{"@type": "dcat:Dataset", "DOI": "10.15121/1843041", "accessLevel": "public", "bureauCode": ["019:20"], "contactPoint": {"@type": "vcard:Contact", "fn": "J Torquil Smith", "hasEmail": "mailto:jtsmith@lbl.gov"}, "dataQuality": true, "description": "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.", "distribution": [{"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/GENER.2well.stresstest.halfsrcs", "description": "TReactMech GENER file (a text file).\nFluid source and sink terms in TOUGH2 GENER file format.\nSources and sinks are separate entries.\nFor each source after line with element number;\ntable of times (s), table of injection rates (kg/s),\ntable of specific enthalpies (J/kg).\nFor each sink after line with element number;\ntable of times (s), table of (negative) injection rates (kg/s).\nSimulation injection/widthdrawl schedule time 0\nat beginning of a November.\nFormat described in TOUGH2 User's Guide, appendix E.\nInjection rates are 33.648 kg/s/well in two wells in\nthe modelled domain (before reflections) and 33.648 kg/s\nin the remaining implied cold well (two positive plus\none negative reflection, see paper Smith, et al., 2021),\nthat is, 100.94 kg/s total.", "format": "halfsrcs", "mediaType": "application/octet-stream", "title": "GENER.2well.stresstest.halfsrcs"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/MESH.stoctonloc.3.1.noflowymax.zip", "description": "(Zipped) TReactMech MESH file.\nGrid information in TOUGH2 MESH file format.\nElements are in x,z,y order; x varying fastest,\nz next, and y last; i.e., in successive vertical\nslices normal to the y direction.\nLines after \"ELEME\" have; element name (characters 1-5),\nrock type (char. 16-20), volume (char 21-30),\ncenter x, y, z locations, (char 51-60,61-70,71-80).\nLines after \"CONNE\" have connection information.\nLines after \"+++\" have connection element number pairs (reduplicative).\nFormats described in TOUGH2 User's Guide, appendix E.\nCoordinates are approximately x = distance NE from cold well 1, y=\ndistance NW from cold well 1, z = elevation (topography neglected).\nVolume stated for constant P T boundary condition cells is\n10^50 times actual volume (e.g., see TOUGH2 Users Guide).\n", "format": "zip", "mediaType": "application/zip", "title": "MESH.stoctonloc.3.1.noflowymax.zip"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/Plasticity.tec", "description": "TReactMech mechanical failure output file, at all times.\n(a text file.)\nAt each time, a header, then\nX(m),  Y(m),  Z(m), ielem, N_shear, N_tensl,  N_Surf,\nE_fail_xx, E_fail_yy, E_fail_zz,\n2*E_fail_yz, 2*E_fail_xz, 2*E_fail_xy, E_fail_vol,\nat each mechanically failed (fractured) element.\nOutput points are at element centers.\nVariables are;\ncenter x,y,z position (m), element number, maximum number of independent\nplanes of shear failure, maximum number of independent planes of\ntensile failure, maximum number of independent failure planes,\nfailure strain, volumetric failure strain.\nFailure strains are averaged over the 8 Gauss points of an element.\nMaximum numbers are over the 8 Gauss points.\nOnly elements that have failed up to the reported time step are reported.\n", "format": "tec", "mediaType": "application/octet-stream", "title": "Plasticity.tec"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/SAVE.1.67e12s.zip", "description": "(Zipped) TReactMech INCON file (a text file) (TOUGH2 compatible).\nInitial pressure and temperature by element name.\nFile alternates lines of element name (with porosity and perm_xx, perm_yy, perm_zz),\nand pressure (Pa) and temperature (deg. C).", "format": "zip", "mediaType": "application/zip", "title": "SAVE.1.67e12s.zip"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/TReactMech_mech_3D_inp_format.txt", "description": "Program TReactMech mech_3D.inp input file keyword format descriptions.", "format": "txt", "mediaType": "text/plain", "title": "TReactMech_mech_3D_inp_format.txt"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/displacement.03.tec.zip", "description": "(Zipped) TReactMech mechanics displacement output file\n(after two hours injection).\n(a tecplot file, text file.)\nelement corner x,y,z (m),\nx displacement (m), y displacement (m), z displacement (m).\nOutput points are at element corners.\nPoints are in x,y,z order, i.e., by horizontal planes,\nx varying fastest.", "format": "zip", "mediaType": "application/zip", "title": "displacement.03.tec.zip"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/file_over_view.txt", "description": "An over view of files in this submission.", "format": "txt", "mediaType": "text/plain", "title": "File Overview.txt"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/flow.stockton.8layloc.inp", "description": "Program TReactMech flow.inp input file (a text file).\nGlobal and local flow parameters.\nLocal parameters organized by (MESH file) rock type.\nFormats for individual items described in\nTOUGH2 User's Guide, Version 2, appendix E.\nAll quantities in S.I. (MKS) units.\n", "format": "inp", "mediaType": "application/octet-stream", "title": "flow.stockton.8layloc.inp"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/flowdata003.tec.zip", "description": "(Zipped) TReactMech flow data output file\n(after two hours injection).\n(a tecplot file, text file.)\nElement center x,y,z, pressure, temperature, gas saturation,\nliquid saturation, other, other, assumed capillary pressure,\ngas density, liquid density, porosity, xx permeability,\nyy permeability, zz permeability, vertical permeability/\nstarting vertical permeability, assumed gas relative permability,\nassumed liquid relative permeability, specific heat capacity,\nthermal conductivity, bulk density, diffusivity.\nUnits are m, m, m, Pa, deg. C, none, none, none, none, Pa,\nkg/m^3, kg/m^3, none, m^2, m^2, m^2, none, none, none,\nJ/m/deg. C, kg/m^3, m^2 /s.\nPoints are in x,y,z order, i.e., by horizontal planes,\nx varying fastest.", "format": "zip", "mediaType": "application/zip", "title": "flowdata003.tec.zip"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/initialstress_sand0.5029_clay0.7003_1.zip", "description": "(zipped) TReactMech initial stress file (a text file).\nFormat described in file TReactMech_mech_3D_inp_format.txt.\nUnits are Pa.", "format": "zip", "mediaType": "application/zip", "title": "initialstress_sand0.5029_clay0.7003_1.zip"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/mech_3D.stockton.7lay.notensclay.updated.inp", "description": "Program TReactMech mech_3D.inp input file, (a text file).\nGlobal and local mechanics parameters.\nLocal parameters organized by (MESH file) rock type.\nStructure described in file TReactMech_mech_3D_inp_format.txt\nAll quantities in S.I. (MKS) units.", "format": "inp", "mediaType": "application/octet-stream", "title": "mech_3D.stockton.7lay.notensclay.updated.inp"}, {"@type": "dcat:Distribution", "accessURL": "https://gdr.openei.org/files/1363/stress_strain.03.tec.zip", "description": "(Zipped) TReactMech mechanics stress and strain output file\n(after two hours injection).\n(a tecplot file, text file.)\n\"X(m)\",    \"Y(m)\",     \"Z(m)\",\n\"Sigma_xx\",   \"Sigma_yy\",   \"Sigma_zz\",\n\"Sigma_yz\",   \"Sigma_xz\",   \"Sigma_xy\",\n\"Strain_xx\",  \"Strain_yy\",  \"Strain_zz\",\n\"Strain_yz\",  \"Strain_xz\",  \"Strain_xy\",\n\"E_fail_xx\",  \"E_fail_yy\",  \"E_fail_zz\",\n\"2*E_fail_yz\",\"2*E_fail_xz\",\"2*E_fail_xy\",\"E_fail_vol\",\n\"Poro_elast\",  \"Press\".\n(center x,y,z position (m), total stress (Pa),\ntotal strain (non-dimen.), failure strain (non-dimen.),\nporoelastic porosity (non-dimen.), fluid pressure (Pa).)\nOutput points are at element centers,\nstresses and strains are averaged over Gauss points.\nPoints are in x,y,z order, i.e., by horizontal planes.", "format": "zip", "mediaType": "application/zip", "title": "stress_strain.03.tec.zip"}, {"@type": "dcat:Distribution", "accessURL": "https://pangea.stanford.edu/ERE/db/GeoConf/papers/SGW/2021/Smith2.pdf?t=1612906699", "description": "J.T. Smith, E. Sonnenthal, P. Dobson, P. Nico,\nand M. Worthington, 2021.\nThermal-hydrological-mechanical modeling of Stockton University reservoir cooling system,\nProceedings of the 46th Workshop on Geothermal Reservoir Engineering,\nStanford University, SGP-TR-218.", "format": "pdf", "mediaType": "application/pdf", "title": "T-H-M Modeling of Stockton Univ. Reservoir Cooling System"}, {"@type": "dcat:Distribution", "accessURL": "https://tough.lbl.gov/assets/docs/TOUGH2_V2_Users_Guide.pdf", "description": "K. Pruess, C. Oldenburg, and G. Moridis, 2012.\nTOUGH2 User's Guide, Version 2,\nLawrence Berkeley National Laboratory, LBNL-43134.", "format": "pdf", "mediaType": "application/pdf", "title": "TOUGH2 User's Guide Version 2"}], "identifier": "https://data.openei.org/submissions/7476", "issued": "2021-02-22T07:00:00Z", "keyword": ["CFD", "FEA", "New Jersey", "Stockton University", "aquifer storage cooling system", "cooling", "flow simulation", "fluid", "geothermal", "geothermal cooling", "ground source", "injection", "model", "modeling", "reservoir cooling system", "simulation", "stress", "stress modeling", "stress test", "thermal-hydrological-mechanical", "withdrawal"], "landingPage": "https://gdr.openei.org/submissions/1363", "license": "https://creativecommons.org/licenses/by/4.0/", "modified": "2022-02-01T22:38:53Z", "programCode": ["019:006"], "projectLead": "Arlene Anderson", "projectNumber": "FY21 AOP 2.7.1.4", "projectTitle": "Community Resilience through Low-Temperature Geothermal Reservoir Thermal Energy Storage", "publisher": {"@type": "org:Organization", "name": "Lawrence Berkeley National Laboratory"}, "spatial": "{\"type\":\"Polygon\",\"coordinates\":[[[-180,-90],[180,-90],[180,90],[-180,90],[-180,-90]]]}", "title": "Thermal-Hydrological-Mechanical Modelling of Stockton University Reservoir Cooling System, Fine Scale Stress Test Modelling"}