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Reliability Analysis of Temperature Influence on Stresses in Rigid Pavement Made from Recycled Materials

机译:回收材料刚性路面压力对温度影响的可靠性分析

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摘要

Complex statistical and sensitivity analysis of principal stresses in concrete slabs of the real type of rigid pavement made from recycled materials is performed. The pavement is dominantly loaded by the temperature field acting on the upper and lower surface of concrete slabs. The computational model of the pavement is designed as a spatial (3D) model, is based on a nonlinear variant of the finite element method that respects the structural nonlinearity, enables to model different arrangement of joints, and the entire model can be loaded by thermal load. Four concrete slabs separated by transverse and longitudinal joints and the additional structural layers including soil to the depth of about 3 m are modeled. The thickness of individual layers, physical and mechanical properties of materials, characteristics of joints, and the temperature of the upper and lower surface of slabs are supposed to be random variables. The simulation technique Updated Latin Hypercube Sampling with 20 simulations is used for the reliability analysis. As results of statistical analysis, the estimates of basic statistics of the principal stresses σ1 and σ3 in 106 points on the upper and lower surface of slabs are obtained. For sensitivity analysis the sensitivity coefficient based on the Spearman rank correlation coefficient is used. As results of sensitivity analysis, the estimates of influence of random variability of individual input variables on the random variability of principal stresses σ1 and σ3 are obtained.
机译:进行了由再生材料制成的实际刚性路面的混凝土板中的主应力的复杂统计和敏感性分析。路面主要由作用在混凝土板的上表面和下表面上的温度场负荷。路面的计算模型被设计为空间(3D)模型,基于致力于结构非线性的有限元方法的非线性变体,使得能够模拟接头的不同布置,并且整个模型可以通过热量加载。加载。用横向和纵向接头分离的四个混凝土板和包括土壤的附加结构层,以深度为约3μm。所谓的各个层,材料的物理和机械性能,关节的特征以及板的上层和下表面的温度应该是随机变量。使用20个模拟更新拉丁超立体采样的仿真技术用于可靠性分析。随着统计分析的结果,获得了在板坯上下表面和下表面上106点的主应力σ1和σ3的基本统计的估计。为了灵敏度分析,使用了基于Spearman等级相关系数的灵敏度系数。随着灵敏度分析的结果,获得了各个输入变量对主应力σ1和σ3的随机变异性的随机变异影响的估计。

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