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基于复阻尼模型水平剪切型结构的时域解析算法
引用本文:焦浩鑫,丁肇伟,陈龙珠. 基于复阻尼模型水平剪切型结构的时域解析算法[J]. 地震工程学报, 2021, 43(3): 720-727
作者姓名:焦浩鑫  丁肇伟  陈龙珠
作者单位:上海市公共建筑和基础设施数字化运维重点实验室, 上海 200240;上海交通大学船建学院土木系, 上海 200240
基金项目:国家自然科学基金资助项目(51678361)
摘    要:近些年来提出的数值方法虽克服了应用复阻尼模型求解动力响应时可能出现的发散现象,但其计算过程繁杂且不能表达出结构动力特性及响应随结构参数的变化规律.论文参照三对角To-eplitz矩阵特征值问题的数学解法,推导出水平剪切型结构各阶自振频率、振型函数的解析形式.通过对运动方程进行Fourier变换,得到复阻尼理论下结构的传...

关 键 词:复阻尼  水平剪切型结构  动力响应  时域  解析方法
收稿时间:2020-05-26

A Time-domain Analytical Method for Horizontal Shear Structures Based on the Complex Damping Model
JIAO Haoxin,DING Zhaowei,CHEN Longzhu. A Time-domain Analytical Method for Horizontal Shear Structures Based on the Complex Damping Model[J]. China Earthguake Engineering Journal, 2021, 43(3): 720-727
Authors:JIAO Haoxin  DING Zhaowei  CHEN Longzhu
Affiliation:Shanghai Key Laboratory for Digital Maintenance of Buildings and Infrastructure, Shanghai 200240, China;Department of Civil Engineering, Shanghai Jiao Tong University, Shanghai 200240, China
Abstract:Although the numerical methods proposed in recent years overcome the possible divergence phenomenon when applying the complex damping model to solve the structural dynamic response, the calculation process is complicated and cannot express the structural dynamic characteristics and the change law of response with structural parameters. This paper derived the analytic forms of natural frequencies and mode functions of each order of a horizontal shear structure by referring to the mathematical solution of tridiagonal Toeplitz matrix eigenvalue problem. Through Fourier transform of the motion equation, the analytical equation of transfer function of the structure under complex damping theory was obtained, and the dynamic characteristics of the structure and the variation of the response with structural parameters were expressed intuitively. The results showed that the analytical method based on the complex damping model overcomes the time-domain divergence problem. Then we compared it with the time-domain numerical calculation method and found that the time-history curves of displacement response obtained by the two methods are consistent with each other, and the peak displacements are basically the same. In addition, by comparing the dynamic responses of the two methods when underlying stiffness changes, the curves of the analytical method are smoother and the discrete error of numerical method is avoided.
Keywords:complex damping  horizontal shear structure  dynamic response  time domain  analytical method
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