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Experimental thermal performance analysis of ground heat exchangers for space heating and cooling applications

机译:用于空间供热和制冷应用的地面热交换器的实验热性能分析

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摘要

In recent decades, ground source heat pump systems have become popular for space heating and cooling applications. In both modes of operation, GSHP needs to interact with the ground through GHX. The thermal performance analysis of single and double U-tube heat exchangers are discussed in this paper by focusing on its effectiveness, ground temperatures, heat extraction & injection rate and its effects on surrounding ground formations. Initially the method of calculating length of GHX for a given heat load is explained, then the effectiveness of GHX is defined. Experimental set up used to study the performance of single and double U-tube GHX at bureau of geological and mining research (BRGM), France is explained. Results obtained from the experimental study shows that the average effectiveness of single U-tube heat exchanger in heating and cooling modes are 034 and 0.40 respectively and for double U-tube, it is 0.46 and 0.57 respectively. In both the heat exchangers, the average effectiveness is observed to be high in cooling mode operation, the reason may be that in cooling mode operation, the temperature difference between the heat carrier fluid and the ground is found to be high compared to the difference observed during heating mode operation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在最近的几十年中,地源热泵系统在空间供热和制冷应用中变得很流行。在两种运行模式下,GSHP都需要通过GHX与地面互动。本文着重讨论了单U型换热器和双U型换热器的热性能分析,重点是其有效性,地温,热量提取和注入速率及其对周围地层的影响。首先说明了在给定热负荷下计算GHX长度的方法,然后定义了GHX的有效性。解释了法国地质与矿业研究局(BRGM)用于研究单U型和双U型管GHX性能的实验装置。实验研究结果表明,单U型换热器在加热和冷却方式下的平均效率分别为034和0.40,而双U型换热器的平均效率分别为0.46和0.57。在两个热交换器中,在制冷模式运行中均观察到平均效率较高,原因可能是在制冷模式运行中,发现载热流体与地面之间的温差比所观察到的温差高在加热模式下运行。 (C)2017 Elsevier Ltd.保留所有权利。

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