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Enhanced reduced model for elastic earthquake response analysis of a class of mono-symmetric shear building structures with constant eccentricity

机译:一类偏心率恒定的单对称剪力墙结构弹性地震反应分析的简化模型

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摘要

An enhanced reduced model is proposed for elastic earthquake response analysis of a class of mono-symmetric shear building structures with constant eccentricity. The proposed reduction method consists of two parts. The first stage is the construction of a reduced structural model with the degrees of freedom at representative floor levels only. In this stage, an inverse eigenmode-problem formulation is used to guarantee the limited equivalence between the original model and the reduced model. The reduced model is constructed so as to have the same fundamental natural frequency and the same lowest-mode component ratios at the representative floor levels as those of the original model. The second stage is the transformation of earthquake input forces into a set of reduced input forces. This transformation utilizes the static equivalence of lateral-torsional stiffness between these two models and is introduced to enhance the accuracy level of the reduced model. Several examples of a three-dimensional mono-symmetric ten-story shear building model with constant eccentricity are presented to demonstrate the validity and accuracy of the proposed reduction method for earthquake response analysis.
机译:针对一类偏心率恒定的单对称剪力墙结构的弹性地震反应分析,提出了一种增强的简化模型。拟议的减少方法包括两部分。第一阶段是构建简化的结构模型,仅具有代表性楼层的自由度。在这一阶段,使用本征逆问题公式来保证原始模型和简化模型之间的等价性有限。构造简化模型,以便在代表楼层上具有与原始模型相同的基本固有频率和相同的最低模式分量比。第二阶段是将地震输入力转换为一组减小的输入力。该变换利用了这两个模型之间的横向扭转刚度的静态等价关系,并被引入以提高简化模型的精度水平。给出了具有恒定偏心距的三维单对称十层剪力建筑模型的几个示例,以证明所提出的减震方法用于地震反应分析的有效性和准确性。

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