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Field Test and Numerical Simulation on Heat Transfer Performance of Coaxial Borehole Heat Exchanger

机译:同轴钻孔热交换器传热性能的现场试验与数值模拟

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摘要

Ground thermal properties are the design basis of ground source heat pumps (GSHP). However, effective ground thermal properties cannot be obtained through the traditional thermal response test (TRT) method when it is used in the coaxial borehole heat exchanger (CBHE). In this paper, an improved TRT (ITRT) method for CBHE is proposed, and the field ITRT, based on the actual project, is carried out. The high accuracy of the new method is verified by laboratory experiments. Based on the results of the ITRT and laboratory experiment, the 3D numerical model for CBHE is established, in which the flow directions, sensitivity analysis of heat transfer characteristics, and optimization of circulation flow rate are studied, respectively. The results show that CBHE should adopt the anulus-in direction under the cooling condition, and the center-in direction under the heating condition. The influence of inlet temperature and flow rate on heat transfer rate is more significant than that of the backfill grout material, thermal conductivity of the inner pipe, and borehole depth. The circulating flow rate of CBHE between 0.3 m/s and 0.4 m/s can lead to better performance for the system.
机译:地面热性质是地源热泵(GSHP)的设计基础。然而,当它在同轴钻孔热交换器(CBHE)中使用时,不能通过传统的热响应试验(TRT)方法获得有效的地面热性能。本文提出了一种改进的CBHE(ITRT)方法,并进行了基于实际项目的字段ITRT。通过实验室实验验证了新方法的高精度。基于ITRT和实验室实验的结果,建立了CBHE的3D数值模型,其中分别研究了流动方向,传热特性的灵敏度分析和循环流量的优化。结果表明,CBHE应在加热条件下采用冷却条件下的余地方向,并在加热条件下方向。入口温度和流速对传热速率的影响比回填灌浆材料,内管的导热系数和钻孔深度的影响更大。 CBHE的循环流速在0.3m / s和0.4m / s之间会导致系统的性能更好。

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