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首页> 外文期刊>The Science of the Total Environment >Geochemical impacts of groundwater heat pump systems in an urban alluvial aquifer with evaporitic bedrock
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Geochemical impacts of groundwater heat pump systems in an urban alluvial aquifer with evaporitic bedrock

机译:含蒸发基岩的城市冲积含水层中地下水热泵系统的地球化学影响

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摘要

In the last decade, there has been an extensive use of shallow geothermal exploitations in urban environments. Although the thermal interference between exploitations has been recently studied, there is a lack of knowledge regarding the geochemical impacts of those systems on the aquifers where they are installed. Groundwater flow line scale and well-doublet scale research work has been conducted at city scale to quantify the geochemical interaction of shallow geothermal exploitations with the environment A comprehensive analysis was conducted on data obtained from a monitoring network specifically designed to control and develop aquifer policies related to thermal management of the aquifer. The geochemical impacts were evaluated from a thermodynamic point of view by means of saturation index (SI) calculations with respect to the different mineral species considered in the system. The results obtained indicate limited geochemical interaction with the urban environment in most of the situations. However, there are some cases where the interaction of the groundwater heat pump installations with the evaporitic bedrock resulted in the total disablement of the exploitation system operation wells. The application of the tool proposed proved to be pragmatic in the evaluation of geochemical impacts. Injection of water into the aquifer can trigger an important bedrock gypsum and halite dissolution process that is partly responsible for scaling in well casing pipes and collapse of the terrain in the vicinity of injection wells.
机译:在过去的十年中,在城市环境中广泛使用了浅层地热资源。尽管最近对开采之间的热干扰进行了研究,但是对于这些系统对安装它们的含水层的地球化学影响缺乏了解。在城市范围内进行了地下水流线规模和双井规模的研究工作,以量化浅层地热开采与环境之间的地球化学相互作用。对从专门用于控制和制定含水层政策的监测网络获得的数据进行了综合分析。进行含水层的热管理。从热力学的角度,通过对系统中考虑的不同矿物种类的饱和指数(SI)计算,评估了地球化学影响。获得的结果表明,在大多数情况下,地球化学与城市环境之间的相互作用有限。但是,在某些情况下,地下水热泵装置与蒸发基岩的相互作用导致开采系统作业井完全失效。所提出的工具的应用被证明在评估地球化学影响方面是务实的。将水注入含水层会触发重要的基岩石膏和盐岩溶解过程,部分原因是套管井结垢和注入井附近的地表塌陷。

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