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Influence of excavation beneath existing building on dynamic impedances of underpinning pile considering stress history

机译:考虑压力历史的现有建筑物下方挖掘对现状桩动态阻抗的影响

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The addition of basement beneath existing building changes the underpinning pile from fully embedded to partially embedded, and thus influences the mechanical properties of pile. In the past, scholars paid attention to the change in the bearing capacity of pile but neglected the difference of dynamic characteristics before and after construction, and potential changes in stress history of remaining soil are also ignored. In this work, a calculation model is built to investigate the influence of excavation on dynamic impedance of underpinning pile considering the effect of stress history. The soil is simulated by the dynamic Winkler foundation, which is characterized by springs and dashpots. Properties of remaining soil after excavation are updated to consider the effect of stress history through modifying the initial shear modulus and related parameters. The dynamic impedance of pile after excavation is obtained based on the transfer matrix method. The parameter study is carried out to evaluate the dynamic impedance with various excavation depths, considering or ignoring stress history effect, and various element lengths. The results show that shallow soil plays an important role to dynamic impedance, and overestimated dynamic impedance is obtained if not considering the stress history effect.
机译:在现有建筑物下方的添加地下室将支撑桩完全嵌入到部分嵌入中改变为部分嵌入,从而影响桩的机械性能。在过去,学者注意到桩承载能力的变化,但忽略了施工前后动态特征的差异,并且剩余土壤的压力历史潜在变化也被忽略。在这项工作中,建立了一种计算模型,以研究挖掘对考虑应力历史效果的支承对支撑桩的动态阻抗的影响。土壤采用动态Winkler基金会模拟,其特征在于弹簧和小毛皮。脱离后剩余土壤的性质被更新,以考虑应力历史通过修改初始剪切模量和相关参数的影响。基于传递矩阵法获得挖掘后桩的动态阻抗。进行参数研究以评估各种挖掘深度的动态阻抗,考虑或忽略应力历史效果以及各种元件长度。结果表明,浅层土壤对动态阻抗发挥着重要作用,如果不考虑应力历史效应,则获得高估的动态阻抗。

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