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Structural Optimization of Spoke Single-Layer Cable-Net Structures Based on a Genetic Algorithm

机译:基于遗传算法的辐条单层索网结构的结构优化

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摘要

A structural optimization method for spoke single-layer cable-net structures based on an improved genetic algorithm (GA) is proposed. The three-cable coplanarity theory is introduced, and an exchange program between a proprietary programming language and an advanced finite-element software is presented to implement the improved GA. Then, a simplified numerical model of the Suzhou Industrial Park Stadium cable-net structure is built and optimized. The numerical example shows that the proposed structural optimization method is accurate and efficient. Because of the limited loading combinations, nodal vertical displacements, and tensile stresses of cables, the optimal z coordinates of support nodes and cable nodes and subsequently, the initial pretension and cross-sectional areas of cables, are obtained. When the z-coordinate distribution curve of the support nodes behaves smoothly, the material property of the cables will be fully utilized with a reduction in cable weight. For the optimal mode of the simplified model, the elevations of the support nodes provide the entire cable-net structure a saddle shape, which behaves rigidly under out-of-plane loads. The proposed method can be extended to solve optimization problems of similar cable-net structures. (c) 2018 American Society of Civil Engineers.
机译:提出了一种基于改进遗传算法的轮辐单层电缆网结构优化方法。介绍了三缆共面性理论,提出了一种专有的编程语言与一种先进的有限元软件之间的交换程序,以实现改进的遗传算法。然后,建立并优化了苏州工业园区体育场电缆网结构的简化数值模型。数值算例表明,所提出的结构优化方法准确有效。由于有限的载荷组合,节点的垂直位移和电缆的拉应力,获得了支撑节点和电缆节点的最佳z坐标,并随后获得了电缆的初始预应力和横截面积。当支撑节点的z坐标分布曲线表现平稳时,电缆的材料特性将得到充分利用,从而减轻了电缆重量。对于简化模型的最佳模式,支撑节点的高程为整个电缆网结构提供了鞍形,该鞍形在平面外载荷下表现出刚性。所提出的方法可以扩展为解决类似电缆网结构的优化问题。 (c)2018年美国土木工程师学会。

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