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The research on ring-coil heat transfer models of pile foundation ground heat exchangers in the case of groundwater seepage

机译:地下水渗流的桩基地面换热器环形线圈传热模型研究

摘要

This paper presents a mathematical model for describing heat transfer around the pile foundation ground heat exchangers (GHEs) when seepage of groundwater imposes an effect on the heat exchange process. The corresponding analytical solutions on temperature response are acquired based on combined heat transfer case; the model take the spiral coils arrangement and their pitches inside piles into consideration and identify the differences between the new models and those former models which did not treat spiral tube as a series of separate coils along the z-axial direction. The influence exerted on temperature response by every parameter was investigated. Two cases were compared, i.e. pure conduction and combined heat transfer including both conduction and convection. The relevant calculations prove that the heat transfer efficiency between pile foundation GHEs and the surrounding underground medium can be improved especially when some parameters attain a certain extent. The research on new models can help boost the development of energy pile technology.
机译:本文提出了一个数学模型,用于描述当地下水渗流对换热过程产生影响时,桩基地面换热器(GHE)周围的热传递。基于组合传热情况,获得了相应的温度响应解析解。该模型考虑了螺旋线圈的布置及其在桩内的间距,并确定了新模型与以前的模型之间的差异,这些模型没有将螺旋管沿z轴方向视为一系列单独的线圈。研究了每个参数对温度响应的影响。比较了两种情况,即纯传导和包括传热和对流的组合传热。相关计算证明,尤其是当某些参数达到一定程度时,可以提高桩基GHE与周围地下介质之间的传热效率。对新模型的研究可以帮助促进能量堆技术的发展。

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