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A Method to Improve the Seismic Performance of Steel Moment Resisting Frames Based on Eigenfrequency Optimization

机译:一种提高钢力矩抗框架抗震性能的方法,基于特征频率优化

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Steel moment resisting frames are a structural system used throughout the world, mainly for their ductility and the speed and ease of their construction. These buildings are usually designed per procedures based on seismic design codes, seeking to minimize the total cost of the building. To aid in better building designs, researchers have proposed different methodologies, which have been proven to be effective. However, their practical use has been limited by their low computational efficiency and their difficulty to implement by practicing engineers. This article proposes a method to improve the seismic performance of steel moment resisting frame buildings based on eigenfrequency optimization. The main advantage of the proposed method is its computational efficiency and that it is simple to implement. The method is demonstrated for a four-story and an eight-story building, whose seismic performance is compared to traditional building designs using nonlinear analyses and seismic fragility functions. The results show that the seismic performance improves significantly with the proposed method with respect to that of traditionally designed buildings, reducing their seismic fragility and increasing their overstrength. These findings and the computational efficiency of the method suggest that it is a viable alternative for use within engineering practice.
机译:钢矩抵抗框架是全球使用的结构系统,主要用于它们的延展性和速度和易于构建的速度。这些建筑通常是根据地震设计代码的每个程序设计的,寻求最小化建筑物的总成本。为了帮助更好的建筑设计,研究人员提出了不同的方法,这些方法已被证明是有效的。然而,他们的实际使用受到他们的低计算效率和练习工程师实施的困难的限制。本文提出了一种提高钢力矩抵抗框架建筑地震性能的方法,基于特征繁殖优化。所提出的方法的主要优点是其计算效率,实现易于实现。该方法用于四层和八层楼的建筑物,其地震性能与传统建筑设计相比,使用非线性分析和地震脆弱功能。结果表明,抗震性能随着传统设计的建筑物的提出的方法而言,提高了方法,降低了它们的地震脆弱性并增加了流量。这些发现和该方法的计算效率表明它是一种可行的工程实践中的可行替代方案。

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