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A revised capacitance resistance model for large diameter shallow bore ground heat exchanger

机译:大直径浅孔地热交换器的修正电容电阻模型

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Ground heat exchangers (GHE) for residential heat pumps have the advantage of rejecting (extracting) heat to a lower (higher) temperature sink (source) as compared with air source heat pumps. The thermal performance of shallow GHEs with larger diameter and of helical shape is modelled in this study using both a lumped parameter numerical model and a commercially available computational fluid dynamics (CFD) software. Measurements in a real test site single-family residence are also used for soil property calibration. The lumped parameter numerical model (Capacitance Resistance Model, CaRM) is validated against the CFD simulation results and improved in order to capture detailed heat transfer processes within the core of the GHE. As result, the new CaRM model is able to better simulate the thermal behaviour of the helical GHE without high computational resources of the CFD model. Detailed local and global temperatures predicted by the numerical models are presented and discussed. Results indicate that the new CaRM tool better matches the trend of the CFD model. The average root-mean-square deviation between the revised CaRM and CFD models are 0.29 degrees C for the average core temperature and 0.75 degrees C for the borewall temperature which is an improvement of 27% and 35% respectively, in comparison to the previous version of CaRM.
机译:与空气源热泵相比,居住热泵的地面热交换器(GHE)具有将(提取)热量拒绝(提取)热量到较低(较高)的温度水槽(源)的优点。在本研究中,使用总数数值数值和市售的计算流体动力学(CFD)软件,在该研究中建模了具有较大直径和螺旋形状的浅嘴的热性能。实际测试场所的测量单家族住宅也用于土壤属性校准。集总参数数值模型(电容电阻模型,CARM)针对CFD仿真结果验证并改进,以捕获GHE核心内的详细传热过程。结果,新的CARM模型能够更好地模拟螺旋GHE的热行为,而不提供CFD模型的高计算资源。提出并讨论了数值模型预测的详细本地和全局温度。结果表明,新的CARM工具更好地符合CFD模型的趋势。经修订的CARM和CFD模型之间的平均均方根偏差为0.29摄氏度,平均核心温度和0.75摄氏度,钻孔温度分别为27%和35%,与之前的版本相比甘草。

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