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Effect of non-liquefiable layer on bearing capacity and settlement of shallow foundations

机译:非液化层对浅层基础承载力和沉降的影响

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摘要

Liquefaction during earthquake excitations is one of the most important causes of damage imposed on structures. This phenomenon in saturated loose sand deposits increases water pressure and reduces stiffness. An increase in pore-water pressure during excitations can reduce soil shear strength, and consequently, lead to a decrease of the soil bearing capacity and an increase of settlement. In this study, using physical modelling, the effect of the presence of a non-liquefiable layer with different thicknesses on the improvement of the bearing capacity and settlement of shallow foundations has been investigated for both full and partial liquefaction cases. In these experiments, various constant excess pore-water pressure ratios are generated using the steady-state seepage. The tests are carried out in two different groups. The first group is designed for determining the effect of excess pore-water pressure generation on the bearing capacity; the second group is designed for assessing the effect of design safety factor on the settlement of shallow foundations located on non-liquefiable layers with different thicknesses. The presence of non-liquefiable layers causes considerable improvement in the bearing capacity and settlement of shallow foundations, and this issue may be considered in the engineering problems.
机译:地震激励期间的液化是在结构上施加的最重要原因之一。饱和松散的砂沉积物中这种现象增加了水压并减少了刚度。激发过程中的孔隙压力增加可以降低土壤剪切强度,从而导致土壤承载力的降低和沉降的增加。在该研究中,使用物理建模,对含有不同厚度的不液化层的效果已经研究了全部和部分液化案件的提高。在这些实验中,使用稳态渗流产生各种恒定过量的孔隙水压力比。测试是在两个不同的组中进行的。第一组设计用于确定孔隙水压力在承载能力上产生的影响;第二组旨在评估设计安全因素对位于具有不同厚度的非液化层的浅层基础的沉降效果。非液化层的存在导致浅层基础的承载力和沉降显着提高,并且可以在工程问题中考虑该问题。

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