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A novel enhanced deep borehole heat exchanger for building heating

机译:一种新型增强型深层钻孔换热器,用于建筑加热

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摘要

Deep borehole heat exchanger (DBHE) technology can be used in various regions due to without dependence on the hot water reservoir. However, its performance can hardly be improved due to poor thermal conductivity of rocks and cement. Here a novel enhanced deep borehole heat exchanger (EDBHE) is first proposed, which applies composite filler, cement and well tube. To depress thermal resistance, graphene is used to mix with ordinary mud and cement respectively to prepare composite filler and composite cement. Especially composite filler is controlled deliberately to flow into leakage formation by adjusting its density, viscosity and back pressure in order to improve the thermal conductivity of surrounding rocks. We find that the extracted thermal output from EDBHE is 1002.34 kW, which is 2.36 times that of DBHE (424.45 kW). EDBHE can be used in low water output zone and difficult recharge zone even dry hole zone with leakage formation, which will increase geothermal heating area substantially.
机译:由于不依赖于热水储存器,深层钻孔热交换器(DBHE)技术可用于各种区域。然而,由于岩石和水泥的导热性差,它的性能很大。这里首先提出一种新型增强的深层钻孔热交换器(EDBHE),其施加复合填料,水泥和井管。为了抑制热阻,石墨烯分别用于与普通泥浆和水泥混合,以制备复合填料和复合水泥。特别是复合填料,通过调节其密度,粘度和背部压力来刻意地控制流入泄漏形成,以提高周围岩石的导热率。我们发现Edbhe的提取的热输出为1002.34 kW,即DBHE(424.45 kW)的2.36倍。 Edbhe可用于低水输出区和困难的充电区甚至具有泄漏形成的干孔区,这将基本上增加地热加热区域。

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