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Study on heat transfer of pile foundation ground heat exchanger with three-dimensional groundwater seepage

机译:三维渗流的桩基地面换热器传热研究

摘要

An increasing number of high-rise buildings are being designed, enabling the use of pile foundation to also act as ground heat exchangers (GHEs) of ground source heat pumps (GSHPs). These so-called energy piles include heat exchange pipes already cast into the pile foundation to produce a new type of GHE. Groundwater seepage, by means of advection, plays an important role in improving the heat transfer performance of energy pile. Existing research has studied heat transfer mechanism of energy pile when groundwater is considered to flow in one direction only, and in two directions also. No studies, however, have been introduced explaining the effects of three-dimensional (3-D) groundwater seepage (i.e. in three directions) on the heat transfer between pile and underground medium. This paper presents a new mathematical model about the heat transfer of energy pile with 3-D groundwater seepage, whereby the analytical temperature responses solutions induced by both infinite and finite models are obtained. Comparisons between pure conduction and combined heat transfer were made, and the temperature distributions in a 3-D seepage environment are explained. In addition, the characteristics involved in the new model were explored and then the factors exerting influence on heat transfer are described. The 3-D groundwater seepage is more advanced and realistic, and the research described in this paper is usefully relevant to promoting the development of energy piles of GSHP.
机译:正在设计越来越多的高层建筑,这使得桩基础的使用也可以用作地源热泵(GSHP)的地热交换器(GHE)。这些所谓的能量桩包括已经浇铸在桩基中以产生新型GHE的热交换管。借助对流作用,地下水渗流在提高能量堆的传热性能中起着重要作用。现有研究已经研究了当地下水仅沿一个方向流动并且也沿两个方向流动时能量堆的传热机理。然而,没有引入任何研究来解释三维(3-D)地下水渗流(即沿三个方向)对桩与地下介质之间的热传递的影响。本文提出了一个关于3-D地下水渗流的能量桩传热的新数学模型,从而得到了无限模型和有限模型所引起的解析温度响应解。比较了纯传导和组合传热,并解释了3D渗流环境中的温度分布。此外,还探讨了新模型所涉及的特性,然后描述了影响传热的因素。 3-D地下水渗流更为先进和现实,本文所述的研究对促进GSHP能量桩的发展非常有用。

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