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Analytical evaluation of the dynamic distress of rigid fixed-base retaining systems

机译:刚性固定基座固位系统动力应力的分析评估

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摘要

The current study proposes an analytical closed-form solution for the dynamic distress of rigid fixed-base retaining systems aiming at evaluating the main assumptions and limitations of the pertinent available elasticity-based methods. The new solution is actually an extension of the well-known model of Wood and is capable of evaluating the dynamic distress of either a single or a pair of rigid fixed-base walls interacting with each other, in the case of harmonic base loading. Wall distress is mainly evaluated in terms of dynamic earth pressures, shear forces and bending moments, while the original concept of a "distress spectrum" is introduced as a potential new tool for the seismic design of retaining structures. Distress and wall deformation are interrelated in a number of three-dimensional graphs, where dynamic interaction phenomena are evident. Finally, given the rigorous nature of the new solution, its results verify qualitatively and quantitatively the negligible amplitude of the computational errors of the approximate elasticity-based solutions proposed in the literature.
机译:当前的研究为刚性固定基座固位系统的动态遇险提出了一种解析的闭式解,旨在评估相关的基于弹性的方法的主要假设和局限性。新的解决方案实际上是对著名的Wood模型的扩展,并且能够在谐波基础荷载作用下评估相互作用的单个或一对刚性固定基墙的动态应力。墙的遇险主要是根据动土压力,剪力和弯矩来评估的,而“遇险谱”的原始概念是作为挡土结构抗震设计的一种潜在的新工具而引入的。在许多三维图中,遇险和墙体变形是相互关联的,其中动态相互作用现象很明显。最后,鉴于新解的严格性质,其结果定性和定量地验证了文献中提出的基于近似弹性的解的计算误差的幅度可忽略。

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