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Analysis of double U-tube ground heat exchanger for renewable energy applications with two-region simulation model by combining analytical and numerical techniques

机译:通过组合分析和数值技术与双区域仿真模型进行再生能源应用的双U型管接地热交换器

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摘要

This research is concerned on heat transfer analysis and modelling in a double U-tube borehole heat exchanger (BHE), via dividing the borehole into two separate regions. The inner part region of the borehole was analyzed analytically, while the outer region of the borehole was studied numerically. The two analyses were joined with the borehole wall temperature. The transient heat transfer of the borehole outer region was analyzed with thermal resistance model using the implicit numerical technique. In the contrary the thermal capacitance of the inner region of the borehole was ignored in this analysis as the inner portion of the borehole is insignificant compared to the outer borehole region and its modelling was only treated with analytical method. Variation of borehole temperature with time, the variation of rate of heat transfer between the borehole inner region to the outer region, radial temperature profile of the ground, and variation in mean temperature of ground with respect to time were investigated for three borehole operation scenarios (i.e. double charging, double discharging, simulations charging and discharging).
机译:该研究涉及双U形管钻孔热交换器(BHE)中的传热分析和建模,通过将钻孔分成两个单独的区域。分析地分析钻孔的内部部分区域,同时在数值上进行钻孔的外部区域。两种分析与钻孔壁温度连接。利用隐式数值技术用热阻模型分析钻孔外部区域的瞬态传热。相反,随着与外钻孔区域相比,在该分析中,在该分析中忽略了钻孔内部区域的热电容,并且与外钻孔区域相比,其建模仅用分析方法处理。钻孔温度随时间的变化,钻孔内部区域与外部区域之间的传热速率的变化,接地的径向温度曲线以及相对于时间的平均温度的变化进行了三个钻孔操作场景(即双倍充电,双放电,模拟充电和放电)。

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