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Computational 3D finite element analyses of model passive piles

机译:模型被动桩的计算3D有限元分析

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In this study, 3D finite element analysis is carried out to investigate the behavior of single pile and a group of free-head piles subjected to lateral soil movements. The mobilization mechanism of resistance from passive pile groups is discussed from the standpoint of the arching effect. Lateral pressure distribu_tions along piles that vary with pile spacing, interface roughness and relative displacement between the pile and soil are determined. Computational simulations are adopted to consider the effect of pile spacing and the variation of internal friction angle on the lateral response of a pile in a row in cohesionless soil. It is observed that the loads acting on the piles increase with increasing of the pile spacing due to soil arch_ing which is not effective after larger spacing than 8d. It is also revealed that the acting loads arrive at the maximum value and remain constant when the relative displacement exceeds 1.2 fold pile diameter.
机译:在这项研究中,进行了3​​D有限元分析,以研究单桩和一组自由桩在横向土壤运动中的行为。从拱效应的角度探讨了被动桩抗力的动员机理。确定沿桩的横向压力分布,该分布随桩间距,界面粗糙度和桩与土壤之间的相对位移而变化。采用计算模拟来考虑桩间距和内摩擦角的变化对无粘性土中连续桩的横向响应的影响。可以看出,由于土拱效应,作用在桩上的载荷随着桩间距的增加而增加,而在大于8d的间距之后,土拱效应无效。还显示出,当相对位移超过桩直径的1.2倍时,作用载荷达到最大值并保持恒定。

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