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Global sensitivity analysis of certain and uncertain factors for a circular tunnel under seismic action

机译:地震作用下圆形隧道某些不确定因素的整体敏感性分析

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摘要

There are many certain and uncertain design factors which have unrevealed rational effects on the generation of tensile damage and the stability of the circular tunnels during seismic actions. In this research paper, we have dedicated three certain and four uncertain design factors to quantify their rational effects using numerical simulations and the Sobol's sensitivity indices. Main effects and interaction effects between the design factors have been determined supporting on variance-based global sensitivity analysis. The results detected that the concrete modulus of elasticity for the tunnel lining has the greatest effect on the tensile damage generation in the tunnel lining during the seismic action. In the other direction, the interactions between the concrete density and both of concrete modulus of elasticity and tunnel diameter have appreciable effects on the tensile damage. Furthermore, the tunnel diameter has the deciding effect on the stability of the tunnel structure. While the interaction between the tunnel diameter and concrete density has appreciable effect on the stability process. It is worthy to mention that Sobol's sensitivity indices manifested strong efficiency in detecting the roles of each design factor in cooperation with the numerical simulations explaining the responses of the circular tunnel during seismic actions.
机译:有许多确定的和不确定的设计因素,它们对地震作用期间的张拉损伤的产生和圆形隧道的稳定性没有揭示出合理的影响。在这篇研究论文中,我们专门使用了三个确定的和四个不确定的设计因素,以使用数值模拟和Sobol灵敏度指数来量化其合理影响。确定了设计因素之间的主要影响和相互作用影响,以支持基于方差的全局敏感性分析。结果表明,隧道衬砌的混凝土弹性模量对地震作用期间隧道衬砌中拉伸损伤的产生影响最大。在另一个方向上,混凝土密度与混凝土弹性模量和隧道直径之间的相互作用对拉伸损伤具有明显的影响。此外,隧道直径对隧道结构的稳定性具有决定性作用。隧道直径与混凝土密度之间的相互作用对稳定性过程有明显影响。值得一提的是,Sobol的灵敏度指标与解释圆形隧道在地震作用下的响应的数值模拟相结合,在检测每个设计因素的作用方面表现出很高的效率。

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