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Optimal design of high-rise buildings with respect to fundamental eigenfrequency

机译:高层建筑与基本特征频率的最佳设计

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In modern tall and slender structures, dynamic responses are usually the dominant design requirements, instead of strength criteria. Resonance is often a threatening phenomenon for such structures. To avoid this problem, the fundamental eigenfrequency, an eigenfrequency of higher order, should be maximized. An optimization problem with this objective is constructed in this paper and is applied to a high-rise building. Using variational method, the objective function is maximized, contributing to a particular profile for the first mode shape. Based on this preselected profile, a parametric formulation for flexural stiffness is calculated. Due to some near-zero values for stiffness, the obtained formulation will be modified by adding a lower bound constraint. To handle this constraint some new parameters are introduced; thereby allowing for construction of a model relating the unknown parameters. Based on this mathematical model, a design algorithmic procedure is presented. For the sake of convenience, a single-input design graph is presented as well. The main merit of the proposed method, compared to previous researches, is its hand calculation aspect, suitable for parametric studies and sensitivity analysis. As the presented formulations are dimensionless, they are applicable in any dimensional system. Accuracy and practicality of the proposed method is illustrated at the end by applying it to a real-life structure.
机译:在现代高度和细长的结构中,动态响应通常是主导的设计要求,而不是强度标准。共振通常是这种结构的威胁现象。为避免这个问题,基本的特征频率,应该最大化更高阶的特征频繁。本文构建了该目的的优化问题,并应用于高层建筑物。使用变分方法,目标函数最大化,有助于第一模式形状的特定轮廓。基于该预选轮廓,计算用于弯曲刚度的参数化制剂。由于刚度的一些接近零值,通过添加下限约束来修改所获得的制剂。为了处理此约束,引入了一些新参数;因此,允许构建与未知参数相关的模型。基于该数学模型,提出了一种设计算法过程。为方便起见,还提供了一种单输入设计图。与以前的研究相比,该方法的主要优点是其手工计算方面,适用于参数研究和敏感性分析。随着所示的配方是无量纲的,它们适用于任何尺寸系统。通过将其施加到真实寿命结构,在最后示出了所提出的方法的准确性和实用性。

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