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首页> 外文期刊>KSCE journal of civil engineering >An Improved CPTu-based Method to Estimate Jacked Pile Bearing Capacity and Its Reliability Assessment
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An Improved CPTu-based Method to Estimate Jacked Pile Bearing Capacity and Its Reliability Assessment

机译:一种改进的基于CPTU的方法来估计钝角桩承载力及其可靠性评估

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摘要

This paper presents an improved method for predicting the bearing capacity of single jacked pile based on piezocone penetration test (CPTu) data which contain tip resistance (q(t)), side friction (f(s)) and excess dynamic pore water pressure (u(2)). Firstly, the average value of q(t) was determined to calculate the pile unit base resistance according to the influence zone of the logarithmic spiral concerning the effect of soil types. Secondly, f(s) and u(2) were used to calculate the pile unit shaft resistance considering the effect of friction fatigue. The pile jacking force was obtained in terms of unit base resistance and unit shaft resistance. The ultimate bearing capacity was finally determined using pile jacking force multiplied by a force ratio denoted as R-f. The ultimate bearing capacities calculated for two case projects show a good agreement with the measured results, which indicates that the proposed method is feasible and effective. Reliability assessment was carried out on the proposed method and other five estimation methods with respect to the reliability index obtained by advanced first-order second-moment (AFOSM) method. Comparison result showed that the method proposed in this study has a higher reliability index over other five existing methods. Therefore, the proposed method can be used as a reliable alternative to predict the bearing capacity in the engineering practice of jacked pile foundation.
机译:本文介绍了一种改进的方法,用于基于压区渗透试验(CPTU)数据,该方法提高了一种含有尖端电阻(Q(T)),侧摩擦(F(S))和多余动态孔隙水压( U(2))。首先,确定Q(t)的平均值根据有关土壤类型效果的对数螺旋的影响区来计算桩单元基座电阻。其次,考虑到摩擦疲劳的效果,使用F(S)和U(2)来计算桩单元轴阻力。在单位基础电阻和单位轴电阻方面获得了桩起动力。最终使用堆叠力乘以作为R-F的力比确定的最终承载能力。两个案例项目计算的最终承载能力与测量结果显示出良好的一致性,这表明所提出的方法是可行和有效的。在提出的方法和其他五个估算方法上进行可靠性评估,关于通过高级一阶二阶(AFOSM)方法获得的可靠性指数。比较结果表明,该研究中提出的方法具有更高的可靠性指数,而其他五种现有方法具有更高的可靠性指标。因此,所提出的方法可以用作可靠的替代方案,以预测千斤顶桩基工程实践中的承载力。

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