Geothermal Energy Master Plan Town of Rico, Colorado

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Geothermal Energy Master Plan Town of Rico, Colorado ( geothermal-energy-master-plan-town-rico-colorado )

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complexity and expense of developing a power plant and distribution system, community members recognize that public‐private partnerships are the most realistic management scenario. Example Oregon Institute of Technology, Klamath Falls, OR Geothermal electric development can be local‐ scale and low impact. In 2010 Oregon Institute of Technology began using electricity generated from a 280 kw geothermal electric plant. The plant powers numerous campus buildings and is used as a demonstration project by the school for educational purposes. The project development cost was $1.1 million The plant is 1,300 square feet and saves the school approximately $3,500 per month. Greenhouse Climate Control FIGURE 22 – KEY PAD POLLING RESULTS Greenhouses need to regulate temperature to maintain optimal growing conditions. Geothermal resources can be used to heat and cool greenhouses. A growing component of the sustainability movement is local food/food security. Using greenhouses, food can be grown almost anywhere. In mountain environments, cold seasons and intense sunshine can make climate regulation in greenhouses cost prohibitive. By using geothermal energy for heating during cold seasons and for cooling during in warm seasons, greenhouses could become a viable option in Rico. Because greenhouses in Rico are not considered a significant catalyst for economic development, they ranked as a lower priority for participants in the September 2011 key pad polling session. However, a community greenhouse would be a sensible first step and could be a foundation for developing more complicated and expensive strategies. SOURCE: 2011 RICO GEOTHERMAL MASTER PLAN STRATEGIES WORKSHOP Example Chena Hot Springs Greenhouse ‐ Fairbanks, Alaska 30 miles outside of Fairbanks, AK the Chena Hot Springs Resort has been growing fresh produce, in geothermal greenhouse for use in resort kitchens. The project started in 2004 with a 1,000 s.f. test greenhouse and recently built a 4,300 s.f. structure. The greenhouses operate year round and maintain and internal temperature of 78 degrees throughout the harsh Alaskan winter. Crops grown include lettuce, tomatoes, cucumbers, green beans and herbs. The project is also operated in conjunction with the University of Alaska Agriculture department as an experiment site. 23

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