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A novel method for prediction of truss geometry from topology optimization

机译:一种通过拓扑优化预测桁架几何的新方法

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An important task in designing a trass structure is to determine the initial configuration of the trass. In the absence of an efficient optimization technique, the selection of initial geometry is based on a trial and error procedure or standard truss configurations or past experiences. In this work, a fully automated algorithm is proposed which can be used to predict initial truss geometry from the grayscale images obtained from topology optimization of design domain. It predicts the locations of joints and the connectivity of members. It also estimates the approximate cross-sectional areas of the members. The interpreted trass geometry can be modified or directly used for structural analysis and design. Numerical examples are presented to demonstrate the functioning of the algorithm under various scenarios. The developed algorithm has been implemented as part of a web-based trass design application, previously developed by the same authors.
机译:设计trass结构的重要任务是确定trass的初始配置。在缺乏有效的优化技术的情况下,初始几何形状的选择基于反复试验程序或标准桁架配置或过去的经验。在这项工作中,提出了一种全自动算法,该算法可用于根据从设计域的拓扑优化获得的灰度图像来预测初始桁架几何形状。它可以预测关节的位置和成员的连通性。它还估计了构件的大致横截面积。解释的几何图形可以修改或直接用于结构分析和设计。数值例子表明了该算法在各种情况下的功能。该开发的算法已实现为同一作者先前开发的基于Web的trass设计应用程序的一部分。

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