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Preliminary design of high-rise outrigger braced shear wall structures on flexible foundations

机译:柔性基础上高层支腿支撑剪力墙结构的初步设计

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This paper presents a graphical method to optimise the position of outriggers on shear walls with flexible foundations. This location for the outriggers will cause a maximum reduction in lateral deflection at the top of the building. The method can be used for preliminary design of high-rise stuctures subjected to horizontal loading. The method requires the calculation of six structural parameters: bending stiffnesses for the shear wall and outrigger structure, an overall bending stiffness contribution from the exterior columns, rotational stiffnesses for the shear wall and column foundations in addition to a newly suggested bending stiffness parameter representing the structural behaviour of the flexible foundation beam connecting the foundation of the shear wall to the exterior column foundations. These parameters allow the derivation of two compatibility equations for rotations at the intersections of the neutral lines of the shear wall with the outrigger and foundation structures. They yield expressions for the restraining moments at outrigger and foundation levels that act in the opposing direction to the bending moment from the horizontal loading on the structure. Maximising the influence of the restraining moments on the horizontal deflections leads to the optimum location of the outrigger structure. Combining all stiffness parameters into two non-dimensional characteristic structural parameters allows the optimisation procedure for this type of structure to be represented by a single graph that directly gives the optimum level of the outrigger. It is concluded that all six stiffness parameters need to be included in the preliminary analysis of a proposed tall building structure as the optimum location of the outrigger as well as the reductions in horizontal deformations and internal forces in the structure can be significantly influenced by all the structural components.
机译:本文提出了一种图形化方法来优化具有柔性基础的剪力墙上支腿的位置。支腿的此位置将最大程度减少建筑物顶部的横向偏斜。该方法可用于承受水平荷载的高层结构的初步设计。该方法需要计算六个结构参数:剪力墙和支腿结构的抗弯刚度,外柱的整体抗弯刚度贡献,抗剪墙和柱基础的旋转刚度以及新建议的代表抗弯刚度的抗弯刚度参数。将剪力墙的基础连接到外部柱基础的柔性基础梁的结构特性。这些参数允许推导两个相容方程,用于在剪力墙的中性线与支腿和基础结构的相交处旋转。他们得出了支腿和地基水平上的约束力矩的表达式,这些约束力矩与结构上水平荷载所产生的弯矩作用方向相反。最大限度地提高约束力矩对水平挠度的影响会导致支腿结构的最佳位置。将所有刚度参数组合为两个无量纲的特征结构参数,可以通过直接提供最佳支腿水平的单个图表来表示此类结构的优化过程。结论是,建议的高层建筑结构的初步分析中必须包括所有六个刚度参数,因为支腿的最佳位置以及水平变形的减小和结构中的内力会受到所有因素的显着影响。结构组件。

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