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Evaluation of thermal response and performance of PHC energy pile: Field experiments and numerical simulation

机译:PHC能量桩的热响应和性能评估:现场试验和数值模拟

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摘要

This paper presents an experimental and numerical study on evaluation of thermal response and performance of prototype precast-high strength concrete (PHC) energy pile. Short-term field thermal response tests (TRTs) were conducted for the PHC energy piles installed in partially saturated weathered granite soil deposit, in which two types of heat exchangers were considered: W and 3U-shaped heat exchangers. The TRTs were successfully simulated by three-dimensional finite element analyses employing quasi-steady-state convective heat transfer boundary condition. The numerical model was applied to simulate 3-day TRTs, and the simulation results were used for assessing effective thermal conductivity and thermal resistance. Besides, continuous and intermittent operation simulations of the energy piles were performed, and for the results of performance analyses, discussion was made to evaluate energy efficiency of the prototype PHC piles.
机译:本文提供了对原型预制高强混凝土(PHC)能量桩的热响应和性能进行评估的实验和数值研究。对安装在部分饱和风化花岗岩土壤中的PHC能量桩进行了短期现场热响应测试(TRT),其中考虑了两种类型的热交换器:W型和3U形热交换器。利用准稳态对流换热边界条件,通过三维有限元分析成功地模拟了TRT。将数值模型用于模拟3天的TRT,并将模拟结果用于评估有效导热率和热阻。此外,还进行了能量桩的连续和间歇运行模拟,并对性能分析的结果进行了讨论,以评估原型PHC桩的能量效率。

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