基于增强振动粒子系统算法的钢曲面屋盖结构优化设计

A. Kaveh, A. Eslamlou
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引用次数: 9

摘要

本文提出了一种屋顶为圆弧部分的弧形钢屋架结构的优化设计方法。框架构件为锥形工字截面构件。在优化目标函数中,同时考虑了影响框架权重的两个因素。首先,将屋面坡角作为影响结构荷载值的有效变量,其次,将构件截面分别视为连续变量和离散变量。在3 ~ 70度的范围内,将报告钢弧形屋面框架的最佳屋面斜角范围,以及最佳屋面斜角的精确值。采用增强振动粒子系统(Enhanced vibration particle System, EVPS)算法对锥形构件弯屋盖钢框架进行优化设计。将EVPS算法的性能和效率与VPS、GWO、HS、SSA、ECBO和GOA算法进行了比较。验证了EVPS算法的有效性和性能。框架设计是按照ANSI/AISC 360-05规范进行的,该规范对框架施加了强度、位移和稳定性约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Design of Steel Curved Roof Frames by Enhanced Vibrating Particles System Algorithm
The paper presents an optimal design of steel curved roof frames with its roof being part of a circular arc. The elements of frames are tapered I-section members. In the objective function for optimization, two factors affecting the weight of frames are considered simultaneously. First, the roof slope angle as an effective variable on the values of the structural loading and second, the cross-section of members that are considered as continuous and discrete variables, respectively. In the range of 3 to 70 degrees, the optimum range of roof slope angles for steel curved roof frames, as well as precise value of the best roof slope angle, will be reported. Enhanced Vibrating Particles System (EVPS) algorithm is utilized for the optimal design of steel curved roof frames with tapered members. The performance and efficiency of the EVPS algorithm is compared with six other recently developed optimization algorithms including VPS, GWO, HS, SSA, ECBO and GOA algorithms. The effectiveness and performance of EVPS algorithm is proven. Frames design are performed using ANSI/AISC 360-05 specifications which strength, displacement and stability constraints are imposed on the frames.
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