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The influence of the thermosiphon effect on the thermal response test

机译:热虹吸效应对热响应测试的影响

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The issue of natural and forced groundwater movements, and its effect on the performance of ground heat exchangers is of great importance for the design and sizing of borehole thermal energy systems (BTESs). In Scandinavia groundwater filled boreholes in hard rock are commonly used. In such boreholes one or more intersecting fractures provide a path for groundwater flow between the borehole and the surrounding rock. An enhanced heat transport then occurs due to the induced convective water flow, driven by the volumetric expansion of heated water. Warm groundwater leaves through fractures in the upper part of the borehole while groundwater of ambient temperature enters the borehole through fractures at larger depths. This temperature driven flow is referred to as thermosiphon, and may cause considerable increase in the heat transport from groundwater filled boreholes. The thermosiphon effect is connected to thermal response tests, where the effective ground thermal conductivity is enhanced by this convective transport. Strong thermosiphon effects have frequently been observed in field measurements. The character of this effect is similar to that of artesian flow through boreholes.
机译:地下水的自然运动和强迫运动及其对地面换热器性能的影响,对井下热能系统(BTES)的设计和规模确定至关重要。在斯堪的纳维亚半岛,通常使用地下水填充硬岩中的钻孔。在这样的井眼中,一个或多个相交的裂缝为井眼与周围岩石之间的地下水流动提供了一条路径。然后,由于对流水的流动,​​在热水的体积膨胀的驱动下,传热增强。温暖的地下水通过井眼上部的裂缝离开,而周围环境温度的地下水则通过较大深度的裂缝进入井眼。这种由温度驱动的流动称为热虹吸管,可能导致充满地下水的井眼的热量传输显着增加。热虹吸效应与热响应测试有关,通过对流传输,有效的地面导热系数得以提高。在现场测量中经常观察到强烈的热虹吸效应。这种效应的特征类似于通过井眼的自流流动。

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