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Ground Source Heat Pump Modeling: Accounting of Ground Moisture Freezing-Melting in a Model of Heat Transfer Outside Deep Borehole

机译:地面源热泵建模:在深层钻孔外传热模型中冻融冻融的核算

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This paper contains the results of research, carried out with financial support from the Ministry of Education and Science of the Russian Federation (contract ID RFMEFI57914X0026). For the ground source heat pump (GSHP) used as a heating system in regions with cold climate the thermal effects of ground moisture freezing-melting processes can make an essential long-term impact on GSHP performance. However, widely known models of heat transfer inside and outside GSHP borehole do not take into account such effects. In this paper we propose a method of engineering estimation of freezing-melting latent heat in the frame of modified cylindrical source model. The key feature of the method is the definition of effective thermal conductivity of ground to "convert" the latent heat of phase transition into equivalent heat flux from outer ground. The method is validated by laboratory measurements of ground thermal conductivity during the freezing-melting process.
机译:本文载有研究结果,与俄罗斯联邦教育部和科学部的财政支持(合同ID RFMEFII57914X0026)开展。对于用作寒冷的地区的地面热泵(GSHP),用作寒冷的地区的加热系统,冻融熔化过程的热效应可以对GSHP性能产生必要的长期影响。然而,众所周知的GSHP钻孔内外的热传递模型不考虑这种效果。本文提出了一种在改进的圆柱源模型框架中施加冻融潜热的工程估计方法。该方法的关键特征是接地有效导热率的定义,将相位过渡的潜热转化为来自外地的等效热通量。该方法通过在冷冻熔化过程中的接地导热率的实验室测量来验证。

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