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Borehole resistance and heat conduction around vertical ground heat exchangers

机译:垂直地热交换器周围的钻孔阻力和热传导

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摘要

Borehole thermal resistance in Ground Heat Exchanger (GHE) installations is affected by several parameters such as geometrical attributes of heat exchanger in the borehole, pipes' characteristics and grout's thermal conductivity. A study is carried out to compare the values computed by Ground Loop Design (GLD) Software, GLD 2009, with three ana-lytical solutions for U-shaped tubes. The analysis is focused on dimensionless ratios of borehole geometrical parameters (borehole diameter to outside pipe diameter and shank spacing to borehole diameter) and pipes according to Standard Di-mension Ratio (SDR) and on eight common grouts. Finally, the effect of heat conduction in the borehole is examined by means of finite element analysis by Heat Transfer Module of COMSOL Multiphysics. A two-dimensional (2-D) steady-state simulation is done assuming working fluid temperatures for winter and summer conditions and typical Greek undis-turbed ground temperature in a field of four ground vertical U-tube heat exchangers surrounded by infinite ground. The temperature profile is presented and the total conductive heat flux from the pipe to the borehole wall per meter of length of ground heat exchanger is computed for pipes SDR11 (the outside diameter of the pipe is 11 times the thickness of its wall), SDR9 and SDR17 for summer working conditions and three different configurations. It is attempted to reach to comparative results for borehole thermal resistance value through different types of analysis, having considered the major factors that affect it and giving trends for the influence of each factor to the magnitude of its value. © Sagia et al.
机译:地面换热器(GHE)装置中的井眼热阻受多个参数的影响,例如井眼中的热交换器的几何属性,管道的特性和灌浆的热导率。进行了一项研究,以比较由接地回路设计(GLD)软件GLD 2009计算出的值与针对U形管的三种分析解决方案。分析的重点是根据标准尺寸比(SDR)的钻孔几何参数(钻孔直径与外管直径以及刀柄间距与钻孔直径)的无量纲比以及八个普通灌浆。最后,通过COMSOL Multiphysics的传热模块进行的有限元分析,检查了井眼中的导热效果。进行了二维(2-D)稳态仿真,假设冬季和夏季条件下的工作流体温度以及在无限大地面包围的四个地面垂直U型换热器场中典型的希腊不受干扰的地面温度。给出了温度曲线,并计算了SDR11管道(管道的外径是其壁厚的11倍),从管道到井壁热交换器每米长的孔壁的总热传导通量,SDR9和SDR17适用于夏季工作条件和三种不同的配置。尝试通过不同类型的分析得出井眼热阻值的比较结果,同时考虑了影响井眼热阻值的主要因素,并给出每种因素对其值的大小的影响趋势。 ©Sagia等。

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