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Investigation on influential factors of engineering design of geothermal heat exchangers

机译:影响地热热交换器工程设计的因素研究

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摘要

The research on heat transfer models of geothermal ground heat exchangers (GHEs) of ground-coupled heat pump (GCHP) system has recently advanced greatly. However, although it is important to optimize the design size of GHEs for reducing the total length of GHEs, the optimization of GHEs by means of models is a little. This paper describes the interior simulation models of borehole in which single U-tube and double U-tubes are each buried. The analytical solutions concerning the borehole's exterior heat transfer are given. All the factors that exert influences on the design size of GHEs are described based on the results of the heat transfer models. These significant parameters consist of the centre to centre distance of the U-tube, thermal conductivity of the backfill material, distance of adjacent boreholes, types of circulating liquid or underground medium, arrangement of boreholes, and the minimum temperature of the circulating liquid which enters the heat pump. Using the simulation models and computer programming, the influence degrees of the above factors are discussed in terms of the adoption of different values or types. Therefore, the initial cost and the economic performance of the system are respectively dropped and improved. The investigation on optimization of GHEs is favourable for the further development of GCHP technology. (C) 2015 Elsevier Ltd. All rights reserved.
机译:地面耦合热泵(GCHP)系统的地热地面换热器(GHE)的传热模型研究最近取得了很大进展。然而,尽管优化GHE的设计尺寸对于减小GHE的总长度很重要,但是通过模型进行的GHE的优化却很少。本文描述了钻孔的内部模拟模型,其中单个U型管和两个U型管分别埋入地下。给出了有关井眼外部传热的解析解。根据传热模型的结果描述了影响GHE设计尺寸的所有因素。这些重要参数包括U型管的中心到中心距离,回填材料的导热系数,相邻钻孔的距离,循环液体或地下介质的类型,钻孔的布置以及进入的循环液体的最低温度热泵。使用仿真模型和计算机程序,根据采用不同的值或类型来讨论上述因素的影响程度。因此,分别降低和改善了系统的初始成本和经济性能。对GHEs的优化研究有利于GCHP技术的进一步发展。 (C)2015 Elsevier Ltd.保留所有权利。

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