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Sustainability indicator for the prevention of potential thermal interferences between groundwater heat pump systems in urban aquifers

机译:可持续性指标,用于防止城市含水层中的地下水热泵系统之间潜在的热干扰

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摘要

The steady increase of geothermal systems using groundwater is compromising the renewability of the geothermal resources in shallow urban aquifers. To ensure sustainability, scientifically-based criteria are required to prevent potential thermal interferences between geothermal systems. In this work, a management indicator (balanced sustainability index, BSI) applicable to groundwater heat pump systems is defined to assign a quantitative value of sustainability to each system, based on their intrinsic potential to produce thermal interference. The BSI indicator relies on the net heat balance transferred to the terrain throughout the year and the maximum seasonal thermal load associated. To define this indicator, 75 heating-cooling scenarios based in 23 real systems were established to cover all possible different operational conditions. The scenarios were simulated in a standard numerical model, adopted as a reference framework, and thermal impacts were evaluated. Two polynomial regression models were used for the interpolation of thermal impacts, thus allowing the direct calculation of the sustainability indicator developed as a function of heating-cooling ratios and maximum seasonal thermal loads. The BSI indicator could provide authorities and technicians with scientifically-based criteria to establish geothermal monitoring programs, which are critical to maintain the implementation rates and renewability of these systems in the cities. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用地下水的地热系统的稳定增长正在损害浅层城市含水层中地热资源的可再生性。为了确保可持续性,需要基于科学的标准来防止地热系统之间潜在的热干扰。在这项工作中,定义了适用于地下水热泵系统的管理指标(平衡的可持续性指数,BSI),以根据每个系统产生热干扰的内在潜力为其分配可持续性的定量值。 BSI指标依赖于全年传递到地形的净热量平衡以及相关的最大季节性热量负荷。为了定义该指标,建立了基于23个实际系统的75个供热-制冷方案,以涵盖所有可能的不同运行条件。在标准数值模型中模拟了这些场景,并采用它们作为参考框架,并评估了热影响。使用两个多项式回归模型对热影响进行插值,从而可以直接计算根据加热-冷却比和最大季节性热负荷而制定的可持续性指标。 BSI指标可以为当局和技术人员提供基于科学的标准,以建立地热监测计划,这对于维持城市中这些系统的实施率和可更新性至关重要。 (C)2018 Elsevier Ltd.保留所有权利。

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