Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling

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Mesh, properties, initial conditions, injection/withdrawal rates for modelling 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, for unscheduled two hour injection at 133 % designed capacity, on fine scale grid, with some results. Second 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 6-9, pertain.

File Overview.txt

An over view of files in this submission.
96

GENER.2well.stresstest.halfsrcs

TReactMech GENER file (a text file). Fluid source and sink terms in TOUGH2 GENER file format. Sources and sinks are separate entries. For each source after line with el... more
80

MESH.stoctonloc.3.1.noflowymax.zip

(Zipped) TReactMech MESH file. Grid information in TOUGH2 MESH file format. Elements are in x,z,y order; x varying fastest, z next, and y last; i.e., in successive vert... more
44

Plasticity.tec

TReactMech mechanical failure output file, at all times. (a text file.) At each time, a header, then X(m), Y(m), Z(m), ielem, N_shear, N_tensl, N_Surf, E_fail_xx, E_... more
106

SAVE.1.67e12s.zip

(Zipped) TReactMech INCON file (a text file) (TOUGH2 compatible). Initial pressure and temperature by element name. File alternates lines of element name (with porosity... more
41

T-H-M Modeling of Stockton Univ. Reservoir Cooling System

J.T. Smith, E. Sonnenthal, P. Dobson, P. Nico, and M. Worthington, 2021. Thermal-hydrological-mechanical modeling of Stockton University reservoir cooling system, Proce... more

TOUGH2 User's Guide Version 2

K. Pruess, C. Oldenburg, and G. Moridis, 2012. TOUGH2 User's Guide, Version 2, Lawrence Berkeley National Laboratory, LBNL-43134.

TReactMech_mech_3D_inp_format.txt

Program TReactMech mech_3D.inp input file keyword format descriptions.
113

displacement.03.tec.zip

(Zipped) TReactMech mechanics displacement output file (after two hours injection). (a tecplot file, text file.) element corner x,y,z (m), x displacement (m), y displac... more
42

flow.stockton.8layloc.inp

Program TReactMech flow.inp input file (a text file). Global and local flow parameters. Local parameters organized by (MESH file) rock type. Formats for individual item... more
75

flowdata003.tec.zip

(Zipped) TReactMech flow data output file (after two hours injection). (a tecplot file, text file.) Element center x,y,z, pressure, temperature, gas saturation, liquid ... more
43

initialstress_sand0.5029_clay0.7003_1.zip

(zipped) TReactMech initial stress file (a text file). Format described in file TReactMech_mech_3D_inp_format.txt. Units are Pa.
43

mech_3D.stockton.7lay.notensclay.updated.inp

Program TReactMech mech_3D.inp input file, (a text file). Global and local mechanics parameters. Local parameters organized by (MESH file) rock type. Structure describe... more
64

stress_strain.03.tec.zip

(Zipped) TReactMech mechanics stress and strain output file (after two hours injection). (a tecplot file, text file.) "X(m)", "Y(m)", "Z(m)", "Sigma_xx", "Sigm... more
38

Citation Formats

Lawrence Berkeley National Laboratory. (2021). Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling [data set]. Retrieved from https://dx.doi.org/10.15121/1843041.
Export Citation to RIS
Smith, J Torquil, Sonnenthal, Eric, Dobson, Patrick, Nico, Peter, and Worthington, Mark. Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling. United States: N.p., 22 Feb, 2021. Web. doi: 10.15121/1843041.
Smith, J Torquil, Sonnenthal, Eric, Dobson, Patrick, Nico, Peter, & Worthington, Mark. Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling. United States. https://dx.doi.org/10.15121/1843041
Smith, J Torquil, Sonnenthal, Eric, Dobson, Patrick, Nico, Peter, and Worthington, Mark. 2021. "Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling". United States. https://dx.doi.org/10.15121/1843041. https://gdr.openei.org/submissions/1363.
@div{oedi_1363, title = {Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling}, author = {Smith, J Torquil, Sonnenthal, Eric, Dobson, Patrick, Nico, Peter, and Worthington, Mark.}, abstractNote = {Mesh, properties, initial conditions, injection/withdrawal rates for modelling 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, for unscheduled two hour injection at 133 % designed capacity, on fine scale grid, with some results. Second 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 6-9, pertain.}, doi = {10.15121/1843041}, url = {https://gdr.openei.org/submissions/1363}, journal = {}, number = , volume = , place = {United States}, year = {2021}, month = {02}}
https://dx.doi.org/10.15121/1843041

Details

Data from Feb 22, 2021

Last updated Feb 1, 2022

Submitted Feb 1, 2022

Organization

Lawrence Berkeley National Laboratory

Contact

J Torquil Smith

jtsmith@lbl.gov

501.549.3817

Authors

J Torquil Smith

Lawrence Berkeley National Laboratory

Eric Sonnenthal

Lawrence Berkeley National Laboratory

Patrick Dobson

Lawrence Berkeley National Laboratory

Peter Nico

Lawrence Berkeley National Laboratory

Mark Worthington

Underground Energy Systems LLC

DOE Project Details

Project Name Community Resilience through Low-Temperature Geothermal Reservoir Thermal Energy Storage

Project Lead Arlene Anderson

Project Number FY21 AOP 2.7.1.4

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