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On the modal damping ratios of shear-type structures equipped with Rayleigh damping systems

机译:装有瑞利阻尼系统的剪切型结构的模态阻尼比

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摘要

The effects of added manufactured viscous dampers upon shear-type structures are analytically investigated here for the class of Rayleigh damping systems. The definitions of mass proportional damping (MPD) and stiffness proportional damping (SPD) systems are briefly recalled and their physical counterpart is derived. From basic physics, a detailed mathematical demonstration that the first modal damping ratio of a structure equipped with the MPD system is always larger than the first modal damping ratio of a structure equipped with the SPD system is provided here. All results are derived for the class of structures characterised by constant values of lateral stiffness and storey mass, under the equal "total size" constraint. The paper also provides closed form demonstrations of other properties of modal damping ratios, which further indicate that the MPD and the SPD systems are respectively characterised by the largest and the smallest damping efficiency among Rayleigh damping systems subjected to base excitation. A numerical application with realistic data corresponding to an actual seven-storey building structure is presented to illustrate and verify the theoretical findings. (c) 2005 Elsevier Ltd. All rights reserved.
机译:对于瑞利阻尼系统,这里分析研究了添加的制造的粘性阻尼器对剪切型结构的影响。简要回顾了质量比例阻尼(MPD)和刚度比例阻尼(SPD)系统的定义,并推导了它们的物理对应关系。从基础物理学出发,这里提供了详细的数学证明,即配备MPD系统的结构的第一模态阻尼比始终大于配备SPD系统的结构的第一模态阻尼比。对于以“总尺寸”约束相同的横向刚度和储层质量恒定值为特征的结构类别,得出所有结果。本文还提供了模态阻尼比其他特性的封闭式演示,进一步表明,MPD和SPD系统的特征分别在于经受基础激励的瑞利阻尼系统中最大和最小的阻尼效率。提出了具有与实际七层建筑结构相对应的实际数据的数值应用程序,以说明和验证理论发现。 (c)2005 Elsevier Ltd.保留所有权利。

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