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首页> 外文期刊>Journal of Optimization Theory and Applications >Validation of a Structural Optimization Algorithm Transforming Dynamic Loads into Equivalent Static Loads
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Validation of a Structural Optimization Algorithm Transforming Dynamic Loads into Equivalent Static Loads

机译:将动态载荷转换为等效静载荷的结构优化算法的验证

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摘要

Generally, structural optimization is carried out based on external static loads. However, all forces have dynamic characteristics in the real world. Mathematical optimization with dynamic loads is almost impossible in a large-scale problem. Therefore, in engineering practice, dynamic loads are often transformed into static loads via dynamic factors, design codes, and so on. Recently, a systematic transformation of dynamic loads into equivalent static loads has been proposed in Refs. 1–3. Equivalent static loads are made to generate at each time step the same displacement field as the one generated by the dynamic loads. In this research, it is verified that the solution obtained via the algorithm of Refs. 1–3 satisfies the Karush–Kuhn–Tucker necessary conditions. Application of the algorithm is discussed.
机译:通常,结构优化是基于外部静载荷进行的。但是,所有力量在现实世界中都具有动态特征。在大型问题中,动态载荷的数学优化几乎是不可能的。因此,在工程实践中,动态载荷经常通过动态因素,设计规范等转换为静态载荷。最近,参考文献中提出了将动态负载系统转换为等效静态负载的方法。 1–3。使等效静载荷在每个时间步均产生与由动载荷产生的位移场相同的位移场。在本研究中,验证了通过Refs算法获得的解。 1–3满足Karush–Kuhn–Tucker的必要条件。讨论了该算法的应用。

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