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Equivalent series system to model a multiple friction pendulum system with numerous sliding interfaces for seismic analyses 被引量:7
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作者 c.s.tsai H.C.Su T.C.Chiang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第1期85-99,共15页
Current structural analysis software programs offer few if any applicable device-specifi c hysteresis rules or nonlinear elements to simulate the precise mechanical behavior of a multiple friction pendulum system(MFPS... Current structural analysis software programs offer few if any applicable device-specifi c hysteresis rules or nonlinear elements to simulate the precise mechanical behavior of a multiple friction pendulum system(MFPS) with numerous sliding interfaces.Based on the concept of subsystems,an equivalent series system that adopts existing nonlinear elements with parameters systematically calculated and mathematically proven through rigorous derivations is proposed.The aim is to simulate the characteristics of sliding motions for an MFPS isolation system with numerous concave sliding interfaces without prior knowledge of detailed information on the mobilized forces at various sliding stages.An MFPS with numerous concave sliding interfaces and one articulated or rigid slider located between these interfaces is divided into two subsystems: the fi rst represents the concave sliding interfaces above the slider,and the second represents those below the slider.The equivalent series system for the entire system is then obtained by connecting those for each subsystem in series.The equivalent series system is validated by comparing numerical results for an MFPS with four sliding interfaces obtained from the proposed method with those from a previous study by Fenz and Constantinou.Furthermore,these numerical results demonstrate that an MFPS isolator with numerous concave sliding interfaces,which may have any number of sliding interfaces,is a good isolation device to protect structures from earthquake damage through appropriate designs with controllable mechanisms. 展开更多
关键词 seismic isolation base isolation earthquake engineering multiple friction pendulum system structural control mathematical modeling equivalent series system
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Roles of soil-structure interaction and damping in base-isolated structures built on numerous soil layers overlying a half-space 被引量:1
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作者 c.s.tsai C.I.Hsueh H.C.Su 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2016年第2期387-400,共14页
This study examines the roles of soil-structure interaction (SSI), higher modes, and damping in a base-isolated structure built on multiple layers of soil overlying a half space. Closed-form solutions for the entire... This study examines the roles of soil-structure interaction (SSI), higher modes, and damping in a base-isolated structure built on multiple layers of soil overlying a half space. Closed-form solutions for the entire system, including a superstructure, seismic isolator, and numerous soil layers overlying a half-space, were obtained. The formulations obtained in this study simply in terms of well-known frequencies and mechanical impedance ratios can explicitly interpret the dynamic behavior of a base-isolated structure interacting with multiple soil layers overlying a half-space. The key factors influencing the performance of the isolation system are the damping ratio of the isolator and the ratio of the natural frequency of the fixed-base structure to that of the isolated structure by assuming that the superstructure moves as a rigid body. This study reveals that higher damping in the base isolator is unfavorable to higher mode responses that usually dominate the responses of the superstructure and that the damping mechanism plays an important role in transmitting energy in addition to absorbing energy. It is also concluded that it is possible to design a soft soil layer as an isolation system for isolating vibration energy. 展开更多
关键词 base isolation seismic isolation soil-structure interaction closed- form solution higher-mode effects soilstratum passive control damping effects
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斜向静磁场中光导波模式转换与衍射理论 被引量:3
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作者 刘公强 c.s.tsai 《物理学报》 SCIE EI CAS CSCD 北大核心 1998年第7期1213-1221,共9页
应用经典场论和耦合模理论计算了斜向静磁场作用下,磁性薄膜波导中静磁波与导波光的相互作用.计算结果表明,与垂直静磁场情形相比,斜向静磁场时的相匹配条件有所变化,由于磁性薄膜波导中法拉第磁光效应增强等因素,导波光的Bra... 应用经典场论和耦合模理论计算了斜向静磁场作用下,磁性薄膜波导中静磁波与导波光的相互作用.计算结果表明,与垂直静磁场情形相比,斜向静磁场时的相匹配条件有所变化,由于磁性薄膜波导中法拉第磁光效应增强等因素,导波光的Bragg衍射效率得以显著增加.这有利于应用YIG等低损耗磁性薄膜做成高衍射效率的磁光波导器件,亦有利于降低Bi∶YIG等高比法拉第旋转的磁光薄膜波导器件的体积和损耗.此外,理论指出的在斜向静磁场条件下所具有的一些磁光特性与实验结果亦符合得很好. 展开更多
关键词 斜向静磁场 光波导 光导波模式 衍射
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