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resource. Advance the Scientific Knowledge Base Before investing time and money, more needs to be known about the hydrology and geophysical context of the geothermal resource. The Colorado School of Mines geophysical surveys conducted in 2010 concluded that a possible geothermal reservoir has been identified, but its extent, volume, and thermal properties are not known at this time. The uses of geothermal resources favored by the community as documented earlier in this report are dependent on the temperature and accessibility of the geothermal resource. The research and analysis of existing data indicates that the temperatures needed for these strategies exist hypothetically, but more scientific research is needed to verify this. • Swimming and Bathing ‐ 70 – 110 degrees F • Electrical Power Generation ‐ 300 degrees F • Space/Building and Water Heating‐ 100‐300 degrees • Greenhouse ‐ 95‐180 degrees F The Colorado School of Mines team has identified several next steps to advance the knowledge about the geothermal resource as summarized in the 2011 report Rico Colorado Geophysical Investigations, Revision 2: Geophysical surveys: Employ additional non‐ invasive geophysical survey methods in the same locations used in the summer of 2010 Colorado School of Mines fieldwork to learn more about the geology and hydrology. Expand the geophysical survey study area to include the Silver Creek drainage and areas south of Rico Test Borehole. Groundwater tracer testing: Groundwater tracers are a non‐toxic, methods are used to characterize flow paths and estimate hydrogeologic parameters such as porosity, dispersivity, hydraulic conductivity, and storage capacity. Hydrogeologic modeling: Based on existing data, develop a hydrogeologic model to describe groundwater gradients and flow directions. Conceptual models are used to evaluate interaction of surface water/groundwater system with hydrothermal system. Test well permitting: Regulatory compliance and well permits (test borehole, thermal gradient holes) need to be obtained according to the requirements listed in the Legal Analysis section of this master plan. Test wells drilling and analysis: Drilling of a test borehole (or possibly a set of boreholes) could be one of the most valuable, near‐term tools to enhance the understating of the Rico hydrothermal system. A test bore hole would cost about $200,000. Drilling of a series of thermal gradient holes may also be of use for measuring temperature and water level, but more geophysical data should be collected in order to better determine optimal locations. 25PDF Image | Geothermal Energy Master Plan Town of Rico, Colorado
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