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Parametric study of rocking cores-moment frames with supplemental viscous damping and self-centering devices using a distributed parameter model

机译:使用分布参数模型的辅助粘性阻尼和自定心装置的摇摆芯矩阵参数研究

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摘要

A distributed parameter model is proposed for the rocking cores-moment frames (RCMFs) with supplemental viscous damping and self-centering devices. In this model, the moment frame and rocking cores are simplified as a shear beam and a flexural beam, respectively, while viscous damping and self-centering devices are substituted by rotational constraint with linear viscous damping and elastic stiffness. Three nondimensional parameters, frame-core stiffness parameter, base-rotation fixity parameter and damping parameter, are introduced to describe the dynamic behavior of the full physical structural system. Closed-form solutions for complex modal shapes are derived, and then parametric study is conducted to explore the effects of these three parameters on modal damping ratios, eigenvalues, complex modal shapes, and drift concentration factor. Explicit expressions of modal damping ratios with these three parameters are established through curve-fitting technique that can be conveniently used for engineering practice. Frequency responses of base shear forces and moments are obtained using the distributed transfer function method. It is concluded that the modal damping ratios are significantly affected by these three parameters, and their peak values will be remarkably reduced as the increasing of the frame-core stiffness and base-rotation fixity. For design purpose, appropriate ranges of these three parameters are recommended to achieve better drift uniformity control, response reduction, and higher modes effect mitigation. The proposed model and conclusions of the parametric study can be used as a tool for rapidly evaluating seismic performance in a preliminary design phase of the RCMFs.
机译:提出了一种具有辅助粘性阻尼和自定心装置的摇摆芯矩框架(RCMF)的分布式参数模型。在该模型中,片刻框架和摇摆芯被简化为剪切梁和弯曲梁,而粘性阻尼和自定心装置被具有线性粘性阻尼和弹性刚度的旋转约束来代替。引入了三个非潜能参数,框架芯刚度参数,旋转旋转定影参数和阻尼参数,以描述全物理结构系统的动态行为。衍生复杂模态形状的闭合溶液,然后进行参数研究以探讨这三个参数对模态阻尼比,特征值,复杂模态形状和漂移浓度因子的影响。通过可以方便地用于工程实践的曲线拟合技术,建立具有这三个参数的模态阻尼比的显式表达。使用分布式传递函数方法获得基础剪切力和矩的频率响应。结论是,模态阻尼比受到这三个参数的显着影响,并且它们的峰值将被显着降低,因为框架芯刚度和旋转旋转固定度的增加。对于设计目的,建议使用适当范围的这三个参数来实现更好的漂移均匀性控制,响应减少和更高的模式效果缓解。参数研究的拟议模型和结论可用作在RCMFS的初步设计阶段迅速评估地震性能的工具。

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