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Geologic Reservoir Content Model from Low-Temperature Geothermal Play Fairway Analysis for the Appalachian BasinSource

This dataset conforms to the Tier 3 Content Model for Geologic Reservoirs Version 1.0. It contains the known hydrocarbon reservoirs within the study area of the Geothermal Play Fairway Analysis for the Appalachian Basin (GPFA-AB) as part of Phase 1, Natural Reservoirs Quality Analysis. The final values for Reservoir Productivity Index (RPI) and uncertainty (in terms of coefficient of variation, CV) are included. RPI is in units of liters per MegaPascal-second (L/MPa-s), quantified using permeability, thickness of formation, and depth. A higher RPI is more optimal. Coefficient of Variation (CV) is the ratio of the standard deviation to the mean RPI for each reservoir. A lower CV is more optimal. Details on these metrics can be found in the Reservoirs_Methodology_Memo.pdf uploaded to the Geothermal Data Repository Node of the NGDS in October of 2015.

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AASG Geothermal DataAppalachian BasinGPFA-ABGeologic ReservoirGeologic ReservoirsGeothermal Play Fairway AnalysisNGDS Content ModelNew YorkPFAPennslyvaniaPennsylvaniaRPIReservoir Productivity IndexUSAUSGIN Content ModelWest Virginiacharacterizationcontent modeldeep direct usedistrict heatingeasteasternfavorabilitygeologygeothermallow temperaturelow-temperaturenaturalpermeabilityporosityproductivityreservoirresourceuncertainty
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XLS
National Renewable Energy Laboratory (NREL)about 1 year ago
Utilization Analysis in Low-Temperature Geothermal Play Fairway Analysis for the Appalachian Basin (GPFA-AB)Source

This submission of Utilization Analysis data to the Geothermal Data Repository (GDR) node of the National Geothermal Data System (NGDS) is in support of Phase 1 Low Temperature Geothermal Play Fairway Analysis for the Appalachian Basin. The submission includes data pertinent to the methods and results of an analysis of the Surface Levelized Cost of Heat (SLCOH) for US Census Bureau Places within the study area. This was calculated using a modification of a program called GEOPHIRES, available at http://koenraadbeckers.net/geophires/index.php. The MATLAB modules used in conjunction with GEOPHIRES, the MATLAB data input file, the GEOPHIRES output data file, and an explanation of the software components have been provided. Results of the SLCOH analysis appear on 4 .png image files as mapped risk of heat utilization. For each of the 4 image (.png) files, there is an accompanying georeferenced TIF (.tif) file by the same name. In addition to calculating SLCOH, this Task 4 also identified many sites that may be prospects for use of a geothermal district heating system, based on their size and industry, rather than on the SLCOH. An industry sorted listing of the sites (.xlsx) and a map of these sites plotted as a layer onto different iterations of maps combining the three geological risk factors (Thermal Quality, Natural Reservoir Quality, and Risk of Seismicity) has been provided. In addition to the 6 image (.png) files of the maps in this series, a shape (.shp) file and 7 associated files are included as well. Finally, supporting files (.pdf) describing the utilization analysis methodology and summarizing the anticipated permitting for a deep district heating system are supplied. UPDATE: Newer version of the Utilization Analysis has been added here: https://gdr.openei.org/submissions/878

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Appalachian basinGPFA-ABLCOHNew YorkPennsylvaniaSLCOHWest Virginiadeep direct usedemanddistrict heatingeasteconomicsgeophiresgeospatial datageothermalgeothermal play fairway analysisheat utilizationlow temperaturenortheastpfaplay fairway analysisrisk factorssurface levelized cost of heat
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National Renewable Energy Laboratory (NREL)about 1 year ago