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Temperature response functions (G-functions) for single pile heat exchangers

机译:单桩热交换器的温度响应函数(G函数)

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摘要

Foundation piles used as heat exchangers as part of a ground energy system have the potential to reduce energy use and carbon dioxide emissions from new buildings. However, current design approaches for pile heat exchangers are based on methods developed for boreholes which have a different geometry, with a much larger aspect (length to diameter) ratio. Current methods also neglect the transient behaviour of the pile concrete, instead assuming a steady state resistance for design purposes. As piles have a much larger volume of concrete than boreholes, this neglects the significant potential for heat storage within the pile. To overcome these shortcomings this paper presents new pile temperature response functions (C-functions) which are designed to reflect typical geometries of pile heat exchangers and include the transient response of the pile concrete. Owing to the larger number of pile sizes and pipe configurations which are possible with pile heat exchangers it is not feasible to developed a single unified G-function and instead upper and lower bound solutions are provided for different aspects ratios.
机译:用作地面能源系统一部分的热交换器的基础桩有潜力减少新建筑物的能源消耗和二氧化碳排放。然而,当前用于桩式换热器的设计方法是基于针对具有不同几何形状且具有更大的长宽比(长径比)的钻孔开发的方法。当前的方法还忽略了桩混凝土的瞬态行为,而是出于设计目的而假定稳态电阻。由于桩的混凝土体积比钻孔大得多,因此忽略了桩内蓄热的巨大潜力。为了克服这些缺点,本文提出了新的桩温度响应函数(C函数),旨在反映桩式换热器的典型几何形状,并包括桩混凝土的瞬态响应。由于桩式换热器可能具有更大数量的桩尺寸和管道配置,因此无法开发单个统一的G函数,而是为不同的长宽比提供了上下限解决方案。

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