高荷载下的最佳单层钢结构建筑

S. Kravanja, T. Zula, Z. Kravanja
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引用次数: 0

摘要

本文介绍了承受高荷载的单层钢结构建筑的参数优化。在参数研究中,确定了海拔 3000 米以下不同高度的风雪高荷载。研究考虑了阿尔卑斯地区和欧洲规范 1 标准。针对不同海拔高度进行了离散混合整数非线性编程优化。开发并使用了钢结构优化模型。结构的质量目标函数受欧洲规范标准规定的尺寸和挠度约束。应用了修改后的外部逼近和相等松弛算法。获得的最优结果包括结构的最小质量、最优拓扑结构、钢截面和钢材等级。以中型单层钢结构建筑为例,当建筑地点的海拔高度从 500 米增加到 3000 米时,结构质量增加了 2.7 倍,主门式刚架的数量增加了 80%。最佳结果清楚地表明了结构质量和截面是如何随着荷载的增加而增加的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OPTIMAL SINGLE-STORY STEEL BUILDINGS UNDER HIGH LOADS
This paper presents the parametric optimization of single-story steel buildings subjected to high loads. In the parametric study, high loads of snow and wind are determined for different altitudes up to 3000 meters above sea level. The Alpine region and the Eurocode 1 standard are considered. The discrete mixed-integer non-linear programming optimization is performed for different altitude alternatives. The optimization model for the steel structure is developed and used. The mass objective function of the structure is subjected to dimensioning and deflection constraints defined by the Eurocode standards. The modified outer-approximation and equality-relaxation algorithm is applied. The optimal results obtained include the minimal possible mass of the structure, the optimal topology, the steel sections and the steel grade. In the case of a medium-sized single-story steel building, it was found that the structural mass increases by 2.7 times and the number of main portal frames increases by 80 % when the altitude of the building site is increased from 500 to 3000 meters above sea level. The optimal results clearly show how the structural mass and cross-sections increase with increasing load.
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