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Paleo-water depth grids for the 3D petroleum systems model of the Williston Basin, USA

Paleo-water depth is an important component of modeling surface temperatures through time. Paleo-water depth values represent the elevation of the sediment-water interface relative to global mean sea level at a particular point in geologic time. In most of the model time steps, paleo-water depth values were treated uniformly (single value) across the modeled area of interest, as a simplifying assumption. Most of the model layers were deposited in marine conditions, where the sediment-water interface was below mean sea level (positive paleo-water depths); however, the ground surface of the Williston Basin is now several thousand feet above sea-level, and the Cenozoic model layers were likely deposited in continental conditions, where the sediment-water interface represents paleo-topography (negative paleo-water depths). The model uses the present-day topography to interpolate paleo-water depth between the present-day topography and the uniform paleo-water depth at the 70 Ma time step in the model. The interpolation was generated at three time steps: 50, 43, and 20 Ma time steps, where each of these interpolations is describe with an ASCII grid of map-varying values of paleo-water depth. This is a child item of a larger data release titled "Data release for the 3D petroleum systems model of the Williston Basin, USA".

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Author(s) Sarah E Gelman orcid, Benjamin G Johnson orcid
Publication Date 2023-04-26
Beginning Date of Data 2022
Ending Date of Data 2022
Data Contact
DOI https://doi.org/10.5066/P9N7O1OT
Citation Gelman, S.E., and Johnson, B.G., 2023, Paleo-water depth grids for the 3D petroleum systems model of the Williston Basin, USA: U.S. Geological Survey data release, https://doi.org/10.5066/P9N7O1OT.
Metadata Contact
Metadata Date 2023-04-26
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Citations of these data

Loading https://doi.org/10.1016/j.marpetgeo.2023.106390

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License http://www.usa.gov/publicdomain/label/1.0/
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Harvest Source: ScienceBase
Harvest Date: 2024-07-30T04:03:30.725Z