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Mutual effect of geometric modifications and diagrid structure on structural optimization of tall buildings

机译:几何修改和斜交结构对高层建筑结构优化的相互影响

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摘要

Structural efficiency and flexibility in architectural planning have made diagrid structural system so popular among engineers and architects, currently. Since considering architectural and structural parameters can help architects and engineers to have more efficient buildings the focus of this research is to study the effect of both different geometric base and top plans configurations of tall building and the angle of diagrid structure to design efficient tall buildings with respect to two objectives: the total weight of structural elements per unit area and horizontal displacement of top floor (both minimized). To this aim, 64 parametric models with various cross-sectional shapes and 180 m height are generated by randomly increasing the number of sides at the base and top plans. The generated models are developed for varying angle of diagonal members. Rhino software and its plug-in Grasshopper are used for modelling and Grasshopper's plug-in called Karamba is used for structural analysis. The optimal models are resulted by means of genetic algorithm-based optimization. Ultimately, it is found that the optimum bound for diagrid angle is between 53° and 70° and if the number of polygonal cross-sections goes up, the efficiency of the buildings with diagrids that have the optimum diagonal angles increases.
机译:目前,结构效率和灵活性在建筑规划中已经使斜构架结构系统如此受工程师和建筑师欢迎。由于考虑到建筑和结构参数可以帮助建筑师和工程师拥有更高效的建筑,因此,本研究的重点是研究高层建筑的不同几何基础和俯视图配置以及斜向结构角度对设计高效高层建筑的影响关于两个目标:单位面积的结构元件总重量和顶层的水平位移(均已最小化)。为此,通过随机增加基础平面和俯视平面的边数,生成了具有各种横截面形状和180 m高的64个参数模型。生成的模型用于改变对角构件的角度。 Rhino软件及其插件Grasshopper用于建模,而Grasshopper的名为Karamba的插件用于结构分析。最优模型是通过基于遗传算法的优化得出的。最终,发现斜斜角的最佳边界在53°和70°之间,并且如果多边形横截面的数量增加,则斜斜角具有最佳对角线的建筑物的效率会提高。

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