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Relationships between internal forces, bracing patterns and lateral stiffnesses of a simple frame

机译:简单框架的内力,支撑方式和侧向刚度之间的关系

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For a braced frame it is important to understand the relationships between the lateral stiffnesses, internal forces and bracing patterns in order to achieve an efficient design. This paper studies these relationships based on a four-bay and four-storey braced frame using both hand and computer analyses. Assuming that two bracing members can be placed arbitrarily in each of the four stories, there are 331,776 possible bracing arrangements. The best and the worst patterns of the total patterns are reviewed, with their characteristics summarized. All possible 256 symmetrically braced frames are further studied, allowing a more detailed examination of these relationships. Criteria for selecting bracing panels and bracing orientations are suggested based on the findings of this study and basic concepts, which may be applicable to the design of other braced frames. It is also found that the mega X brace or the double inversed V brace is the stiffest brace pattern, dependent on the aspect ratio of the braced panel and the size ratio of the columns to beams. This finding is confirmed using evolutionary structural optimization. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于支撑框架,重要的是要了解横向刚度,内力和支撑模式之间的关系,以实现高效的设计。本文通过手工和计算机分析,基于四托架和四层支撑框架研究了这些关系。假设两个支撑构件可以任意放置在四个楼层中的每一个中,则有331,776种可能的支撑布置。回顾了总体模式中的最佳和最差模式,并总结了它们的特征。进一步研究了所有可能的256个对称支撑框架,从而可以更详细地检查这些关系。根据本研究的发现和基本概念,提出了选择支撑面板和支撑方向的标准,这些标准可能适用于其他支撑框架的设计。还发现,mega X支撑或双倒V形支撑是最硬的支撑图案,具体取决于支撑面板的纵横比和柱与梁的尺寸比。使用进化结构优化证实了这一发现。 (C)2015 Elsevier Ltd.保留所有权利。

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