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Effect of raft and pile stiffness on seismic response of soil-piled raft-structure system

机译:筏板和桩刚度对土桩筏结构体系地震响应的影响

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摘要

Soil-pile raft-structure interaction is recognized as a significant phenomenon which influences the seismic behaviour of structures. Soil structure interaction (SSI) has been extensively used to analyze the response of superstructure and piled raft through various modelling and analysis techniques. Major drawback of previous study is that overall interaction among entire soil-pile raft-superstructure system considering highlighting the change in design forces of various components in structure has not been explicitly addressed. A recent study addressed this issue in a broad sense, exhibiting the possibility of increase in pile shear due to SSI. However, in this context, relative stiffness of raft and that of pile with respect to soil and length of pile plays an important role in regulating this effect. In this paper, effect of relative stiffness of piled raft and soil along with other parameters is studied using a simplified model incorporating pile-soil raft and superstructure interaction in very soft, soft and moderately stiff soil. It is observed that pile head shear may significantly increase if the relative stiffness of raft and pile increases and furthermore stiffer pile group has a stronger effect. Outcome of this study may provide insight towards the rational seismic design of piles.
机译:土-筏-结构相互作用被认为是影响结构抗震性能的重要现象。通过各种建模和分析技术,土壤结构相互作用(SSI)已被广泛用于分析上部结构和桩筏的响应。先前研究的主要缺点是,未考虑到突出显示结构中各个组件的设计力变化的整个土桩-筏-上层建筑系统之间的整体相互作用。最近的一项研究从广义上解决了这个问题,显示出由于SSI导致桩剪增加的可能性。但是,在这种情况下,相对于土壤和桩长,木筏和桩的相对刚度在调节这种作用中起着重要的作用。在本文中,使用简化的模型,在非常软,软和中等刚度的土壤中,结合桩-土筏和上部结构相互作用,研究了桩筏和土的相对刚度以及其他参数的影响。可以观察到,如果筏和桩的相对刚度增加,桩头的剪切力可能会显着增加,而且桩群越刚性,其作用越强。这项研究的结果可能会为桩的合理抗震设计提供见识。

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