Numerical Evaluation of Bell-Shaped Proportional Damping Model for Softening Structures

C. Lee, T. Chang
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引用次数: 2

Abstract

. A new type of proportional damping models, called bell-shaped proportional damping model, has recently been proposed. This new model has not only addressed the spurious damping forces, but also maintained the same order of computational efficiency as the Rayleigh model. This model has also been further improved such that, by using the tangent stiffness approach, it becomes suitable for structures experiencing softening response with negative stiffness. The improved model allows users to have flexible control of modal damping ratio for all interested frequency intervals, including those associated with negative stiffness. In this study, the performance of bell-shaped damping model is evaluated numerically in a response history analysis of a multi-storey building under seismic loading. The results show that, compared to the Rayleigh model, the bell-shaped model performs excellently in terms of always giving desirable positive energy dissipation even when the structure is experiencing softening response.
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软化结构钟形比例阻尼模型的数值评价
. 最近提出了一种新的比例阻尼模型,称为钟形比例阻尼模型。该模型不仅解决了伪阻尼力的问题,而且保持了与瑞利模型相同数量级的计算效率。该模型也得到了进一步的改进,通过使用切线刚度方法,它变得适用于经历负刚度软化响应的结构。改进后的模型允许用户灵活控制所有感兴趣的频率区间的模态阻尼比,包括与负刚度相关的频率区间。本文对多层建筑在地震荷载作用下的响应历史分析进行了钟形阻尼模型的数值评价。结果表明,与瑞利模型相比,钟形模型即使在结构发生软化响应时也能提供理想的正能量耗散。
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