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Multi-injection rate thermal response test with forced convection in a groundwater-filled borehole in hard rock

机译:硬岩地下水充注钻孔中强对流多次注入速率热响应试验

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Convection is shown in earlier studies to improve the thermal contact between heat exchanger and borehole wall in water-filled boreholes. This study investigates the effect of convection on the required borehole length for a ground-coupled heat pump installation. Artificial convection was induced by an ordinary groundwater pump during a multi-injection rate thermal response test (MIR-TRT). For comparison, a second MIR-TRT was performed without pumping of groundwater. The required borehole length was estimated for a ground-coupled heat pump installation supplying a Swedish single-family house. The estimates are based on the results from the MIR-TRTs for thermal conductivity and borehole resistance. The results show linear decrease in required borehole length with increasing heat input rate during the MIR-TRT without pumping of groundwater due to buoyancy-driven convection. An artificial convection stronger than buoyancy-driven convection during the MIR-TRT with pumping of groundwater reduced the required borehole length by 9 %-25 % depending on the heat input rate.
机译:在较早的研究中显示出对流可改善换热器与注水钻孔中的钻孔壁之间的热接触。这项研究调查了对流对地面耦合热泵安装所需的井眼长度的影响。在多次注入速率热响应测试(MIR-TRT)期间,普通的地下水泵引起了人工对流。为了进行比较,在没有泵送地下水的情况下进行了第二次MIR-TRT。估计了为瑞典单户住宅提供地热耦合设备所需的钻孔长度。这些估计是基于MIR-TRT的导热系数和井眼阻力的结果得出的。结果表明,由于浮力驱动的对流,MIR-TRT期间所需的井眼长度随着热量输入速率的增加而线性减小,而没有泵入地下水。在MIR-TRT期间,通过泵入地下水,比浮力驱动对流更强的人工对流可将所需的井眼长度减少9%-25%,具体取决于热量输入速率。

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