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Thermo-hydraulic performance of the U-tube borehole heat exchanger with a novel oval cross-section: Numerical approach

机译:具有新型椭圆形横截面的U型管钻孔热交换器的热工水力性能:数值方法

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摘要

In this paper, a novel U-tube Borehole Heat Exchanger (BHX) with an oval cross-section is proposed for improving the performance of Ground Source Heat Pump systems (GSHP). To study the thermo-hydraulic performance of Borehole Heat Exchanger (BHX) with an oval U-tube: A three-dimensional, symmetric and unsteady state multi-physics Computational Fluid Dynamic (CFD) simulations are carried out by ANSYS FLUENT environment. The conjugate heat transfer and fluid flow are simulated. Borehole thermal resistance, fluid inlet and outlet temperatures, fluid temperature profile along pipe length and pressure drop inside the tube are calculated and analyzed. The oval shape dimensions are adapted, then a comparison between the circle and the oval cross sections is carried out; four different cases are investigated. As a result, the CFD results show a good agreement with their experimental pairs via Thermal Response Test (TRT) test which was done during September 2017 by our laboratory members. Besides, the results show that the oval shape enhances the heat transfer process and achieves the lowest borehole thermal resistance of 0.125 m K/W, also, it decreases the thermal resistance by 18.47% compared with the circular one. Besides, the oval shape shows a pressure drop of 32% less than the circular tube. Consequently, the oval shape could enhance the coefficient of performance (COP) of GSHP, decrease the borehole length, decrease the operating pressure and cut down initial and operating costs. Also, it fit easily inside tight borehole, so it is preferable in high-densely urban areas.
机译:为了提高地源热泵系统(GSHP)的性能,提出了一种新型的椭圆形U形管换热器(BHX)。为了研究带有椭圆形U型管的钻孔热交换器(BHX)的热工液压性能:在ANSYS FLUENT环境下进行了三维,对称和非稳态多物理场计算流体动力学(CFD)模拟。模拟了共轭传热和流体流动。计算并分析了钻孔热阻,流体入口和出口温度,沿管道长度的流体温度分布以及管道内的压降。调整椭圆形的尺寸,然后对圆形和椭圆形的横截面进行比较。研究了四种不同的情况。结果,通过我们的实验室成员在2017年9月进行的热响应测试(TRT)测试,CFD结果与他们的实验对显示出良好的一致性。结果表明,椭圆形增强了传热过程,实现了最低的井眼热阻0.125 m K / W,与圆形相比,其热阻降低了18.47%。此外,椭圆形的压力降比圆形管小32%。因此,椭圆形可以提高GSHP的性能系数(COP),减小井眼长度,降低操作压力并降低初始和操作成本。而且,它很容易安装在狭窄的井眼中,因此在高密度的城市地区是首选。

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