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Shape optimization of structures under earthquake loadings

机译:地震作用下结构的形状优化

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摘要

The optimum design of structures under static loads is well-known in the design world; however, structural optimization under dynamic loading faces many challenges in real applications. Issues such as the time-dependent behavior of constraints, changing the design space in the time domain, and the cost of sensitivities could be mentioned. Therefore, optimum design under dynamic loadings is a challenging task. In order to perform efficient structural shape optimization under earthquake loadings, the finite element-based approximation method for the transformation of earthquake loading into the equivalent static loads (ESLs) is proposed. The loads calculated using this method are more accurate and reliable than those obtained using the building regulations. The shape optimization of the structures is then carried out using the obtained ESLs. The proposed methodologies are transformed into user-friendly computer code, and their capabilities are demonstrated using numerical examples.
机译:在静载荷下结构的最佳设计在设计界是众所周知的。然而,动态载荷下的结构优化在实际应用中面临许多挑战。可以提到诸如约束的时间相关行为,在时域中更改设计空间以及敏感度成本之类的问题。因此,在动态载荷下进行最佳设计是一项艰巨的任务。为了在地震载荷下进行有效的结构形状优化,提出了一种基于有限元的近似方法,将地震载荷转换为等效静载荷(ESL)。与使用建筑法规获得的载荷相比,使用这种方法计算出的载荷更加准确和可靠。然后使用获得的ESL对结构进行形状优化。所提出的方法已转换为用户友好的计算机代码,并通过数字示例演示了其功能。

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