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Materials properties, battery data, semiconductor, alloys, polymers, additive manufacturing
1,194 datasets
A 2026 publication by the North Sea Transition Authority provides geological maps for the Upper Paleocene Thanetian T35 to T38 intervals on the UK Continental Shelf. The dataset characterizes subsurface geology for aquifer-based storage potential, integrating seismic interpretation, well data, and regional geological understanding. It includes attributes for Gross Depositional Environment, Depositional Facies, Lithology, and Chronostratigraphic Age.
The North Sea Transition Authority's Regional Aquifer Presence Maps publication contains a series of geological maps for the UK Continental Shelf. Each map represents a discrete stratigraphic play interval, including the Lower Eocene Lower Ypresian T40, and includes attributes describing Gross Depositional Environment, Depositional Facies, Lithology, and Chronostratigraphic Age. These datasets were built from regional geological interpretations integrating seismic, well, and field data.
The UK Continental Shelf is covered by a series of geological maps from the NSTA Regional Aquifer Presence Maps publication. These maps characterize the subsurface geological framework for potential aquifer-based storage, including CO₂, hydrogen, and compressed air energy storage. The data is built upon regional interpretations by Lloyd’s Register and the OGA, integrating seismic, well, and field data.
The UK Continental Shelf is covered by a series of geological maps representing discrete stratigraphic intervals. These maps characterize the subsurface geological framework for potential aquifer-based storage, including CO₂ and hydrogen. They were produced by Lloyd’s Register and the OGA (now North Sea Transition Authority) by integrating seismic interpretation, well data, and regional geological understanding.
The NSTA Regional Aquifer Presence Maps publication contains a series of geological maps for the UK Continental Shelf. These maps characterize the subsurface geological framework relevant to potential aquifer-based storage, including CO₂, hydrogen, and compressed air energy storage. The datasets were produced by Lloyd’s Register and the OGA, integrating seismic interpretation, well data, field data, stratigraphic correlation, and regional geological understanding.
The NSTA Regional Aquifer Presence Maps publication contains geological maps for discrete stratigraphic intervals on the UK Continental Shelf. These maps characterize subsurface geology relevant to aquifer-based storage like CO₂, hydrogen, and compressed air. The data was produced by Lloyd’s Register and the OGA, integrating seismic interpretation, well data, and regional geological understanding.
A series of geological maps from the NSTA Regional Aquifer Presence Maps publication characterises the subsurface geological framework of the UK Continental Shelf. The datasets are built upon regional geological interpretations from the UKCS Regional Geology Maps project, which integrated seismic interpretation, well data, and stratigraphic correlation. These maps provide a baseline understanding of geological context for potential aquifer-based subsurface storage, including CO₂, hydrogen, and compressed air.
A series of geological maps from the NSTA Regional Aquifer Presence Maps publication represent discrete stratigraphic play intervals. The feature classes characterize the subsurface geological framework for potential aquifer-based storage, including CO₂, hydrogen, and compressed air. These datasets are built upon regional interpretations by Lloyd’s Register and the OGA, integrating seismic, well, and field data.
The NSTA Regional Aquifer Presence Maps publication contains geological maps for discrete stratigraphic intervals on the UK Continental Shelf. The feature classes characterize the subsurface geological framework for potential aquifer-based storage of CO₂, hydrogen, and compressed air. These datasets were built by Lloyd’s Register and the OGA, integrating seismic interpretation, well data, and regional geological understanding.
The NSTA Regional Aquifer Presence Maps publication contains a series of geological maps for the UK Continental Shelf. Each map represents a discrete stratigraphic play interval and includes attributes describing Gross Depositional Environment, Depositional Facies, Lithology, and Chronostratigraphic Age. The datasets were produced by Lloyd’s Register and the OGA, integrating seismic interpretation, well data, and regional geological understanding.
The North Sea Transition Authority provides geological maps for the Middle Jurassic Bathonian interval across the UK Continental Shelf. The dataset characterizes subsurface geological features relevant for aquifer-based storage of CO₂, hydrogen, and compressed air. It was last updated on 2026-06-18.
A series of geological maps representing the Middle Jurassic Callovian interval across the UK Continental Shelf, produced by the North Sea Transition Authority. The maps characterize subsurface geology relevant to aquifer-based storage, integrating seismic interpretation, well data, and regional geological understanding. The dataset was last updated on 2026-06-18.
The North Sea Transition Authority provides geological maps for the Upper Jurassic Oxfordian interval across the UK Continental Shelf. These maps characterize subsurface geology for potential aquifer-based storage of CO₂, hydrogen, and compressed air. They are based on interpretations from the UKCS Regional Geology Maps project, which integrated seismic, well, and field data.
A series of geological maps representing discrete stratigraphic play intervals within the UK Continental Shelf. The feature classes characterize the subsurface geological framework relevant to aquifer-based storage. These datasets were built by Lloyd’s Register and the OGA, integrating seismic interpretation, well data, and regional geological understanding.
A series of geological maps from the NSTA Regional Aquifer Presence Maps publication characterize the subsurface framework for aquifer-based storage. The feature classes include attributes for Gross Depositional Environment, Depositional Facies, Lithology, and Chronostratigraphic Age. These datasets were produced by Lloyd’s Register and the OGA, integrating seismic interpretation, well data, and regional geological understanding.
A series of geological maps representing discrete stratigraphic intervals within the UK Continental Shelf, produced by the North Sea Transition Authority. The maps characterize the subsurface geological framework for potential aquifer-based storage applications. They are built upon regional interpretations integrating seismic data, well logs, and stratigraphic correlation.
The NSTA Regional Aquifer Presence Maps publication contains a series of geological maps for the UK Continental Shelf, produced by the North Sea Transition Authority. These maps characterize the subsurface geological framework relevant to potential aquifer-based subsurface storage, including CO₂, hydrogen, and compressed air energy storage. The datasets are built upon regional geological interpretations integrating seismic data, well data, and stratigraphic correlation.
A series of geological maps representing discrete stratigraphic play intervals within the UK Continental Shelf. The feature classes characterize the subsurface geological framework relevant to potential aquifer-based subsurface storage, including CO₂, hydrogen, and compressed air. The datasets are built upon regional geological interpretations from the UKCS Regional Geology Maps project, integrating seismic, well, and field data.
A geological map feature class from the North Sea Transition Authority's Regional Aquifer Presence Maps publication. The dataset characterizes the subsurface geological framework for the Upper Paleocene Selandian T20 interval across the UK Continental Shelf. It is built upon regional interpretations integrating seismic data, well logs, and stratigraphic correlation.
The North Sea Transition Authority provides geological maps for the UK Continental Shelf. The dataset characterizes subsurface geological intervals relevant to aquifer-based storage, such as CO₂ or hydrogen storage. It includes interpreted attributes like Gross Depositional Environment, Depositional Facies, Lithology, and Chronostratigraphic Age.