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Practical Design Procedures of 3D Reinforced Concrete Shear Wall-Frame Structure Based on Structural Optimization Method

机译:基于结构优化方法的3D钢筋混凝土剪力墙框架结构实用设计程序

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This study investigates and develops the structural optimization method. The effect of size constraints on practical solution of reinforced concrete (RC) building structure with shear wall is proposed. Cross-sections of beam and column, and thickness of shear wall are considered as design variables. The objective function to be minimized is total cost of the structure by using a simple and efficient automated MATLAB platform structural optimization methodology. With modification of mathematical formulations, the result is compared with optimal solution without size constraints. The most suitable combination of section sizes is selected as for the final design application based on linear static analysis. The findings of this study show that defining higher value of upper bound of sectional sizes significantly affects optimal solution, and defining of size constraints play a vital role in finding of global and practical solution during optimization procedures. The result and effectiveness of proposed method confirm the ability and efficiency of optimal solutions for 3D RC shear wall-frame structure.
机译:本研究研究并开发了结构优化方法。提出了尺寸约束对带剪力墙钢筋混凝土建筑结构实际求解的影响。梁和柱的横截面以及剪力墙的厚度被视为设计变量。通过使用简单有效的自动化MATLAB平台结构优化方法,可以使目标功能最小化,即该结构的总成本。通过修改数学公式,可以将结果与不受大小限制的最佳解决方案进行比较。根据线性静态分析,为最终设计应用选择最合适的截面尺寸组合。这项研究的结果表明,定义较高的截面尺寸上限值会显着影响最佳解决方案,而尺寸约束的定义在优化过程中寻找整体解决方案和实际解决方案中起着至关重要的作用。所提方法的结果和有效性证实了3D RC剪力墙框架结构最优解的能力和效率。

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