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Heat transfer analysis of underground thermal energy storage in shallow trenches filled with encapsulated phase change materials

机译:填充有相变材料的浅沟槽中地下热能存储的传热分析

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The use of a horizontal ground heat exchanger may represent a reliable and cost effective option for ground-source thermal applications. This study presents the thermal performance analysis of a drainage trench used as ground heat exchanger (GHE) coupled with underground thermal energy storage (UTES). The trench is dug in shallow soil and filled with encapsulated phase change materials (PCMs) as granular filler. Two types of PCMs with different melting points are supposed to operate in summer and winter. Fluid flow and heat transfer in porous media are solved via a 2D finite element model to perform a yearly simulation under hourly-scale boundary conditions. The equivalent heat capacity approach is applied to consider the latent heat of the PCMs. The results show a significant capacity of the trench to smooth thermal waves produced by the heat pump. The effect of the PCMs is analysed by comparing with the corresponding case using coarse gravel as filling material instead of PCMs. The case without PCMs still shows good performance, but PCMs offers the advantages of a seasonal UTES and smoothing thermal wave as well. The proposed solution can be therefore considered as an advanced alternative to other widespread common GHEs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于地面源热应用,使用水平地面热交换器可能是可靠且具有成本效益的选择。这项研究提出了用作地下换热器(GHE)和地下热能存储(UTES)的排水沟的热性能分析。将沟槽挖入浅土中,并填充有作为颗粒状填料的封装相变材料(PCM)。应当在夏季和冬季使用两种熔点不同的PCM。通过2D有限元模型求解多孔介质中的流体流动和传热,以在小时刻度边界条件下进行年度模拟。使用等效热容量方法来考虑PCM的潜热。结果表明,沟槽具有显着的能力来平滑热泵产生的热波。通过与使用粗砂砾代替PCM作为填充材料的相应情况进行比较,分析了PCM的效果。没有PCM的情况仍然显示出良好的性能,但是PCM具有季节性UTES和平滑热浪的优点。因此,可以将所提出的解决方案视为其他广泛的通用GHE的高级替代方案。 (C)2015 Elsevier Ltd.保留所有权利。

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