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End Bearing Capacity Of Drilled Shafts In Sand: A Numerical Approach

机译:砂井中钻杆的端部承载力:一种数值方法

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摘要

In this paper, a modeling procedure is carried out to numerically analyze the end bearing capacity of drilled shafts in sand. The Mohr-Coulomb elastic plastic constitutive law with stress dependent elastic parameters is used for all numerical analyses performed in this study. The numerical results are compared with the available experimental equations. It is seen that numerical results are in good agreement with experimental equations. The variation of the end bearing capacity of drilled shafts versus embedment depth is also studied. Numerical results show that with increase in pile embedment depth, the end bearing capacity increases. However, the rate of increase becomes smaller as the pile embedment depth increases. Also, numerical analyses show that, for equal settlement, the end bearing decreases with increase in the pile diameter. Finally, a sensitivity analysis is performed to obtain the separate effect of each sand parameter on the end bearing capacity of drilled shafts, and the parameters that are most influential are identified.
机译:在本文中,进行了建模过程,以数值分析砂中钻杆的最终承载力。具有应力依赖弹性参数的Mohr-Coulomb弹性塑性本构律用于本研究中进行的所有数值分析。将数值结果与可用的实验方程进行比较。可以看出,数值结果与实验方程非常吻合。还研究了钻孔轴的最终承载力随埋深的变化。数值结果表明,随着桩埋深的增加,桩端承载力增大。但是,随着桩埋深的增加,增加率变小。同样,数值分析表明,对于均等沉降,端承随桩直径的增加而减小。最后,进行敏感性分析,以获得每个砂参数对钻探轴的最终承载能力的单独影响,并确定影响最大的参数。

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