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The spatial economics of geothermal district energy in a small, low-density town: a case study of Mammoth Lakes, California

机译:一个低密度小城镇中地热区域能源的空间经济学:以加利福尼亚州猛mm湖为例

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This research focuses on the spatial economics of geothermal district energy (DE) systems that distribute hot fluids through a pipeline network to multiple thermal customers. We argue here that DE is held back by uncertainty about its economic feasibility when implemented in real places. DE works best with high urban densities, but in the US the best geothermal resources are in the less-populated west. Economic geography theory suggests that the optimal size of a DE firm's service area should depend on the trade-off between the economies of scale inherent in a large service area and the greater network development costs and heat loss involved in serving a large area. The HEATMAP software program developed by Washington State University was used to study the feasibility of numerous scenarios for a proposed DE system in Mammoth Lakes, California. Results indicate that the core area of the town is large enough, dense enough, and in close enough proximity to the resource for profitable DE development. Proposed ski village developments would increase the thermal load density and significantly enhance its ability to remain competitive with other fuels, even in pessimistic sensitivity analyses regarding geothermal heat input costs, public participation, and retro-fitting costs.
机译:这项研究的重点是地热区域能源(DE)系统的空间经济学,该系统通过管道网络将热流体分配给多个热用户。我们在这里辩称,在实际环境中实施DE时,由于对其经济可行性的不确定性而使它受阻。 DE在城市密度高的情况下效果最好,但是在美国,地热资源最好的地区是人口稀少的西部。经济地理理论认为,DE公司服务区的最佳规模应取决于在大服务区固有的规模经济与服务于大区所涉及的更大的网络开发成本和热损失之间的权衡。由华盛顿州立大学开发的HEATMAP软件程序用于研究在加利福尼亚州猛mm湖建立的DE系统的多种方案的可行性。结果表明,该镇的核心区域足够大,足够密集,并且与资源相距足够近,以实现可盈利的DE开发。拟议的滑雪村开发项目将提高热负荷密度,并显着提高其与其他燃料保持竞争的能力,即使在有关地热输入成本,公众参与和改造成本的悲观敏感性分析中也是如此。

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