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首页> 外文期刊>Journal of Constructional Steel Research >Steel truss bridges with welded box-section members and bowknot integral joints, Part II: Minimum weight optimization
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Steel truss bridges with welded box-section members and bowknot integral joints, Part II: Minimum weight optimization

机译:带有焊接箱形截面构件和蝴蝶结整体接头的钢桁架桥,第二部分:最小重量优化

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摘要

The second part of the paper presents the minimum weight optimization based on the provisions of current design codes for both conventional and bowknot trusses. The optimization philosophies are illustrated first through the analytic derivation of minimum weight optimization of a single member. These results indicate that the member weight reduction increases as the primary stress to secondary stress ratio, or the end moment reduction, is increased. The minimum weight optimization of the truss then proceeds on the basis of linear finite element analysis of the same truss that was discussed in Part I, by the use of first-order optimization method. In the optimization formulation, the cost rise due to steel strength enhancement of shrunken segments is taken into account in the nominal weight of whole truss, and a series of requirements related to truss vertical stiffness, member strength, member stability, and truss stability are set as constraint functions. The optimization results show that the optimal weights of bowknot trusses are less than those of conventional trusses on the premise that the steel strength of shrunken segments has been moderately improved.
机译:本文的第二部分介绍了基于当前设计规范的常规和蝴蝶结桁架的最小重量优化。首先通过对单个成员的最小权重优化的解析推导来说明优化理念。这些结果表明,随着主应力与副应力之比的增加或端部力矩的减小,构件的重量减小也随之增加。然后,通过使用一阶优化方法,在第一部分中讨论的同一桁架的线性有限元分析的基础上,进行桁架的最小重量优化。在优化公式中,在整个桁架的标称重量中考虑了因收缩段的钢强度增强而导致的成本增加,并设定了与桁架垂直刚度,构件强度,构件稳定性和桁架稳定性相关的一系列要求作为约束函数。优化结果表明,在适度提高收缩节段的钢强度的前提下,蝴蝶结桁架的最佳重量小于常规桁架的最佳重量。

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