Proposing Cubic-Grid System as a New Structural System for Tall Buildings

Morteza Sheikhi, Farideh Rezagholizadehomran
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Abstract

Changes in the skyline of cities all over the world show that tall buildings are an interesting solution to accommodating growth more sustainably in today’s urban areas. Stability against lateral loading is the main issue for designing high-rise buildings. Diagrid systems or grid structures are one of these stable systems. For a long time, the only structural pattern used in this system was the triangular modulus (diagrid). In the present study, a new pattern for grid structures was introduced, and its performance was compared with the two previous common patterns (triangular and hexagonal). The new pattern is called the Isometric Cube grid, thanks to its particular shape. The design process was performed based on a simple stiffness criterion presented in the previous research. In order to calculate the stiffness of the structure for the new pattern, two types of existing structural nodes were distinguished, and the results were combined to determine the stiffness of the unit forming the entire grid. From the results of analysis, it was found that the optimal angles of diagonal elements were in the range of 50-65 degrees. Although the behavior of the new pattern in terms of shear stiffness was between the two previous patterns (and closer to the hexagonal pattern), the shear stiffness ratio increased from 30° to 65° for cube pattern, while for hexagrid, it decreased over the same range of angles.
提出了一种新的高层建筑结构体系——格子网体系
世界各地城市天际线的变化表明,高层建筑是一种有趣的解决方案,可以更可持续地适应当今城市地区的增长。高层建筑的抗侧载稳定性是设计高层建筑的主要问题。网格系统或网格结构就是这些稳定系统中的一种。长期以来,该系统中使用的唯一结构模式是三角形模量(网格)。本文介绍了一种新的网格结构模式,并将其性能与之前常用的两种网格结构模式(三角形和六边形)进行了比较。由于其特殊的形状,这种新模式被称为等距立方体网格。设计过程是基于先前研究中提出的简单刚度准则进行的。为了计算新格局的结构刚度,将现有的两种结构节点进行区分,并将结果结合起来确定构成整个网格的单元的刚度。从分析结果来看,对角线元素的最佳角度在50-65°范围内。虽然新图案在剪切刚度方面的行为介于之前的两种图案之间(并且更接近六边形图案),但立方体图案的剪切刚度比从30°增加到65°,而六边形图案的剪切刚度比在相同的角度范围内下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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