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A two-region simulation model of vertical U-tube ground heat exchanger and its experimental verification

机译:垂直U型管地面换热器的两区模拟模型及其实验验证

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Heat transfer around vertical ground heat exchanger (GHE) is a common problem for the design and simulation of ground coupled heat pump (GCHP). In this paper, an updated two-region vertical U-tube GHE analytical model, which is fit for system dynamic simulation of GCHP, is proposed and developed. It divides the heat transfer region of GHE into two parts at the boundary of borehole wall, and the two regions are coupled by the temperature of borehole wall. Both steady and transient heat transfer method are used to analyze the heat transfer process inside and outside borehole, respectively. The transient borehole wall temperature is calculated for the soil region outside borehole by use of a variable heat flux cylindrical source model. As for the region inside borehole, considering the variation of fluid temperature along the borehole Sength and the heat interference between two adjacent legs of U-tube, a quasi-three dimensional steady-state heat transfer analytical model for the borehole is developed based on the element energy conservation. The implement process of the model used in the dynamic simulation of GCHPs is illuminated in detail and the application calculation example for it is also presented. The experimental validation on the model is performed in a solar-geothermal multifunctional heat pump experiment system with two vertical boreholes and each with a 30 m vertical 1 1/4 in nominal diameter HDPE single U-tube GHE, the results indicate that the calculated fluid outlet temperatures of GHE by the model are agreed well with the corresponding test data and the guess relative error is less than 6%.
机译:立式地面换热器(GHE)周围的热传递是地面耦合热泵(GCHP)的设计和仿真中的常见问题。本文提出并开发了一种更新的两区域垂直U型管GHE分析模型,该模型适用于GCHP的系统动态仿真。它在钻孔壁的边界处将GHE的传热区域分为两部分,并且这两个区域通过钻孔壁的温度耦合。稳态传热法和瞬态传热法分别用于分析井眼内部和外部的传热过程。通过使用可变热通量圆柱源模型,为井眼外的土壤区域计算了井眼的瞬态壁温。对于井眼内部区域,考虑到沿井眼流体温度的变化以及U型管两个相邻支腿之间的热干扰,在此基础上建立了井眼的准三维稳态传热解析模型。元素节能。详细阐述了用于GCHPs动态仿真的模型的实现过程,并给出了其应用计算实例。该模型的实验验证是在一个太阳能地热多功能热泵实验系统中进行的,该系统具有两个垂直孔,每个孔均具有30 m垂直,公称直径为HDPE的单U型管GHE的1 1/4,结果表明计算出的流体模型计算出的GHE出口温度与相应的试验数据吻合得很好,且推测相对误差小于6%。

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