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Numerical Simulation and Experimental Verification on Heat Transfer Process of a Vertical U-bend Ground Heat Exchanger

机译:垂直U形弯地换热器传热过程的数值模拟与实验验证

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In order to simulate the heat transfer process of vertical U-bend GHECground heat exchanger), a two-region vertical U-tube analytical solution model is presented and developed firstly by dividing the heat transfer region of vertical U-bend buried coil into two parts at the boundary of borehole wall, and the two regions are coupled by the borehole wall temperature. Both steady and transient heat transfer method are used to analyze the heat transfer characteristics inside and outside borehole respectively. The transient borehole wall temperature is calculated for the soil region outside borehole by use of the variable heat flux cylindrical source model. As for the region inside borehole, considering the variation of fluid temperature along the length and the heat interference between two adjacent legs of U-tube, a steady-state heat transfer analytical solution model is developed based on element energy conservation. The validation of the model developed is done by experimental data and the results indicate that the calculated fluid exit temperatures of the GHE by the model are agreed well with the test data.
机译:为了模拟的传热过程垂直U形弯曲GHECground热交换器),双区垂直的U形管解析解模型被呈现并通过将垂直U形弯曲的传热区域埋入线圈分成两个部分首先开发在井壁的两个区域的边界处,并且由井眼壁温度耦合。既稳定和瞬时热传递方法被用于分析内部的热传递特性和分别外面钻孔中。瞬态井壁温度计算用于通过使用可变热的土壤区域的外侧钻孔通量圆柱形源模型。至于井眼内的区域中,考虑沿着长度和U形管的两个相邻腿之间的热干扰流体温度的变化,稳态传热解析解模型是基于元件节能显影。开发的模型的验证实验数据进行,结果表明,GHE的由模型计算的流体出口温度与试验数据吻合。

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