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Energy","sub_category":"Geothermal Energy","monthly_downloads":0,"total_dependent_repos":0,"total_dependent_packages":0,"readme":"========\nOverview\n========\n\n|GEOPHIRES Logo|\n\n.. |GEOPHIRES Logo| image:: geophires-logo.png\n    :alt: GEOPHIRES Logo\n\nGEOPHIRES is a free and open-source geothermal techno-economic simulator.\nGEOPHIRES combines reservoir, wellbore, surface plant, and economic models to estimate the capital and operation and maintenance costs,\ninstantaneous and lifetime energy production, and overall levelized cost of energy of a geothermal plant.\nVarious reservoir conditions (EGS, doublets, etc.) and end-use options (electricity, direct-use heat, cogeneration) can be modeled.\nUsers are encouraged to build upon the GEOPHIRES framework to implement their own correlations and models.\nSee the `Documentation`_ section below for more information.\n\nThis repository is the canonical source for the modern GEOPHIRES simulator, which succeeds the legacy `GEOPHIRES v2.0 \u003chttps://github.com/NREL/GEOPHIRES-v2\u003e`__.\nThe name GEOPHIRES-X refers to the initial modernized (v3) framework.\nSee the `CHANGELOG \u003cCHANGELOG.rst\u003e`__ for a detailed history of changes and release notes.\n\nFree software: `MIT license \u003cLICENSE\u003e`__\n\n.. start-badges\n\n.. list-table::\n    :stub-columns: 1\n\n    * - tests\n      - | |github-actions|\n        | |coverage|\n    * - package\n      - | |commits-since|\n        | |code-style|\n        | |license|\n\n.. TODO add the following to package badge list once PyPy distribution enabled: |version| |wheel| |supported-versions| |supported-implementations|\n..    * - docs\n..      - | |docs|\n\n\n.. |github-actions| image:: https://github.com/NREL/GEOPHIRES-X/actions/workflows/github-actions.yml/badge.svg\n    :alt: GitHub Actions Build Status\n    :target: https://github.com/NREL/GEOPHIRES-X/actions\n\n.. |version| image:: https://img.shields.io/pypi/v/geophires-x.svg\n    :alt: PyPI Package latest release\n    :target: https://pypi.org/project/geophires-x\n\n.. |wheel| image:: https://img.shields.io/pypi/wheel/geophires-x.svg\n    :alt: PyPI Wheel\n    :target: https://pypi.org/project/geophires-x\n\n.. |supported-versions| image:: https://img.shields.io/pypi/pyversions/geophires-x.svg\n    :alt: Supported versions\n    :target: https://pypi.org/project/geophires-x\n\n.. |supported-implementations| image:: https://img.shields.io/pypi/implementation/geophires-x.svg\n    :alt: Supported implementations\n    :target: https://pypi.org/project/geophires-x\n\n.. |commits-since| image:: https://img.shields.io/github/commits-since/softwareengineerprogrammer/GEOPHIRES-X/v3.11.25.svg\n    :alt: Commits since latest release\n    :target: https://github.com/softwareengineerprogrammer/GEOPHIRES-X/compare/v3.11.25...main\n\n.. |docs| image:: https://readthedocs.org/projects/GEOPHIRES-X/badge/?style=flat\n    :target: https://softwareengineerprogrammer.github.io/GEOPHIRES\n    :alt: Documentation Status\n\n.. |coverage| image:: https://codecov.io/gh/softwareengineerprogrammer/GEOPHIRES/graph/badge.svg?token=2SZNNVT28Q\n    :target: https://codecov.io/gh/softwareengineerprogrammer/GEOPHIRES\n    :alt: Coverage Status\n\n.. |code-style| image:: https://img.shields.io/badge/code%20style-black-000000.svg\n    :target: https://github.com/NREL/GEOPHIRES-X/blob/main/.pre-commit-config.yaml\n    :alt: Code Style: black\n\n.. |license| image:: https://img.shields.io/badge/license-MIT-green.svg\n    :target: https://github.com/NREL/GEOPHIRES-X/blob/main/LICENSE\n    :alt: MIT license\n\n.. end-badges\n\nGetting Started\n===============\n\nA web interface is available at `gtp.scientificwebservices.com/geophires \u003chttps://gtp.scientificwebservices.com/geophires\u003e`__.\n\nTo run GEOPHIRES locally or to modify the source code, see the `Getting Started Guide \u003cINSTALL.rst\u003e`__.\n\n\nDocumentation\n=============\n\nGEOPHIRES combines reservoir, wellbore, surface plant, and economic and cost models\nand correlations to estimate the capital and operation and maintenance costs,\ninstantaneous and lifetime energy production, and overall levelized cost of energy of a\ngeothermal plant.\n\nThe high-level software architecture is illustrated in the diagram below. Green, orange and blue rectangles\nrefer to internal GEOPHIRES components, external user-interface components, and\nexternal reservoir simulators (TOUGH2), respectively. Rectangles with solid outline are\nalways executed during a simulation run; rectangles with dashed outline refer to optional\nor user-provided components.\n\n|GEOPHIRES Architecture Diagram|\n\n.. |GEOPHIRES Architecture Diagram| image:: References/geophires-architecture-diagram_2025-10-17.png\n    :alt: GEOPHIRES Architecture Diagram\n\nGEOPHIRES has a variety of different reservoir models including\n(1) Multiple parallel fractures model (Gringarten);\n(2) 1-Dimensional linear heat sweep model;\n(3) M/A thermal drawdown parameter model;\n(4) Percentage temperature drawdown model;\n(5) User-provided reservoir temperature production data;\n(6) Coupling to TOUGH2 external reservoir simulator;\n(7) SUTRA: Reservoir Thermal Energy Storage (RTES; also known as Underground Thermal Energy Storage - UTES);\n(8) Slender Body Theory (SBT);\n(9) Cylindrical.\n\nGEOPHIRES can simulate three different end-uses of the geothermal heat: (1)\ndirect-use heat (e.g. for industrial processing heating or residential space heating);\n(2) electricity (with subcritical ORC, supercritical ORC, single-flash, or double-flash plant);\n(3) co-generation of heat and electricity. The co-generation option considers bottoming\ncycle, topping cycle, and parallel cycle.\n\nGEOPHIRES has 5 economic models to calculate the levelized cost of heat or\nelectricity: (1) fixed charge rate (FCR) model;\n(2) standard discounting levelized cost model;\n(3) BICYCLE model;\n(4) CLGS;\n(5) `SAM Single-owner PPA \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/SAM-Economic-Models.html\u003e`__.\n\nThe capital and O\u0026M costs for the different geothermal system components (exploration,\nwell drilling, surface plant, etc.) are either provided by the user or calculated with built-in\ncorrelations.\n\nFor more information on the theoretical basis for GEOPHIRES see the\n`Theoretical Basis for GEOPHIRES \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/Theoretical-Basis-for-GEOPHIRES.html\u003e`__\nand `GEOPHIRES Reference Materials \u003cReferences/README.md#geophires\u003e`__.\n\nParameters\n----------\n\nAvailable parameters are documented in the `Parameters Reference \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/parameters.html\u003e`__.\n\nNote that many parameters are interrelated and/or conditionally dependent on one another;\nreviewing the GEOPHIRES example(s) relevant to your use case in the following section\nis strongly recommended to gain a working understanding of how to construct valid sets of input parameters.\n\n\nExamples\n--------\n\nGEOPHIRES includes a variety of example input files demonstrating its features for different types of geothermal systems\nand case studies of real-world geothermal projects.\nStarting with an existing GEOPHIRES example that is similar to your intended use/application can be an easier approach to using GEOPHIRES than constructing your own inputs from scratch.\n\nExample input ``.txt`` files and corresponding case report ``.out`` files are available in the `tests/examples directory \u003ctests/examples\u003e`__ of the repository.\nExample-specific web interface deeplinks are listed in the Link column.\n\n\n.. list-table::\n   :widths: 50 40 5 5\n   :header-rows: 1\n\n   * - Example\n     - Input file\n     - Case report file\n     - Link\n   * - Case Study: 500 MW EGS Modeled on Fervo Cape Station (2026 Update) (`documentation \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/Fervo_Project_Cape-5.html\u003e`__)\n     - `Fervo_Project_Cape-5.txt \u003ctests/examples/Fervo_Project_Cape-5.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Project_Cape-5.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Project_Cape-5\u003e`__\n   * - 100 MW EGS Modeled on Fervo Cape Station\n     - `Fervo_Project_Cape-6.txt \u003ctests/examples/Fervo_Project_Cape-6.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Project_Cape-6.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Project_Cape-6\u003e`__\n   * - Example 1: EGS Electricity\n     - `example1.txt \u003ctests/examples/example1.txt\u003e`__\n     - `.out \u003ctests/examples/example1.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example1\u003e`__\n   * - Example 1 with Add-Ons\n     - `example1_addons.txt \u003ctests/examples/example1_addons.txt\u003e`__\n     - `.out \u003ctests/examples/example1_addons.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example1_addons\u003e`__\n   * - Example 2: EGS Direct-Use Heat\n     - `example2.txt \u003ctests/examples/example2.txt\u003e`__\n     - `.out \u003ctests/examples/example2.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example2\u003e`__\n   * - Example 3: EGS Co-generation\n     - `example3.txt \u003ctests/examples/example3.txt\u003e`__\n     - `.out \u003ctests/examples/example3.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example3\u003e`__\n   * - Example 4: Hydrothermal Electricity\n     - `example4.txt \u003ctests/examples/example4.txt\u003e`__\n     - `.out \u003ctests/examples/example4.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example4\u003e`__\n   * - Example 5: User-Provided Reservoir Data (File Parameter)\n     - `example5.txt \u003ctests/examples/example5.txt\u003e`__\n     - `.out \u003ctests/examples/example5.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example5\u003e`__\n   * - Example 5b: User-Provided Reservoir Data (Profile Parameter)\n     - `example5b.txt \u003ctests/examples/example5b.txt\u003e`__\n     - `.out \u003ctests/examples/example5b.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example5b\u003e`__\n   * - Example 6: TOUGH2 (Multiple Gradients)\n     - `example6.txt \u003ctests/examples/example6.txt\u003e`__\n     - `.out \u003ctests/examples/example6.out\u003e`__\n     - \\*\n   * - Example 7: TOUGH2 (Single Gradient)\n     - `example7.txt \u003ctests/examples/example7.txt\u003e`__\n     - `.out \u003ctests/examples/example7.out\u003e`__\n     - \\*\n   * - Example 8: Cornell Direct-Use Heat\n     - `example8.txt \u003ctests/examples/example8.txt\u003e`__\n     - `.out \u003ctests/examples/example8.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example8\u003e`__\n   * - Example 9: Cornell Electricity\n     - `example9.txt \u003ctests/examples/example9.txt\u003e`__\n     - `.out \u003ctests/examples/example9.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example9\u003e`__\n   * - Example 10: Heat Pump\n     - `example10_HP.txt \u003ctests/examples/example10_HP.txt\u003e`__\n     - `.out \u003ctests/examples/example10_HP.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example10_HP\u003e`__\n   * - Example 11: Absorption Chiller\n     - `example11_AC.txt \u003ctests/examples/example11_AC.txt\u003e`__\n     - `.out \u003ctests/examples/example11_AC.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example11_AC\u003e`__\n   * - Example 12: District Heating\n     - `example12_DH.txt \u003ctests/examples/example12_DH.txt\u003e`__\n     - `.out \u003ctests/examples/example12_DH.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example12_DH\u003e`__\n   * - Example 13: Redrilling due to Drawdown\n     - `example13.txt \u003ctests/examples/example13.txt\u003e`__\n     - `.out \u003ctests/examples/example13.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example13\u003e`__\n   * - CLGS: Coaxial sCO2: Heat\n     - `[...]Coaxial_sCO2_heat.txt \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Coaxial_sCO2_heat.txt\u003e`__\n     - `.out \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Coaxial_sCO2_heat.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Beckers_et_al_2023_Tabulated_Database_Coaxial_sCO2_heat\u003e`__\n   * - CLGS: Coaxial Water: Heat\n     - `[...]Coaxial_water_heat.txt \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Coaxial_water_heat.txt\u003e`__\n     - `.out \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Coaxial_water_heat.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Beckers_et_al_2023_Tabulated_Database_Coaxial_water_heat\u003e`__\n   * - CLGS: Uloop sCO2: Electricity\n     - `[...]Uloop_sCO2_elec.txt \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_sCO2_elec.txt\u003e`__\n     - `.out \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_sCO2_elec.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Beckers_et_al_2023_Tabulated_Database_Uloop_sCO2_elec\u003e`__\n   * - CLGS: Uloop sCO2: Heat\n     - `[...]Uloop_sCO2_heat.txt \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_sCO2_heat.txt\u003e`__\n     - `.out \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_sCO2_heat.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Beckers_et_al_2023_Tabulated_Database_Uloop_sCO2_heat\u003e`__\n   * - CLGS: Uloop Water: Electricity\n     - `[...]Uloop_water_elec.txt \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_water_elec.txt\u003e`__\n     - `.out \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_water_elec.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Beckers_et_al_2023_Tabulated_Database_Uloop_water_elec\u003e`__\n   * - CLGS: Uloop Water: Heat\n     - `[...]Uloop_water_heat.txt \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_water_heat.txt\u003e`__\n     - `.out \u003ctests/examples/Beckers_et_al_2023_Tabulated_Database_Uloop_water_heat.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Beckers_et_al_2023_Tabulated_Database_Uloop_water_heat\u003e`__\n   * - CLGS: SBT High Temperature\n     - `example_SBT_Hi_T.txt \u003ctests/examples/example_SBT_Hi_T.txt\u003e`__\n     - `.out \u003ctests/examples/example_SBT_Hi_T.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SBT_Hi_T\u003e`__\n   * - CLGS: SBT Low Temperature\n     - `example_SBT_Lo_T.txt \u003ctests/examples/example_SBT_Lo_T.txt\u003e`__\n     - `.out \u003ctests/examples/example_SBT_Lo_T.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SBT_Lo_T\u003e`__\n   * - CLGS: SBT ULoop\n     - `example_SBT_ULoop.txt \u003ctests/examples/example_SBT_ULoop.txt\u003e`__\n     - `.out \u003ctests/examples/example_SBT_ULoop.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SBT_ULoop\u003e`__\n   * - SUTRA Example 1\n     - `SUTRAExample1.txt \u003ctests/examples/SUTRAExample1.txt\u003e`__\n     - `.out \u003ctests/examples/SUTRAExample1.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=SUTRAExample1\u003e`__\n   * - Multiple Gradients\n     - `example_multiple_gradients.txt \u003ctests/examples/example_multiple_gradients.txt\u003e`__\n     - `.out \u003ctests/examples/example_multiple_gradients.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_multiple_gradients\u003e`__\n   * - Investment Tax Credit\n     - `example_ITC.txt \u003ctests/examples/example_ITC.txt\u003e`__\n     - `.out \u003ctests/examples/example_ITC.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_ITC\u003e`__\n   * - Production Tax Credit\n     - `example_PTC.txt \u003ctests/examples/example_PTC.txt\u003e`__\n     - `.out \u003ctests/examples/example_PTC.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_PTC\u003e`__\n   * - Fervo Project Red (2023)\n     - `Fervo_Norbeck_Latimer_2023.txt \u003ctests/examples/Fervo_Norbeck_Latimer_2023.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Norbeck_Latimer_2023.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Norbeck_Latimer_2023\u003e`__\n   * - Fervo Cape Station 1: 2023 Results\n     - `Fervo_Project_Cape.txt \u003ctests/examples/Fervo_Project_Cape.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Project_Cape.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Project_Cape\u003e`__\n   * - Fervo Cape Station 2: 2024 Results\n     - `Fervo_Project_Cape-2.txt \u003ctests/examples/Fervo_Project_Cape-2.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Project_Cape-2.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Project_Cape-2\u003e`__\n   * - Fervo Cape Station 3: 400 MWe Production\n     - `Fervo_Project_Cape-3.txt \u003ctests/examples/Fervo_Project_Cape-3.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Project_Cape-3.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Project_Cape-3\u003e`__\n   * - Fervo Cape Station 4: [Deprecated] Case Study: 500 MWe EGS modeled on Fervo Cape Station (2025) (`documentation \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/Fervo_Project_Cape-4.html\u003e`__)\n     - `Fervo_Project_Cape-4.txt \u003ctests/examples/Fervo_Project_Cape-4.txt\u003e`__\n     - `.out \u003ctests/examples/Fervo_Project_Cape-4.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=Fervo_Project_Cape-4\u003e`__\n   * - Superhot Rock (SHR) Example 1\n     - `example_SHR-1.txt \u003ctests/examples/example_SHR-1.txt\u003e`__\n     - `.out \u003ctests/examples/example_SHR-1.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SHR-1\u003e`__\n   * - Superhot Rock (SHR) Example 2\n     - `example_SHR-2.txt \u003ctests/examples/example_SHR-2.txt\u003e`__\n     - `.out \u003ctests/examples/example_SHR-2.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SHR-2\u003e`__\n   * - SAM Single Owner PPA: 50 MWe (`documentation \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/SAM-Economic-Models.html\u003e`__)\n     - `example_SAM-single-owner-PPA.txt \u003ctests/examples/example_SAM-single-owner-PPA.txt\u003e`__\n     - `.out \u003ctests/examples/example_SAM-single-owner-PPA.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SAM-single-owner-PPA\u003e`__\n   * - SAM Single Owner PPA: 400 MWe BICYCLE Comparison\n     - `example_SAM-single-owner-PPA-2.txt \u003ctests/examples/example_SAM-single-owner-PPA-2.txt\u003e`__\n     - `.out \u003ctests/examples/example_SAM-single-owner-PPA-2.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SAM-single-owner-PPA-2\u003e`__\n   * - SAM Single Owner PPA: 50 MWe with Add-ons\n     - `example_SAM-single-owner-PPA-3.txt \u003ctests/examples/example_SAM-single-owner-PPA-3.txt\u003e`__\n     - `.out \u003ctests/examples/example_SAM-single-owner-PPA-3.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SAM-single-owner-PPA-3\u003e`__\n   * - SAM Single Owner PPA: 50 MWe with Royalties\n     - `example_SAM-single-owner-PPA-4.txt \u003ctests/examples/example_SAM-single-owner-PPA-4.txt\u003e`__\n     - `.out \u003ctests/examples/example_SAM-single-owner-PPA-4.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SAM-single-owner-PPA-4\u003e`__\n   * - SAM Single Owner PPA: Royalty Schedule \u0026 Supplemental Payments\n     - `example_SAM-single-owner-PPA-4b.txt \u003ctests/examples/example_SAM-single-owner-PPA-4b.txt\u003e`__\n     - `.out \u003ctests/examples/example_SAM-single-owner-PPA-4b.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SAM-single-owner-PPA-4b\u003e`_\n   * - SAM Single Owner PPA: Multiple Construction Years\n     - `example_SAM-single-owner-PPA-5.txt \u003ctests/examples/example_SAM-single-owner-PPA-5.txt\u003e`__\n     - `.out \u003ctests/examples/example_SAM-single-owner-PPA-5.out\u003e`__\n     - `link \u003chttps://gtp.scientificwebservices.com/geophires?geophires-example-id=example_SAM-single-owner-PPA-5\u003e`__\n.. raw:: html\n\n   \u003cembed\u003e\n      \u003ci\u003e* TOUGH2 is not currently supported in the web interface. Comment on \u003ca href=\"https://github.com/softwareengineerprogrammer/geothermal-ui/issues/15\"\u003ethis tracking issue\u003c/a\u003e to request web interface support for TOUGH2.\u003c/i\u003e\n   \u003c/embed\u003e\n\n\nHIP-RA: Heat in Place - Resource Assessment\n-------------------------------------------\n\n`HIP-RA-X README \u003csrc/hip_ra_x/README.md\u003e`__\n\n`HIP-RA-X Parameters Reference \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/hip_ra_x_parameters.html\u003e`__\n\nA HIP-RA web interface is available at `gtp.scientificwebservices.com/hip-ra \u003chttps://gtp.scientificwebservices.com/hip-ra\u003e`__.\n\n\nMonte Carlo\n-----------\n\n`Monte Carlo User Guide \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/Monte-Carlo-User-Guide.html\u003e`__\n\nA Monte Carlo web interface is available at `gtp.scientificwebservices.com/monte-carlo \u003chttps://gtp.scientificwebservices.com/monte-carlo\u003e`__.\n\nExtending GEOPHIRES-X\n---------------------\n`How to extend GEOPHIRES-X \u003cdocs/How-to-extend-GEOPHIRES-X.md#how-to-extend-geophires-x\u003e`__ user guide\n\n`Extension example: SUTRA \u003chttps://github.com/NREL/GEOPHIRES-X/commit/984cb4da1505667adb2c45cb1297cab6550774bd#diff-5b1ea85ce061b9a1137a46c48d2d293126224d677d3ab38d9b2f4dcfc4e1674e\u003e`__\n\nResources\n---------\n\n`GEOPHIRES v3 User Manual \u003chttps://github.com/softwareengineerprogrammer/GEOPHIRES/blob/9c7d95648140886609776f154d25a0dcbf240851/References/GEOPHIRES_v3_UserManual.pdf\u003e`__: A comprehensive, point-in-time snapshot of the software in PDF format, covering installation, usage, example problems, and parameter lists in detail.\n\n`GEOPHIRES Reference Manual \u003chttps://softwareengineerprogrammer.github.io/GEOPHIRES/overview.html\u003e`__: A living document with the most current, authoritative information on frequently updated topics like the GEOPHIRES Parameters.\n\nAdditional materials can be found in `/References \u003c/References/README.md\u003e`__.\n\nVideos\n------\n\n`NREL GEOPHIRES Workshop: Features Overview \u0026 Examples \u003chttps://www.youtube.com/watch?v=KsFvpvXjOB4\u003e`__\n\n`NREL GEOPHIRES Workshop: Case Studies \u003chttps://youtu.be/uMUDTUL6yWg\u003e`__\n\n\nDevelopment\n===========\n\nIf you are interested in sharing your extensions with others, or contributing them back to this repository,\nyou may want to follow `the Development instructions \u003cCONTRIBUTING.rst#development\u003e`__.\n(You can also create a fork after doing an editable install so don't worry about picking this method if you're unsure.)\n\n.. TODO feedback section - why user feedback is important/valuable, how to file issues/contact authors\n\n.. TODO FAQ/trivia section - \"HDR\" naming (HDR.out, HDR.json) is for Hot Dry Rock\n","funding_links":[],"readme_doi_urls":[],"works":{},"citation_counts":{},"total_citations":0,"keywords_from_contributors":[],"project_url":"https://ost.ecosyste.ms/api/v1/projects/192547","html_url":"https://ost.ecosyste.ms/projects/192547"}