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Thermally induced mechanical response of energy piles in axially loaded pile groups

机译:轴向荷载群中能量桩的热致力学响应

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摘要

In this study, the thermo-mechanical behavior of the energy piles in a pile group is investigated by coupled multi-physical 3D finite element analyses. The emphasis is on quantifying the changes in axial load and settlement of individual energy piles in a group subjected to combined thermo-mechanical loadings. Experimental data available in literature are used to validate the model calculation. The major influencing factors, i.e., pile spacing, pile arrangement, soil type, and end bearing condition on the energy pile response are analyzed. Based on the results obtained, it is found that the conventional thermal load causes little change in mechanical behavior of energy piles, which does not induce geotechnical failure at working load level. The observations from this study are beneficial for understanding the mechanical behavior of axially-loaded energy piles under thermal loading.
机译:在这项研究中,通过耦合多物理3D有限元分析研究了桩组中能量桩的热力学行为。重点是量化承受组合热机械载荷的一组中单个能量堆的轴向载荷和沉降的变化。文献中提供的实验数据用于验证模型计算。分析了影响桩桩间距的主要影响因素,即桩间距,桩布置,土壤类型和端承条件。根据获得的结果,发现常规热负荷几乎不会改变能量桩的机械性能,在工作负荷水平下不会引起岩土工程故障。这项研究的观察结果有助于理解热负荷下轴向加载的能量桩的力学性能。

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