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Structural stability and reliability of the underground steel tanks with the Stochastic Finite Element Method

机译:随机有限元法分析地下钢罐的结构稳定性和可靠性

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The main aim is to present the Stochastic perturbation-based Finite Element Method analysis of the stability and also reliability of the underground steel vertical cylindrical structure of the waste container. This thin walled structure with constant cross-sectional thickness is loaded with subsoil pressure, snow and surface as well as dead loads and we look for the critical pressure value, when stability loss would be observed; it is done to design in the probabilistic context the safety margins. We employ to achieve this goal the Finite Element Method program ROBOT and computer algebra system MAPLE to get the analytical polynomial functions relating the critical pressure and random design parameters shell thickness and its Young's modulus as well as to provide all probabilistic calculations. We determine up to the fourth order probabilistic characteristics of the structural response assuming that the input random parameters have Gaussian probability functions truncated to the positive values only. Finally, the reliability index is calculated according to the first order method using a difference in-between critical pressure and maximum tensile stress determined in this structure to verify its durability according to the demands of EU engineering codes. (C) 2014 Politechnika Wroclawska. Published by Elsevier Urban & Partner Sp. z.o.o. All rights reserved.
机译:主要目的是介绍基于随机扰动的有限元方法,分析废物容器地下钢结构垂直圆柱结构的稳定性和可靠性。这种具有恒定横截面厚度的薄壁结构承受了地下土压力,雪和表面以及静载荷的作用,当观察到稳定性损失时,我们寻找临界压力值。这样做是为了在概率环境中设计安全裕度。我们使用有限元方法程序ROBOT和计算机代数系统MAPLE来实现此目标,以获得与临界压力和随机设计参数壳厚度及其杨氏模量相关的解析多项式函数,并提供所有概率计算。假设输入的随机参数具有仅被截断为正值的高斯概率函数,我们最多可以确定结构响应的四阶概率特征。最后,根据一阶方法,使用该结构中确定的临界压力和最大拉伸应力之间的差值来计算可靠性指标,以根据欧盟工程规范的要求验证其耐用性。 (C)2014 Politechnika Wroclawska。由Elsevier Urban&Partner Sp。动物园。版权所有。

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