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A methodology to calculate long-term shallow geothermal energy potential for an urban neighbourhood

机译:一种计算城市社区长期浅层地热能潜力的方法

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Ground source heat pumps typically use Borehole Heat Exchangers (BHEs), which are drilled vertically into the ground to extract heat. Space limitations in urban areas can limit the total length of BHEs. Continuous heat extraction over long periods from BHEs especially those with restricted lengths, will result in cooling of the ground. Furthermore, the presence of neighbouring BHEs adds to the cooling effect, thereby reducing the overall geothermal energy, potential. Due to these restrictions, it is important to consider spatial constraints and the thermal interference from neighbouring BHEs when evaluating the geothermal energy potential of urban areas. In this paper, a methodology to calculate the long-term geothermal energy potential for an urban neighbourhood is developed. A GIS based workflow is used to design the BHEs for multiple buildings, in order to satisfy their total heating/cooling demands with consideration of spatial constraints. A model that accounts for thermal interference between neighbouring BHEs is developed in order to simulate their operation and calculate their long-term geothermal energy potential. The method is applied to an urban neighbourhood in Zurich, Switzerland with 170 buildings. Results show that the geothermal energy potential is overestimated if thermal interference between BHEs are not accounted for. A long-term declining trend is observed in the geothermal energy potential due to ground cooling. (C) 2017 Elsevier B.V. All rights reserved.
机译:地源热泵通常使用钻孔换热器(BHE),该换热器垂直钻入地下以吸收热量。城市地区的空间限制会限制BHE的总长度。 BHE(尤其是长度有限的BHE)长时间连续取热,将导致地面冷却。此外,相邻BHE的存在增加了冷却效果,从而降低了整体地热能的潜力。由于这些限制,在评估市区的地热能潜力时,必须考虑空间限制和相邻BHE的热干扰。本文提出了一种计算城市社区长期地热能潜力的方法。基于GIS的工作流程用于设计多个建筑物的BHE,以便在考虑空间限制的情况下满足其总的供热/制冷需求。为了模拟相邻BHE的运行并计算其长期地热能势,开发了一个考虑相邻BHE之间的热干扰的模型。该方法应用于瑞士苏黎世的170座建筑物的城市社区。结果表明,如果不考虑BHE之间的热干扰,则高估了地热能势。观察到由于地面冷却而导致的地热能潜力长期下降的趋势。 (C)2017 Elsevier B.V.保留所有权利。

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