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Modeling the groundwater temperature response to extensive operation of ground source heat pump systems: A case study in Germany

机译:建模地下水温度响应地面热泵系统广泛运行 - 以德国为例

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Ground source heat pump(GSHP)systems have been considered to be a low-carbon technology to provide heating and cooling for buildings in urban environments.This study focuses on the short-and long-term evolution of groundwater temperature induced by high-density GSHP installations in an urban residential area in Cologne,Germany.Specifically,a 2D heat transport model considering both thermal convection and conduction has been constructed using the finite element simulator OpenGeoSys.The simulated temperature changes within the initial few years were compared to the monitored dataset,while the GSHP heating load and thermal conductivity were calibrated.Subsequently,the validated model was run for 25 years to evaluate the long-term trend of the subsurface temperature.Also,effects of model uncertainties were explored with different simulated scenarios.Results indicate that sufficiently large groundwater flow and a high cooling ratio can effectively mitigate ground cooling.Based on these findings,best and worst-case scenarios were formulated for the studied case and the sustainability of GSHP operation were evaluated accordingly.As an outcome,specific design and operation criteria were proposed for the sustainable utilization of shallow geothermal energy for the heating and cooling of buildings in urban areas.
机译:地源热泵(GSHP)系统已被认为是一种低碳技术来提供加热和通过高密度地源热泵引起地下水温度的短期和长期演进冷却在城市environments.This研究着重建筑物在科隆,Germany.Specifically一个城市居住区安装中,二维热传输模型同时考虑热对流和传导已经使用初始几年内有限元仿真OpenGeoSys.The模拟的温度变化进行了比较,所监视的数据集构建而地源热泵采暖负荷和热导率calibrated.Subsequently,经过验证的模型运行了25年,以评估地下temperature.Also的长期趋势,模型的不确定性的影响不同的模拟scenarios.Results进行了探索表明,足够大地下水流和高的冷却比可以有效地缓解地面cooling.Based这些发现英格斯,最好和最坏的情况是制定了研究的情况下,地源热泵和运行的可持续性进行评估accordingly.As的结果,具体的设计和运行标准被提出了浅层地热能用于加热的可持续利用和建筑物的冷却在城市地区。

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