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关于在随机载荷存在的情况下预测最优结构拓扑

On Predicting Optimal Structural Topologies in the Presence of Random Loads.

作者信息

Bochenek Bogdan, Tajs-Zielińska Katarzyna

机构信息

Faculty of Mechanical Engineering, Cracow University of Technology, 31-155 Kraków, Poland.

出版信息

Materials (Basel). 2025 Jun 16;18(12):2819. doi: 10.3390/ma18122819.

Abstract

Topology optimization has been present in modern engineering for several decades, becoming an important tool for solving design problems. Today, it is difficult to imagine progress in engineering design without the search for new approaches to the generation of optimal structural topologies and the development of efficient topological optimization algorithms. The generation of topologies for structures under random loads is one of many research problems where topology optimization is present. It is important to predict the topologies of structures in the case of load uncertainty, since random load changes can significantly affect resulting topologies. This paper proposes an easy-to-implement numerical approach that allows the prediction of the resulting topologies of structures. The basic idea is to transform a random loads case into the deterministic problem of multiple loads. The concept of equivalent load scheme (ELS) is introduced. Instead of generating hundreds of loads applied at random, the selection of a few representative load cases allows the reduction of the numerical effort of the computations. The numerical implementation of proposed concepts is based on the cellular automaton mimicking colliding bodies, which has been recently introduced as an efficient structural topology generator. The examples of topology optimization under randomly applied loads, performed for both plane and spatial structures, have been selected to illustrate the proposed concepts. Confirmed by results of numerical simulations, the efficiency, versatility and ease of implementation of the proposed concept can make an original contribution to research in topological optimization under loads applied in a random manner.

摘要

拓扑优化在现代工程领域已经存在了几十年,成为解决设计问题的重要工具。如今,很难想象工程设计的进步会离开寻找生成最优结构拓扑的新方法以及高效拓扑优化算法的发展。在随机载荷作用下生成结构拓扑是存在拓扑优化的众多研究问题之一。在载荷存在不确定性的情况下预测结构拓扑很重要,因为随机载荷变化会显著影响最终的拓扑结构。本文提出了一种易于实现的数值方法,可用于预测结构的最终拓扑。其基本思想是将随机载荷情况转化为多个载荷的确定性问题。引入了等效载荷方案(ELS)的概念。通过选择少数几个有代表性的载荷工况,而不是随机生成数百个载荷,可以减少计算的数值工作量。所提出概念的数值实现基于模拟碰撞体的元胞自动机,该元胞自动机最近被引入作为一种高效的结构拓扑生成器。选取了针对平面和空间结构在随机施加载荷下进行拓扑优化的示例来说明所提出的概念。数值模拟结果证实,所提出概念的效率、通用性和易于实现性可为随机载荷作用下拓扑优化的研究做出原创性贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4391/12195034/3ae0583c7c75/materials-18-02819-g001.jpg

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