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Ground-source heat pump systems: The effect of variable pipe separation in ground heat exchangers

机译:地源热泵系统:地面热交换器中可变管道分离的影响

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Closed loop ground-source heat pump (GSHP) systems use ground heat exchangers (QHEs) to transfer heat to and from the ground and efficiently provide clean and renewable energy for heating and cooling purposes. Vertical GHEs contain pipes with circulating fluid (loops), which transfer thermal energy between the ground and the fluid. One very common assumption made in designing GSHP systems is that, when installed, these loops remain evenly separated along the length of the GHE, something that due to the nature of construction is rarely true. This can result in thermal interference not accounted for in the design, leading to a potential negative impact on the performance of the system. This paper investigates the effect of this interference, using detailed numerical simulations to compare different geometries, modelling fixed and variable pipe separations, A comprehensive parametric analysis is conducted to identify some of the most influential design parameters and the potential consequences on running and capital costs. Amongst the key findings of this study is the importance of the borehole filling material, as a highly thermally conductive material can minimise these negative effects from the thermal interference by up to 60%. Moreover, potential increases in drilling (capital) costs of up to 24% are shown, while the potential increases in running costs due to the reduced efficiency were found to be relatively minor.
机译:闭环地源热泵(GSHP)系统使用地面热交换器(QHE)将热量传递至地面或从地面传递热量,并有效地提供清洁和可再生的能源用于加热和冷却。垂直GHE包含带有循环流体(回路)的管道,这些管道在地面和流体之间传递热能。设计GSHP系统时做出的一个非常普遍的假设是,安装后,这些环路沿GHE的长度均匀地分开,由于构造的性质,这种情况很少出现。这可能会导致在设计中没有考虑到热干扰,从而导致对系统性能的潜在负面影响。本文研究了这种干扰的影响,使用详细的数值模拟来比较不同的几何形状,对固定和可变的管道间距进行建模,并进行了全面的参数分析,以确定一些最有影响力的设计参数以及对运行和资本成本的潜在影响。这项研究的主要发现之一是钻孔填充材料的重要性,因为高导热材料可以将热干扰带来的负面影响最小化达60%。此外,显示的钻井(资本)成本潜在增加幅度高达24%,而效率降低导致的运行成本潜在增加幅度相对较小。

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