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A new modelling approach for piled and other ground heat exchanger applications

机译:一种用于堆积式和其他地面换热器应用的新建模方法

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Pile heat exchangers have an increasing role to play in the delivery of renewable heating and cooling energy. Traditionally the thermal design of ground heat exchangers has relied upon analytical approaches which take a relatively simple approach to the inside of the heat exchanger. This approach is justified while the heat exchanger diameter remains small. However, as larger diameter piled foundations are used as heat exchangers, the transient heat transfer processes operating within the pile become more important. To increase our understanding of these processes and ultimately lead to improved thermal design approaches for pile heat exchangers it is important to examine the heat transfer within the pile in detail. To accomplish this, a new numerical approach has been implemented within the finite element software ABAQUS. Coupling of the convective heat transfer due to fluid flow within the heat transfer pipes and the heat transfer by conduction within the pile concrete is the most important facet of the model. The resulting modelling approach, which is ready to generalise to other geothermal applications and to assess thermo-mechanical couplings, has been validated against a multi-stage thermal response test carried out on a test pile in London Clay.
机译:堆式换热器在可再生加热和冷却能量的输送中起着越来越重要的作用。传统上,地面热交换器的热设计依赖于分析方法,该分析方法对热交换器内部采取相对简单的方法。当热交换器直径保持较小时,这种方法是合理的。但是,随着使用较大直径的桩基作为热交换器,在桩内进行的瞬态传热过程变得越来越重要。为了加深我们对这些过程的了解并最终导致改进的桩式换热器热设计方法,重要的是详细检查桩内的传热。为此,在有限元软件ABAQUS中实现了一种新的数值方法。该模型最重要的方面是,由于传热管内的流体流动和桩混凝土内的传导传热引起的对流传热的耦合。所产生的建模方法已准备好推广到其他地热应用中,并评估热力耦合作用,并已在伦敦粘土的测试桩上进行的多阶段热响应测试中得到了验证。

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