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Hybrid uncertainty analysis of functionally graded plates via multiple-imprecise-random-field modelling of uncertain material properties

机译:通过不确定的材料特性多种不精确的随机场建模功能梯度板的混合不确定度分析

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This paper presents the mixed probabilisticon-probabilistic uncertainty problem regarding the hybrid uncertainty propagation on physical model of functionally graded plates through dissimilarly uncertain characterisation of material properties in the presence of the multiple-imprecise-random-field modelling. The spectral stochastic finite element framework is extended to perform mixed uncertainty analysis of functionally graded material whereby the spatial variation of elastic modulus of the plate is uniquely characterised as the multiple-imprecise-random-field modelling more than a purely homogeneous random field. This characterisation has originated in heeding the construction of physical models and the significant influences of separately uncertain characteristics propagated on the physical model through different material ingredients are examined to make physical models more reliable and realistic. Mechanics and mathematics intrusive-formulations are then established to explicitly produce the uncertain-but-bounded statistical characteristics of responses, namely interval mean value, interval standard deviation. Bounded surfaces of statistical moments and bounding distribution functions are vividly depicted for demonstration. The feasibility and effectiveness of the presented work are illustrated via test cases of numerical examples. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文介绍了通过在多个不精确的随机场建模存在下通过不同的物质特性表征在功能梯度平板上的混合不确定传播的混合概率/非概率不确定性问题。延伸光谱随机有限元框架以执行功能梯度材料的混合不确定度分析,由此板的弹性模量的空间变化是独特的,其具有比纯度均匀的随机场更多的多个不精确的随机场建模。这种表征起源于Heeding的物理模型的构建,并检查了通过不同材料成分在物理模型上传播的单独不确定特征的显着影响,以使物理模型更可靠和现实。然后建立力学和数学侵入性制剂,以明确地产生响应的不确定但有界统计特征,即间隔平均值,间隔标准偏差。统计矩和边界分布函数的有界表面被生动地描绘了示范。通过数值例子的测试案例说明了所提出的工作的可行性和有效性。 (c)2020 Elsevier B.v.保留所有权利。

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