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Structural shape optimization using equivalent static loads transformed from dynamic loads

机译:使用从动态载荷转换的等效静载荷的结构形状优化

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摘要

In structural optimization, static loads are generally utilized although real external forces are dynamic. Dynamic loads have been considered only in small-scale problems. Recently, an algorithm for dynamic response optimization using transformation of dynamic loads into equivalent static loads has been proposed. The transformation is conducted to match the displacement fields from dynamic and static analyses. This algorithm can be applied to large-scale problems. However, the application has been limited to size optimization. The present study applies the algorithm to shape optimization. Because the number of degrees of freedom of finite element models is usually very large in shape optimization, it is difficult to conduct dynamic response optimization with conventional methods that directly treat dynamic response in the time domain. The optimization process is carried out by interfacing an optimization system and an analysis system for structural dynamics. Various examples are solved to verify the algorithm. The results are compared to the results from static loads. It is found that the algorithm using static loads transformed from dynamic loads based on displacement is valid for very large-scale shape optimization problems. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在结构优化中,尽管实际外力是动态的,但通常会利用静态载荷。仅在小规模问题中才考虑动态载荷。近来,已经提出了一种使用动态负载到等效静态负载的转换来进行动态响应优化的算法。进行变换以匹配动态和静态分析中的位移场。该算法可以应用于大规模问题。但是,该应用程序仅限于大小优化。本研究将算法应用于形状优化。由于在形状优化中有限元模型的自由度通常非常大,因此难以使用直接在时域中处理动态响应的常规方法进行动态响应优化。通过连接优化系统和结构动力学分析系统来执行优化过程。解决了各种示例以验证算法。将结果与静载荷的结果进行比较。发现使用基于位移的动态载荷转换成静态载荷的算法对于非常大规模的形状优化问题是有效的。版权所有(c)2005 John Wiley&Sons,Ltd.

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