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Effect of environmental thermal disturbance on effective thermal conductivity of ground source heat pump system

机译:环境热干扰对地源热泵系统有效导热性的影响

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Ground thermal conductivity, As, is one of the important design factors for the ground source heat pump system. This study aimed to investigate the effect of environmental thermal disturbance on the As estimation during the thermal response test (TRT), which is interpreted by the infinite line source model. For this purpose, a detailed numerical model considering the heat exchange between the circulating fluid inside the above-ground pipe of TRT rig and the outdoor environment in two representative seasons was developed. The numerical model was compared with the model with the adiabatic boundary assigned to the outer surface of above-ground pipe to evaluate the fluctuations of As on account of the atmospheric disturbance. The parametric and sensitivity analyses were carried out to quantify the impacts of TRT seasons and above-ground pipe parameters including the surface absorptivity, thickness, and thermal conductivity of insulation material, and the length of the above-ground pipe on the As and corresponding design borehole length. An approach of prolonging the TRT duration was proposed to impair the disturbance when the pipe is not insulated. Results show that As fluctuates strongly and is largely misestimated considering the atmospheric disturbance, especially when TRT duration is limited. The As varies widely as the length of above-ground pipe, insulation surface absorptivity, and insulation thermal conductivity increase, insulation thickness decreases, and TRT starts in summer. The pipe length is the most significant factor to the uncertainty of As. The test time is recommended to last at least 3 days in summer and 3.6 days in winter when the pipe is not wrapped by a layer of insulation material. This study quantitatively assesses the impacts of environmental thermal disturbance during the TRT and gives guidance to carry out TRT properly.
机译:接地导热率,如,是地源热泵系统的重要设计因素之一。本研究旨在研究环境热干扰对热响应试验(TRT)的估计的影响,该试验(TRT)是由无限线源模型解释的。为此目的,显着考虑TRT钻机上面的循环流体与两个代表季节的户外环境之间的热交换的详细数值模型。将数值模型与分配给地上管外外表面的绝热边界进行比较,以评估诸如大气扰动的波动。进行参数和灵敏度分析以量化TRT季节和地上管道参数的影响,包括绝缘材料的表面吸收率,厚度和导热率,以及上面的地上管道的长度和相应的设计钻孔长度。提出了一种延长TRT持续时间的方法,以损害当管道未绝缘时的干扰。结果表明,考虑到大气干扰,尤其是当TRT持续时间有限时大大萎缩。随着地上管道的长度,绝缘表面吸收性和绝缘导热率增加,绝缘厚度降低,而TRT在夏季开始。管长是对不确定性的最重要因素。当管道未被一层绝缘材料包裹时,建议在夏季和3.6天内持续至少3天的测试时间。本研究定量评估了TRT期间环境热干扰的影响,并提供了正确的TRT指导。

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