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Ground source heat pumps and their interactions with underground railway tunnels in an urban environment: A review

机译:地源热泵及其与城市环境中地下铁路隧道的相互作用:综述

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摘要

© 2015 Elsevier Ltd. All rights reserved. Ground source heat pumps (GSHPs) can provide an efficient way of heating and cooling buildings due to their high operating efficiencies. The implementation of these systems in urban environments could have further benefits. In such locations the ground source heat is potentially more accessible through alternative sources such as through underground railways (URs). The heat from the ground surrounding an UR tunnel could be exploited to enhance the operation of GSHPs operating in heating mode. To achieve this, the interactions of GSHPs with neighbouring URs must be fully understood but there is little exploration of these in current literature. This paper focuses on the potential benefit of understanding such interactions. It starts with a summary of typical and alternative heat sources for heat pumps and then it highlights the reasons why URs can be regarded as one of the most attractive ones. Then the paper reviews the current approaches used to model GSHPs and URs. Based on that review the paper suggests a method for the combined analysis of GSHPs and URs. The reasons why London is a sensible choice for a case study are also described. Summary of results from a preliminary investigation are also presented.
机译:©2015 Elsevier Ltd.保留所有权利。地源热泵(GSHP)具有很高的运行效率,可以提供一种高效的建筑物供热和制冷方法。在城市环境中实施这些系统可能会带来更多好处。在这样的位置,通过其他来源,例如地下铁路(UR),可能更容易获得地源热。可以利用来自UR隧道周围地面的热量来增强以加热模式运行的GSHP的运行。为此,必须充分了解GSHP与相邻UR的相互作用,但是在当前文献中对此进行的探索很少。本文着重于了解这种相互作用的潜在利益。它首先概述了热泵的典型热源和替代热源,然后重点介绍了为什么UR被视为最有吸引力的热源之一的原因。然后,本文回顾了用于建模GSHP和UR的当前方法。在此基础上,本文提出了一种综合分析GSHP和UR的方法。还描述了为什么伦敦是案例研究的明智选择的原因。还提供了初步调查结果的摘要。

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