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An in situ thermal response test for borehole heat exchangers of the ground-coupled heat pump system

机译:地面耦合热泵系统的钻孔换热器的现场热响应测试

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Thermal response tests (TRTs) are crucial for the estimation of the ground thermal properties and thermal performance of the borehole heat exchanger (BHE) of the ground-coupled heat pump (GCHP) system. In this article, a TRT apparatus was designed and built to measure the temperature response of inlet and outlet sections of BHE in the test borehole, the apparatus can effectively operate under both constant heating flux modes and heat injection and extraction modes with a constant inlet temperature.A TRT for a project of GCHP located in the Jiangsu province of China was carried out by the experimental apparatus. Based on the experimental data, the heat transfer performances of BHE under heating and cooling modes were evaluated, and the ground thermal properties, which include the ground thermal conductivity, ground volumetric specific heat, borehole thermal resistance and effective soil thermal resistance, were determined by the line source model. The results indicate that the experimental device and analysis model proposed in this article can be effectively applied to estimate the ground thermal properties and thermal performance of BHE. During the process of thermal response of ground, the fluid temperatures vary acutely at the start-stage of 8 h, and then tend to be a steady state after 40 h. The test data during the start-stage should be discarded for improving the estimation accuracy of ground thermal properties. At the same time, the effective soil thermal resistance increases continuously with time and a steady-state valuewould be reached after the start-time, and this steady-state thermal resistance can be used to evaluate the required length of BHE. In addition, the heat transfer rate of the BHE under different operating conditions can be used for the further evaluation on long-term operation performance of GCHPs.
机译:热响应测试(TRT)对于估算地面耦合热泵(GCHP)系统的井下热交换器(BHE)的地面热特性和热性能至关重要。在本文中,设计并制造了一种TRT设备,以测量测试孔中BHE入口和出口部分的温度响应,该设备可以在恒定入口通量的恒定热通量模式和热注入和抽取模式下有效运行实验装置对位于中国江苏省的GCHP项目进行了TRT。根据实验数据,评估了BHE在加热和冷却模式下的传热性能,并通过以下方法确定了地热性质,包括地热导率,地体积比热,井眼热阻和有效土壤热阻。线源模型。结果表明,本文提出的实验装置和分析模型可以有效地用于估算BHE的地热性质和热性能。在地面的热响应过程中,流体温度在8小时的开始阶段急剧变化,然后在40小时后趋于稳定。在开始阶段的测试数据应被丢弃,以提高地面热属性的估计精度。同时,有效土壤热阻随时间连续增加,开始后要达到稳态值,该稳态热阻可用于评估所需的BHE长度。此外,BHE在不同运行条件下的传热率可用于进一步评估GCHP的长期运行性能。

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