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The geothermal potential of cities

机译:城市的地热潜力

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What is the heat beneath our feet? There is a growing interest in the geothermal resources available at shallow depth beneath cities. However, there exists no general procedure for quantifying the low-temperature geothermal potential in urban ground and groundwater. This review categorizes previous work based on different definitions of the geothermal potential and compares the different assessment methods used. It is demonstrated that the theoretical potential of the available heat at a shallow depth is enormous, especially when not only the heat in place, but also compensating heat fluxes are considered. The technical potential describes the extractable heat by a specific technology. The methods to evaluate the extractable heat are manifold, including the use of technical performance standards, analytical and numerical simulation tools and mathematical regression procedures. These are different for groundwater well based open-loop systems and heat-exchanger-based closed loop systems, and the results depend on variable local factors, the density of systems applied and whether heat and/or cold is utilized. We contrast the published findings based on the power density and the relative contribution to the demand of a city. The broad span of the results highlights the need for a more consistent framework that distinguishes between the conceptual assumptions for calculating the technical geothermal potential and the local city-specific factors. This will be the basis for a reliable analysis of the economic geothermal potential of low-temperature geothermal applications on a local, district or city scale. This will also enhance the reliability and the trust in these technologies, and thus the public acceptance reflected in the acceptable geothermal potential.
机译:我们脚下的热量是多少?人们对城市下面浅层可用的地热资源越来越感兴趣。但是,目前尚没有用于量化城市地下水和地下水中低温地热势的通用程序。本文根据地热潜力的不同定义对以前的工作进行了分类,并比较了所使用的不同评估方法。结果表明,浅层可用热量的理论潜力是巨大的,特别是当不仅考虑到位热量,而且考虑补偿热通量时。技术潜力描述了通过特定技术可提取的热量。评估可提取热量的方法多种多样,包括使用技术性能标准,分析和数值模拟工具以及数学回归程序。对于基于地下水井的开环系统和基于热交换器的闭环系统,这些是不同的,其结果取决于可变的局部因素,所应用系统的密度以及是否利用热和/或冷。我们根据功率密度和对城市需求的相对贡献来对比已发表的发现。结果的广泛范围凸显了需要一个更一致的框架,以区分用于计算技术地热潜力的概念假设与当地城市特定因素之间的区别。这将是对本地,地区或城市规模的低温地热应用的经济地热潜力进行可靠分析的基础。这也将增强对这些技术的可靠性和信任度,从而在可接受的地热潜力中反映出公众的认可。

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