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Geothermal use of an Alpine aquifer-Davos pilot study

机译:地热使用高山含水层 - 达沃斯试点研究

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摘要

Topographically induced Alpine regional groundwater flow systems below the unconsolidated valley fillings constitute a substantial unused geothermal resource. Within the framework of the INTERREG VB project GRETA (shallow geothermal energy in the Alpine region), we developed a method to quantify the groundwater flux of complex alpine aquifers. The basis of the study is a regional-scale hydraulic groundwater model, which is based on a 3D tectonic model of the Davos region in Switzerland. Based on data from a large pumping test, we were able to calibrate the hydraulic model and to calculate basics for various usage scenarios of energetic exploitation for the Arosa Dolomite aquifer. Favourable conditions for an energetic exploitation are related to large-scale topography differences between groundwater recharge and potential exfiltration areas in the valleys, thanks to the 3D geometry of the large-area tectonic nappe units with their root zone located within river valleys. In general, the proposed concept could be applied to manifold similar geological and hydrogeological settings of the Alpine belt.
机译:地形诱导的高山区域地下水流量下方未结核谷填充物,构成了一个实质上未使用的地热资源。在Increg VB Project Greta的框架内(高山地区浅层地热能),我们开发了一种量化复合高寒含水层的地下水通量的方法。该研究的基础是一种区域级液压地下水模型,基于瑞士达沃斯地区的3D构造模型。基于来自大型泵送测试的数据,我们能够校准液压模型,并计算各种使用情况对Arosa Dolomite含水层的各种使用场景的基础知识。由于大面积构造Nappe单位的3D几何与位于River Valleys内的根区域的3D几何形状,有利于山谷之间的地下水补给和潜在的射击区域之间的大规模地形差异。通常,所提出的概念可以应用于歧管的歧管相似的高山带的地质和水文地质环境。

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