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Seismic passive pressures of earth structures by nonlinear optimization

机译:土体结构的地震被动压力非线性优化

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Conventional seismic passive pressures of earth structures are based on a linear failure criterion in earthquake zones. However, experimental evidence shows that the strength envelopes are nonlinear over a wide range of normal stresses. In this paper, the analytical expressions of seismic passive pressures acting on inclined rigid walls are derived with nonlinear failure criterion. Quasi-static representation of earthquake effects using a seismic coefficient is adopted for seismic estimations. Instead of using the nonlinear criterion, a linear failure criterion, which is tangential to the nonlinear criterion, is used to formulate the seismic passive pressure problems as nonlinear programming problems. Analytical results are presented and compared with the previously published solutions using numerical technique. The influences of the parameters in the nonlinear failure criterion on seismic pressures and failure mechanisms are discussed.
机译:土体结构的常规地震被动压力基于地震带中的线性破坏准则。但是,实验证据表明,强度包络线在很大的法向应力范围内都是非线性的。本文利用非线性破坏准则推导了作用在倾斜刚性墙上的地震被动压力的解析表达式。地震估计采用地震系数的准静态表示进行地震估计。代替使用非线性准则,与非线性准则相切的线性破坏准则被用来将地震被动压力问题表述为非线性规划问题。给出了分析结果,并与使用数值技术的先前发布的解决方案进行了比较。讨论了非线性破坏准则中参数对地震压力和破坏机理的影响。

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