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A simple mathematical model for static analysis of tall buildings with two outrigger-belt truss systems

机译:具有两个悬臂带桁架系统的高层建筑静力分析的简单数学模型

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摘要

In this paper a simple mathematical model for approximate static analysis of combined system of framed tube, shear core and two outrigger-belt truss structures subjected to lateral loads is presented. In the proposed methodology, framed tube is modeled as a cantilevered beam with a box section and interaction between shear core and outrigger-belt truss system with framed tube is modeled using torsional springs placed at location of outrigger-belt truss; these torsional springs act in a direction opposite to rotation generated by lateral loads. The effect of shear lag on axial deformation in flange is quadratic and in web it is a cubic function of geometry. Here the total energy of the combined system is minimized with respect to lateral deflection and rotation in plane section. Solution of the resulting equilibrium equations yields the unknown coefficients of shear lag along with the stress and displacement distributions. The results of a numerical example, 50 storey building subjected to three different types of lateral loading obtained from SAP2000 are compared to those of the proposed method and the differences are found to be reasonable. The proposed method can be used during the preliminary design stages of a tall building and can provide a better understanding of the effects of various parameters on the overall structural behavior.
机译:本文提出了一个简单的数学模型,用于对框架管,剪力芯和两个支臂-桁架桁架结构组合系统进行侧向载荷的近似静力分析。在所提出的方法中,框架管被模拟为具有箱形截面的悬臂梁,而剪力核心与具有框架管的支腿-桁架桁架系统之间的相互作用是通过放置在支腿-桁架桁架位置的扭转弹簧进行建模的。这些扭转弹簧的作用方向与横向载荷产生的旋转方向相反。剪力滞后对法兰轴向变形的影响是二次的,而在腹板中则是几何的三次函数。在此,相对于平面截面中的横向偏转和旋转,组合系统的总能量最小。所得平衡方程的求解产生未知的剪力滞后系数以及应力和位移分布。数值示例的结果将50层建筑物从SAP2000获得的三种不同类型的侧向荷载与所提出的方法进行了比较,发现差异是合理的。所提出的方法可以用于高层建筑的初步设计阶段,并且可以更好地理解各种参数对整体结构性能的影响。

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