首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >A Simple Mathematical Method for Optimal Preliminary Design of Tall Buildings with Peak Lateral Deflection Constraint
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A Simple Mathematical Method for Optimal Preliminary Design of Tall Buildings with Peak Lateral Deflection Constraint

机译:具有峰值侧向挠度约束的高层建筑优化设计的简单数学方法

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The classic methods of structural design based on trial-and-error are generally highly iterative and computationally intensive, especially in a tall building consisting of thousands of structural members. This paper presents a closed-form solution for a minimum weight design problem which may be used at the early-stage design of a high-rise and slender structure. Before considering the weight-based problem, an intervening optimization formulation is introduced in advance which for a fixed amount of material presents an optimal pattern for its distribution. The obtained pattern is then used in the main problem, in which the total weight is considered as the objective function while satisfying the peak lateral deflection constraint and some practical requirements. The flexural stiffness in its general form is selected here as the design variable, so the proposed method is not restricted to a particular system, and any structural system may be addressed. A braced-tube 61-storey building example is presented to be designed based on the proposed technique to illustrate the effectiveness and practicality of the method.
机译:基于反复试验的经典结构设计方法通常高度迭代且计算量大,尤其是在由数千个结构构件组成的高层建筑中。本文提出了一种用于最小重量设计问题的封闭形式的解决方案,该解决方案可用于高层细长结构的早期设计。在考虑基于权重的问题之前,预先介绍了一个中间的优化公式,该公式对于固定数量的材料提出了一种最佳的分布方式。然后将获得的模式用于主要问题,在该问题中,总重量被视为目标函数,同时满足峰值横向挠度约束和一些实际要求。这里选择其一般形式的抗弯刚度作为设计变量,因此,所提出的方法不限于特定的系统,并且可以解决任何结构系统。提出了一种基于61层支撑管的建筑实例,以说明该技术的有效性和实用性。

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