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Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Large Scale Grid

Metadata Updated: June 11, 2023

Mesh, properties, initial conditions, injection/withdrawal rates for modeling thermal, hydrological, and mechanical effects of fluid injection to and withdrawal from ground for Stockton University reservoir cooling system (aquifer storage cooling system), Galloway, New Jersey, on large scale grid, with some results. First simulation of J.T. Smith, E. Sonnenthal, P. Dobson, P. Nico, and M. Worthington, 2021. Thermal-hydrological-mechanical modeling of Stockton University reservoir cooling system, Proceedings of the 46th Workshop on Geothermal Reservoir Engineering, Stanford University, SGP-TR-218, from which Figures 1-5 pertain.

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Public: This dataset is intended for public access and use. License: Creative Commons Attribution

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Metadata Created Date April 26, 2022
Metadata Updated Date June 11, 2023

Metadata Source

Harvested from OpenEI data.json

Additional Metadata

Resource Type Dataset
Metadata Created Date April 26, 2022
Metadata Updated Date June 11, 2023
Publisher Lawrence Berkeley National Laboratory
Doi 10.15121/1843042
Data First Published 2021-02-26T07:00:00Z
Data Last Modified 2022-02-01T22:38:56Z
Public Access Level public
Bureau Code 019:20
Metadata Context
Metadata Catalog ID
Schema Version
Catalog Describedby
Data Quality True
Harvest Object Id 717a4dd4-bb57-4f08-bc17-e1a04a1af742
Harvest Source Id 7cbf9085-0290-4e9f-bec1-91653baeddfd
Harvest Source Title OpenEI data.json
Homepage URL
Old Spatial {"type":"Polygon","coordinates":-180,-90,180,-90,180,90,-180,90,-180,-90}
Program Code 019:006
Projectlead Arlene Anderson
Projectnumber FY21 AOP
Projecttitle Community Resilience through Low-Temperature Geothermal Reservoir Thermal Energy Storage
Source Datajson Identifier True
Source Hash 883d0c41107faf156ca077a9753b58c25f5329a3
Source Schema Version 1.1
Spatial {"type":"Polygon","coordinates":-180,-90,180,-90,180,90,-180,90,-180,-90}

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