Robust Topology Optimization of Continuum Structures under the Hybrid Uncertainties: A Comparative Study

IF 1.4 4区 工程技术 Q3 ENGINEERING, CIVIL
S. A. Latifi Rostami, Muxi Li, A. Kolahdooz, Hayoung Chung, Jian Zhang
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引用次数: 2

Abstract

Due to the inevitable involvement of multisource uncertainties related to the load, material property and geometry in practical engineering designs, robust topology optimization (RTO) has recently attracted increasing attention to account for these uncertain effects. However, the majority of the existing RTO works are concerned with single source uncertainty, and very few studies have considered the multisource (hybrid) uncertainties simultaneously. To this end, a comparative study on the hybrid uncertainties (HU), i.e., material-loading, geometric-loading, material-geometric, and material-geometric-loading uncertainties, for RTO of continuum structures is presented in this paper. A truncated Karhunen-Loeve expansion is adopted for uncertainty representation and a sparse grid collocation method for uncertainty propagation of the objective function and constraints. Effects of the various HU on the compliance and robust design are comprehensively investigated and compared with the RTO models under individual component uncertainty using two continuum benchmarks. An important observation from the results is that the hybrid uncertainty model is a conservative state, and the resulting RTO designs tend towards those with loading uncertainty only.
混合不确定性下连续体结构鲁棒拓扑优化的比较研究
由于在实际工程设计中不可避免地涉及与载荷、材料特性和几何形状相关的多源不确定性,鲁棒拓扑优化(RTO)近年来引起了越来越多的关注,以考虑这些不确定性的影响。然而,现有的RTO工作大多关注的是单源不确定性,很少有研究同时考虑多源(混合)不确定性。为此,本文对连续体结构RTO的混合不确定性(即材料-载荷、几何-载荷、材料-几何和材料-几何-载荷不确定性)进行了比较研究。不确定性表示采用截断Karhunen-Loeve展开,目标函数和约束的不确定性传播采用稀疏网格配置法。利用两个连续体基准,全面研究了不同HU对柔性和稳健设计的影响,并与各部件不确定性下的RTO模型进行了比较。从结果中可以看出,混合不确定性模型是一种保守状态,所得到的RTO设计倾向于只考虑载荷不确定性的RTO设计。
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来源期刊
Periodica Polytechnica-Civil Engineering
Periodica Polytechnica-Civil Engineering 工程技术-工程:土木
CiteScore
3.40
自引率
16.70%
发文量
89
审稿时长
12 months
期刊介绍: Periodica Polytechnica Civil Engineering is a peer reviewed scientific journal published by the Faculty of Civil Engineering of the Budapest University of Technology and Economics. It was founded in 1957. Publication frequency: quarterly. Periodica Polytechnica Civil Engineering publishes both research and application oriented papers, in the area of civil engineering. The main scope of the journal is to publish original research articles in the wide field of civil engineering, including geodesy and surveying, construction materials and engineering geology, photogrammetry and geoinformatics, geotechnics, structural engineering, architectural engineering, structural mechanics, highway and railway engineering, hydraulic and water resources engineering, sanitary and environmental engineering, engineering optimisation and history of civil engineering. The journal is abstracted by several international databases, see the main page.
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