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Probabilistic stability analysis of geo-structures in anisotropic clayey soils with spatial variability

机译:空间变异性各向异性粘土土壤结构稳态稳定性分析

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Theoretical solutions of geotechnical engineering problems are generally based on simplifying assumptions about soil homogeneity and isotropy. In reality, soil masses are usually both anisotropic and heterogeneous in situ and thus, the effects of soil deposition orientation and stratification should be taken into account. In this context, the present paper describes a contribution towards a general probabilistic limit analysis of geotechnical stability problems dealing with clays having inherent spatial variability and anisotropy of the undrained shear strength simultaneously. The static lower-bound theorem in conjunction with the finite element method and mathematical programming are utilized to provide limit analysis approach. Anisotropy of clay is imposed by the application of an iterative scheme and, its spatial variability has been considered via the application of random field theory. Based on the proposed method, the bearing capacity of a strip footing and the stability of a square tunnel have been investigated and the effects of simultaneous consideration of non-homogeneity and anisotropy of soil?s shear strength on collapse load have been studied.
机译:岩土工程问题的理论解决方案通常基于简化有关土壤均匀性和各向同性的假设。在现实中,土壤质量通常都是各向异性和原位异质,因此,土壤沉积取向和分层的作用,应考虑在内。在此背景下,本论文描述朝着处理同时具有不排水剪切强度固有空间变异和各向异性粘土岩土稳定性问题一般的概率极限分析了贡献。在用有限元方法和数学编程一起使用时的静态绑定下定理被利用来提供限制分析的方法。粘土的各向异性是迭代法的应用和实行,其空间变异已经通过随机场理论的应用考虑。根据所提出的方法,材料地基的承载能力和正方形隧道已经研究的稳定性和非均匀性的同时考虑的影响,并各向异性土壤的?的崩溃负载剪切强度进行了研究。

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