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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Reliability-Based Analysis and Design of Strip Footings against Bearing Capacity Failure
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Reliability-Based Analysis and Design of Strip Footings against Bearing Capacity Failure

机译:基于承载力失效的带状基础的可靠性分析与设计

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摘要

This paper presents a reliability-based approach for the analysis and design of a shallow strip footing subjected to a vertical load with or without pseudostatic seismic loading. Only the punching failure mode of the ultimate limit state is studied. The deterministic models are based on the upper-bound method of the limit analysis theory. The random variables used are the soil shear strength parameters and the horizontal seismic coefficient. The Hasofer-Lind reliability index and the failure probability are determined. A sensitivity analysis is also performed. The influence of the applied footing load on the reliability index and the corresponding design point is presented and discussed. It was shown that the negative correlation between the soil shear strength parameters highly increases the reliability of the foundation and that the failure probability is highly influenced by the coefficient of variation of the angle of internal friction of the soil and the horizontal seismic coefficient. For design, an iterative procedure is performed to determine the breadth of the footing for a target failure probability.
机译:本文提出了一种基于可靠性的方法,用于浅层带状基础在竖向荷载(有或没有伪静力地震荷载)下的分析和设计。仅研究极限极限状态的冲压失败模式。确定性模型基于极限分析理论的上限方法。使用的随机变量是土壤抗剪强度参数和水平地震系数。确定了Hasofer-Lind可靠性指标和失效概率。还执行灵敏度分析。提出并讨论了施加的基础载荷对可靠性指标和相应设计点的影响。结果表明,土抗剪强度参数之间的负相关性极大地提高了地基的可靠性,并且土的内摩擦角的变化系数和水平地震系数对破坏概率的影响很大。对于设计,执行迭代过程以确定目标失败概率的基础范围。

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