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A design procedure for buildings equipped with energy dissipation devices using nonclassical damping and iso-performance curves

机译:使用非经典阻尼和等效性能曲线的配有消能装置的建筑物的设计程序

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This article describes a design procedure for elastic buildings equipped with linear and nonlinear energy dissipating devices. The objective is to achieve a design that responds to a target building performance following a simple and robust step-by-step algorithm. The proposed procedure identifies first the modal significance of key design performance indicators and controls the modal properties by solving a singular two-parameter eigenvalue problem. For that purpose, a new modal significance metric is proposed, and a target frequency shift and damping ratio for the complete structure are obtained from the so-called iso-performance design curves. The design algorithm employs linear-equivalent stiffness and damping properties, which are then transformed into parameters characterizing inelastic force-deformation constitutive models corresponding to physical devices. The design algorithm leads to an optimal damper distribution corresponding to the minimum global amount of supplemental equivalent damping needed to achieve a maximum modal perturbation. The design procedure is first demonstrated using a five-story building example and then a real and complex 22-story free-plan building with two towers of rhomboid-shape plan with a very singular dynamic behavior.
机译:本文介绍了装有线性和非线性消能装置的弹性建筑物的设计程序。目的是通过简单而稳健的逐步算法来实现对目标建筑性能做出响应的设计。拟议的程序首先确定关键设计性能指标的模态意义,并通过解决奇异的两参数特征值问题来控制模态特性。为此,提出了一种新的模态有效度量,并从所谓的等性能设计曲线中获得了整个结构的目标频移和阻尼比。该设计算法采用线性当量刚度和阻尼特性,然后将其转换为表征与物理设备相对应的非弹性力-变形本构模型的参数。该设计算法导致最佳的阻尼器分布,该阻尼器分配与实现最大模态扰动所需的最小补充等效阻尼的全局总量最小。首先使用一个五层楼的建筑实例演示设计过程,然后使用一个具有两个非常复杂的动态行为的菱形形状的两座塔楼,对一幢真实而复杂的22层自由楼进行演示。

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