非对称箱形截面桥式起重机主梁的分析与优化

Goran V Pavlović, M. Savković
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引用次数: 1

摘要

本文研究了双梁桥式起重机非对称箱形截面主梁的优化设计问题。采用飞蛾-火焰优化算法(MFO)求解多准则优化问题。该算法是一种较新的基于种群的元启发式算法。本文以强度、梁板(腹板和上翼缘)局部稳定、纵向加劲肋局部稳定、主梁整体稳定、挠度和振动周期为约束函数。最后以双梁桥式起重机的实际解算为例,验证了所提方法的正确性。在本研究中实现了材料的显著节省,在19.42%至25.49%的范围内。使用该算法可以应用非常多的变量和约束函数,从而在较短的时间内获得最优值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and optimization of the main girder of the bridge crane with an asymmetric box cross-section
The presented research deals with the optimal design of the main girder with an asymmetric box cross-section of the double-beam bridge crane. The Moth-Flame Optimization algorithm (MFO) is used for solving this multicriteria optimization problem. This algorithm is a relatively new population-based metaheuristic method. The paper takes the following criteria as the constraint functions: strength, local stability of the girder plates (webs and top flange), local stability of the longitudinal stiffeners, global stability of the main girder, deflections, and period of oscillation. The justification of the proposed procedure is shown in one example of a real solution of the double-beam bridge crane. Significant savings in material were achieved in this research, within the range of 19.42 to 25.49%. The use of this algorithm enables the application of a very large number of variables and constraint functions, whereby the optimal values are obtained in a relatively short period.
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