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Structural optimization under equivalent static loads transformed from dynamic loads based on displacement

机译:基于位移的动态载荷转换成等效静载荷下的结构优化

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摘要

All loads in the real world act dynamically on structures. Since dynamic loads are extremely difficult to handle in analysis and design, static loads are utilized with dynamic factors. The dynamic factors are generally determined from design codes or experience. Therefore, static loads may not give accurate solutions in analysis and design. An analytical method based on modal analysis in finite element analysis is proposed for the transformation of dynamic loads into equivalent static load sets. Equivalent static load sets are calculated to generate an identical displacement field in a structure with that from dynamic loads at a certain time. The process is derived mathematically and evaluated. The method is verified through numerical tests. Various characteristics are identified to match the dynamic and static behaviors. For example, the opposite direction of a dynamic load should be considered due to the vibrational response. A dynamic load is transformed into multiple equivalent static load sets according to the number of critical times. The places of the equivalent static loads can be different from those of the dynamic loads. An optimization method is defined to use the equivalent static loads. The developed optimization process has the same effect as dynamic optimization which uses the dynamic loads directly. Standard examples are solved and the results are discussed.
机译:现实世界中的所有负载都会动态作用于结构。由于动态载荷在分析和设计中极难处理,因此将静态载荷与动态因素一起使用。动态因素通常根据设计规范或经验来确定。因此,静载荷可能无法在分析和设计中提供准确的解决方案。提出了一种基于模态分析的有限元分析方法,可以将动载荷转换为等效静载荷集。计算等效静载荷集,以在结构中生成与特定时间的动态载荷相同的位移场。该过程是数学推导和评估的。通过数值测试验证了该方法。确定各种特征以匹配动态和静态行为。例如,由于振动响应,应考虑动态负载的相反方向。根据关键时间的数量,将动态负载转换为多个等效的静态负载集。等效静载荷的位置可以与动载荷的位置不同。定义了一种优化方法以使用等效静载荷。所开发的优化过程与直接使用动态载荷的动态优化具有相同的效果。解决了标准示例,并讨论了结果。

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