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Multi-criteria spatial screening and uncertainty analysis applied to direct-use geothermal projects
Authors:Calvin A Whealton  Jery R Stedinger  Jared D Smith  Teresa E Jordan  Franklin G Horowitz  Maria C Richards
Institution:1. School of Civil &2. Environmental Engineering, Cornell University , Ithaca, NY, USA caw324@cornell.eduORCID Iconhttps://orcid.org/0000-0001-9900-0542;4. Environmental Engineering, Cornell University , Ithaca, NY, USA;5. Environmental Engineering, Cornell University , Ithaca, NY, USA;6. Department of Engineering Systems and Environment, University of Virginia , Charlottesville, VA, USA;7. Department of Earth &8. Atmospheric Sciences, Cornell University , Ithaca, NY, USA;9. Institute for the Study of the Continents, Cornell University , Ithaca, NY, USA;10. Geothermal Laboratory, Southern Methodist University , Dallas, TX, USA
Abstract:ABSTRACT

The focus of this work is general methods for prioritization or screening of project sites based on the favorability of multiple spatial criteria. We present a threshold-based transformation of each underlying spatial favorability factor into a continuous scale with a common favorability interpretation across all criteria. We compare several methods of computing site favorability and propagating uncertainty from the data to the favorability metrics. Including uncertainty allows decision makers to determine if seeming differences among sites are significant. We address uncertainty using Taylor series approximations and analytical distributions, which are compared to computationally intensive Monte Carlo simulations. Our methods are applied to siting direct-use geothermal energy projects in the Appalachian Basin, where our knowledge about any particular site is limited, yet sufficient data exist to estimate favorability. We consider four factors that contribute to site favorability: the thermal resource described by the depth to 80°C rock, natural reservoir productivity described by rock permeability and thickness, potential for induced seismicity, and the estimated cost of surface infrastructure for heat distribution. Those factors are combined in three ways. We develop favorability uncertainty propagation and sensitivity analysis methods. All methods are general and can be applied to other multi-criteria spatial screening problems.
Keywords:Site suitability analysis  multi-criteria decision analysis  uncertainty analysis  geothermal  sensitivity analysis
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