undiscovered oil and gas resources in the Barents Sea Area. The Assessment Unit is the fundamental unit used in the National and Global Oil and Gas Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. Machine-readable tables are provided that contain the input and results for each assessment unit summarized in the USGS Fact Sheet. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

  19. U

    USGS National and Global Oil and Gas Assessment Project-Permian Basin...

    • data.usgs.gov
    • search.dataone.org
    • +2more
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    Christopher Schenk, USGS National and Global Oil and Gas Assessment Project-Permian Basin Province, Val Verde Basin, Canyon Sandstones Assessment Units [Dataset]. http://doi.org/10.5066/F7X928DJ
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    Dataset provided by
    United States Geological Surveyhttp://www.usgs.gov/
    Authors
    Christopher Schenk
    License

    U.S. Government Workshttps://www.usa.gov/government-works
    License information was derived automatically

    Time period covered
    2016
    Area covered
    Permian Basin
    Description

    The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water ...

  20. d

    USGS National and Global Oil and Gas Assessment Project - Wind River Basin,...

    • datasets.ai
    • data.usgs.gov
    • +1more
    55
    Updated Sep 20, 2024
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    Department of the Interior (2024). USGS National and Global Oil and Gas Assessment Project - Wind River Basin, Mowry Shale Formation Assessment Unit Boundaries and Assessment Input Data Forms [Dataset]. https://datasets.ai/datasets/usgs-national-and-global-oil-and-gas-assessment-project-wind-river-basin-mowry-shale-forma
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    55Available download formats
    Dataset updated
    Sep 20, 2024
    Dataset authored and provided by
    Department of the Interior
    Area covered
    Wind River Basin
    Description

    This data release contains the boundaries of assessment units and input data for the assessment of undiscovered oil and gas resources in the Mowry formation of the Wind River Basin Province in Wyoming. The Assessment Unit is the fundamental unit used in the National Assessment Project for the assessment of undiscovered oil and gas resources. The Assessment Unit is defined within the context of the higher-level Total Petroleum System. The Assessment Unit is shown herein as a geographic boundary interpreted, defined, and mapped by the geologist responsible for the province and incorporates a set of known or postulated oil and (or) gas accumulations sharing similar geologic, geographic, and temporal properties within the Total Petroleum System, such as source rock, timing, migration pathways, trapping mechanism, and hydrocarbon type. The Assessment Unit boundary is defined geologically as the limits of the geologic elements that define the Assessment Unit, such as limits of reservoir rock, geologic structures, source rock, and seal lithologies. The only exceptions to this are Assessment Units that border the Federal-State water boundary. In these cases, the Federal-State water boundary forms part of the Assessment Unit boundary. Methodology of assessments are documented in USGS Data Series 547 for continuous assessments (https://pubs.usgs.gov/ds/547) and USGS DDS69-D, Chapter 21 for conventional assessments (https://pubs.usgs.gov/dds/dds-069/dds-069-d/REPORTS/69_D_CH_21.pdf). See supplemental information for a detailed list of files included this data release.

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Oil Spill Response Ltd (2020). Global Oil and Gas Features [Dataset]. https://hub.arcgis.com/maps/ef2d703fcf43426ba4a6108001974570

Global Oil and Gas Features

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5 scholarly articles cite this dataset (View in Google Scholar)
Dataset updated
Nov 25, 2020
Dataset authored and provided by
Oil Spill Response Ltd
License

Attribution 4.0 (CC BY 4.0)https://creativecommons.org/licenses/by/4.0/
License information was derived automatically

Area covered
Description

Version: GOGI_V10_2This data was downloaded as a File Geodatabse from EDX at https://edx.netl.doe.gov/dataset/global-oil-gas-features-database. This data was developed using a combination of big data computing, custom search and data integration algorithms, and expert driven search to collect open oil and gas data resources worldwide. This approach identified over 380 data sets and integrated more than 4.8 million features into the GOGI database.Access the technical report describing how this database was produced using the following link: https://edx.netl.doe.gov/dataset/development-of-an-open-global-oil-and-gas-infrastructure-inventory-and-geodatabase” Acknowledgements: This work was funded under the Climate and Clean Air Coalition (CCAC) Oil and Gas Methane Science Studies. The studies are managed by United Nations Environment in collaboration with the Office of the Chief Scientist, Steven Hamburg of the Environmental Defense Fund. Funding was provided by the Environmental Defense Fund, OGCI Companies (Shell, BP, ENI, Petrobras, Repsol, Total, Equinor, CNPC, Saudi Aramco, Exxon, Oxy, Chevron, Pemex) and CCAC.Link to SourcePoint of Contact: Jennifer Bauer email:jennifer.bauer@netl.doe.govMichael D Sabbatino email:michael.sabbatino@netl.doe.gov

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