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Numerical simulations of a borehole heat exchanger leakage in drinking water catchment areas

机译:饮用水集水区钻孔热交换器泄漏的数值模拟

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摘要

Given the necessity to provide a substantial contribution to the climate protection goals borehole heat exchangers (BHE) and thermal energy storages (BTES) provide an efficient way to produce and store heat, especially in urban areas, but are for reasons of preventive groundwater protection usually rarely approved in areas of drinking water production. Numerical simulations of a BHE leakage in an aquifer used for drinking water production show that even at a distance of only 100 m between the BHE and the drinking water production well concentrations for most components used in commercially available heat transfer fluids do not exceed the limit values due to microbial degradation and dilution. Considering these results and in view of the ambition to reduce fossil primary energy sources by 80-95% by 2050 general distance requirements (currently >1000 m) therefore seem worthy of discussion, at least with regard to the drinking water pollution caused by leakages of BHE.
机译:鉴于必须为气候保护目标提供大量贡献,钻孔换热器(BHE)和热能储存(BTES)提供了生产和储存热量的有效方式,特别是在城市地区,但通常是预防性地下水保护的原因 很少在饮用水生产领域批准。 用于饮用水生产的含水层中BHE泄漏的数值模拟表明,即使在市售的传热流体中使用的大多数组件之间的距离仅100米的距离,也不会超过限制值 由于微生物降解和稀释。 考虑到这些结果,并鉴于将化石初级能源减少80-95%到2050年的一般距离要求(目前> 1000米)的野心似乎值得讨论,至少关于泄漏造成的饮用水污染 bhe。

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