费康, 洪伟, 钱建, et al. Long-term Performance of Energy Piles Subjected to Cyclic Thermal Loading in Sand[J]. 2017, 37(4): 525-531. DOI: 10.13409/j.cnki.jdpme.2017.04.003.
循环温度作用下砂土地基能量桩的长期工作特性
摘要
为了完善能量桩的设计
采用可反映土体循环力学特性的边界面模型
基于分步耦合方法
对热力耦合作用下干砂地基中能量桩单桩的长期工作特性进行了研究
分析了温度循环对桩体位移、桩侧阻力和承载力安全储备的影响。结果表明
温度循环导致桩顶出现沉降的累积
累积沉降随静力工作荷载水平和温度循环周数的增加而增加。温度位移零点位置决定了桩-土相对位移的模式
影响了桩侧阻力的分布及发挥过程。由于土体的剪缩
桩身上部出现负摩擦
下部则存在明显的侧阻力弱化现象
其是承载力减小的主要原因。
Abstract
In order to improve the design of the energy pile
the long-term performance of a freehead energy pile in dry sand was analyzed by using a sequentially coupled thermal-stress analysis approach. In the analysis
the bounding surface model was used to describe the mechanical behavior of sands under cyclic loadings. The effects of the seasonally cyclic thermal loading on the pile displacement
the shaft friction
and the factor of safety were studied in detail. It was found the temperature cycles leaded to the accumulation of the settlement at the pile head
and the accumulated settlement increased with the static working load level and the temperature cycle number. The location of the null point controlled the relative displacement pattern between the pile and the soil
which affected the distribution and the development of the shaft friction. Due to the volumetric contraction of sands
the negative friction was induced at the upper part of the pile
and the shaft friction at the lower part of the pile was reduced significantly. It was the main reason for the decrease in the pile bearing capacity.
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