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Copy file name to clipboardExpand all lines: tests/examples/example_SHR-1.txt
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@@ -4,6 +4,7 @@ Reservoir Model, 1
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Reservoir Depth, 7.5
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Number of Segments, 1
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Gradient 1, 50
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Maximum Temperature, 500
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Number of Production Wells, 2
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Number of Injection Wells, 2
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Production Well Diameter, 7
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Reservoir Heat Capacity, 1000
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Reservoir Density, 2700
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Reservoir Thermal Conductivity, 2.7
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End-Use Option, 1
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Economic Model, 1
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Power Plant Type, 3
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Circulation Pump Efficiency, .8
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Utilization Factor, .9
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Surface Temperature, 20
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Ambient Temperature, 20
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Plant Lifetime, 30
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Fixed Charge Rate, .05
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Inflation Rate During Construction, 0
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Time steps per year, 6
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Maximum Temperature, 500
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Well Drilling and Completion Capital Cost, 40
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Well Drilling and Completion Capital Cost, 40, -- Uses a high, fixed drilling completion cost to account for potentially elevated equipment failure rate associated with producing supercritical geothermal fluid.
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Starting Electricity Sale Price, 0.06
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Ending Electricity Sale Price, 0.10
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Electricity Escalation Start Year, 1
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Electricity Escalation Rate Per Year, 0.012
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Annual License Etc, 0
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Flat License Etc, 0
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Tax Relief Per Year, 2.212
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Do Carbon Price Calculations, true
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Do Carbon Price Calculations, True
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Time steps per year, 6
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Units:Total Saved Carbon Production, kilotonne,
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# See relevant discussion regarding thermosiphoning: https://github.com/NREL/GEOPHIRES-X/issues/188?#issuecomment-2102937796
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