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Nonlinear optimal oil damper design in seismically controlled multi-story building frame

机译:地震控制多层结构框架中的非线性最优减油阀设计

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The purpose of this paper is to propose a practical method for optimum design of non-linear oil dampers with relief mechanism installed in multi-story framed building structures. The optimum design problem is formulated so as to minimize the maximum interstory drift or maximum acceleration of top-story under design earthquakes in terms of a set of relief forces subject to an inequality constraint on the maximum ratio of the damping force to the relief force and an equality constraint on the sum of relief forces of oil dampers. The proposed method to solve the optimum design problem is a successive procedure which consists of two steps. The first step is a sensitivity analysis by using nonlinear time-history response analyses, and the second step is a modification of the set of relief forces based upon the sensitivity analysis. An advanced reduction method based on static condensation of the frame and energy equivalence transformation of oil dampers is proposed and introduced into the optimum procedure to reduce the computational load. Numerical examples are conducted to demonstrate the effectiveness and validity of the proposed design method.
机译:本文的目的是提出一种实用的方法,用于在多层框架建筑结构中安装带有泄压装置的非线性减振器的优化设计。制定最佳设计问题,以便在一组地震作用下,将最大层间位移或顶层地震的最大加速度减到最小,这组作用力受制于对阻尼力与作用力的最大比的不等式约束的作用力。对减振器的释放力之和的相等约束。所提出的解决最佳设计问题的方法是一个包括两个步骤的连续过程。第一步是通过使用非线性时间历史响应分析进行灵敏度分析,第二步是基于灵敏度分析对卸力集进行修改。提出了一种基于框架静压和减振器能量当量变换的先进的折减方法,并将其引入优化程序中以减少计算量。数值算例表明了所提设计方法的有效性和有效性。

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