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OPTIMIZATION OF STEEL LATTICE TRUSSES CONSIDERING MEMBERS STABILITY

机译:考虑成员稳定性的钢丝桁架优化

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This paper extends the optimization model of space truss finite element method to planar steel lattice truss structures under multiple constraints involved with the strength and the stability of members as well as the mid span deflection based on sequential linear programming (SLP) and affine-scale dual algorithm with the size of members as the optimization variables and the minimum weight as the optimization objective. Algorithm implemented with programming, an example of square pyramid space grid is meant for the verification of the optimization performance that the algorithm and program extends an active control to the stability and the mid span deflection as well simultaneously during optimization. Moreover, stress and deflection constraints were enlarged and reduced, the optimization results indicate that more districted constraints bring about greater ultimate steel consumption, which extends a certification to the effectiveness of the proposal optimization model to deal with all kinds of stress and displacement constraints.
机译:本文扩展了空间桁架有限元方法的优化模型,在涉及的多个约束下实现了大规模的钢丝桁架结构以及基于顺序线性编程(SLP)和仿射尺寸双跨度偏转的MID跨度偏转成员大小的算法作为优化变量和最小重量作为优化目标。用编程实现的算法,方形金字塔空间网格的示例是为了验证算法和程序在优化期间同时同时对稳定性和中跨偏转的优化性能。此外,应力和偏转约束被扩大和减少,优化结果表明,更接近的约束带来了更大的最终钢材消费,这延长了提案优化模型的有效性的认证,以应对各种压力和排量约束。

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