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A Numerical Study and Simulation of Vertical Bearing Performance of Step-Tapered Pile Under Vertical and Horizontal Loads

机译:垂直和水平载荷下阶梯桩垂直轴承性能的数值研究与仿真

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摘要

In the present work, a numerical simulation of vertical bearing performance of step-tapered pile was carried out. The effects of pile geometry and the soil profile on the vertical bearing capacity of the step-tapered pile under vertical and horizontal loads were studied. Numerical results indicate that increasing diameter (D) of the enlarged upper part of step-tapered pile can increase its vertical ultimate bearing capacity when the other geometric parameters remain unchanged. When the distance (L) between the upper enlarged surface and the top of step-tapered pile is within a threshold value, the increase in the distance (L) can improve the vertical ultimate bearing capacity of the pile. Also, increasing the length (H) of the enlarged upper part of step-tapered pile can significantly bring up the vertical ultimate bearing capacity of the pile. Strengthening the soil around the step-tapered pile and at the pile tip can increase the ultimate bearing capacity of the pile. The distribution of axial force changes abruptly at the lower end of the enlarged part of the step-tapered pile in saturated clay, silty clay and sandy soil, and the axis force at the lower end of the enlarged part is greatly attenuated.
机译:在本作工作中,进行了阶梯桩垂直轴承性能的数值模拟。研究了桩几何形状和土壤轮廓对垂直和水平载荷下阶梯式桩垂直承载力的影响。数值结果表明,当其他几何参数保持不变时,阶梯式桩的扩大上部的增加的直径(d)可以增加其垂直极性承载力。当上放大表面和阶梯桩的顶部之间的距离(L)在阈值内时,距离(L)的增加可以提高桩的垂直极性承载力。而且,增加阶梯式桩的扩大上部的长度(H)可以显着地提高桩的垂直极性承载力。加强阶梯锥形桩周围的土壤,桩尖端可以提高桩的最终承载力。轴向力的分布突然在饱和粘土,粉质粘土和砂土中的阶梯式桩的扩大部分的下端变化,并且扩大部的下端处的轴力大大衰减。

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