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Laboratory-scale pull-out tests on a geothermal energy pile in dry sand subjected to heating cycles

机译:对热循环干燥沙子地热能桩的实验室规模拉出试验

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Ground source heat pumps coupled with energy piles operate intermittently, subjecting the piles to temperature cycles throughout their lifetime. The research presented in this paper focuses on studying the thermomechanical behavior of energy piles subjected to heating cycles. Laboratory model tests were performed at the soil-structure interaction (SSI) facility at Lehigh University. A fully instrumented model energy pile, embedded in dry sand, was subjected to different number of heating cycles followed by axial pull-out loading. Baseline (room temperature), five heating cycles (5HC), and 100 heating cycles (100HC) tests are reported in this paper. The soil was instrumented with temperature sensors and pressure sensors, while the pile was instrumented with temperature sensors, strain gauges, and pressure sensors. The test results showed that the peak pull-out loads for the baseline, 5HC, and 100HC were 2794 N, 3633 N (30% higher than baseline), and 3559 N (27% higher than baseline), respectively. It was also found that subjecting the pile to large number of daily heating cycles induced small degradation in the load transfer or the peak pull-out load in dry sand.
机译:地源热泵与能量堆耦合间歇运行,使能量堆在其整个使用寿命内经受温度循环。本文主要研究能量堆在加热循环下的热力行为。实验室模型试验在利海大学的土壤-结构相互作用(SSI)设施进行。嵌入干砂中的全仪器化模型能量桩承受不同次数的加热循环,然后承受轴向拔出载荷。本文报告了基线(室温)、五次加热循环(5HC)和100次加热循环(100HC)试验。土壤装有温度传感器和压力传感器,而桩装有温度传感器、应变计和压力传感器。试验结果表明,基线、5HC和100HC的峰值拉拔载荷分别为2794 N、3633 N(比基线高30%)和3559 N(比基线高27%)。还发现,将桩体置于大量每日加热循环下,会导致荷载传递或干砂中的峰值拔出荷载出现轻微退化。

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