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首页> 外文期刊>Journal of Sound and Vibration >Stochastic response control of particle dampers under random seismic excitation
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Stochastic response control of particle dampers under random seismic excitation

机译:随机地震激励下粒子阻尼器的随机响应控制

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In this paper, stochastic response control of particle damper system that is subjected to random seismic excitation is studied and the corresponding damping mechanism is further discussed. Based on the principle of multi-particle damper equivalent to a single particle damper, the nonlinear particle damper is equivalent to a linear system by the equivalent linearization method, and the mathematical expression of stochastic response of the particle damper system is obtained. The non-stationary response and stationary response of the particle damper system are subsequently compared, and the parametric study is conducted based on the stationary response of the particle damper system. It is shown that for a given particle damper system under random seismic excitation, there is an optimal gap clearance to minimize the structural response and this is the key parameter; the mass ratio is closely related to the gap clearance and in practice, the appropriate mass ratio should be properly selected; particle damper can also suppress the vibration response of the primary structure well over a wide frequency range, showing its strong robustness. Certain design suggestions are herein proposed. Finally, a numerical analysis and an experimental study are carried out to verify the viability and reliability of the stochastic vibration analysis of the particle damper system. (c) 2020 Elsevier Ltd. All rights reserved.
机译:本文研究了对经受随机地震激发的粒子阻尼系统的随机响应控制,并进一步讨论了相应的阻尼机构。基于多粒子阻尼器的原理等于单个粒子阻尼器,非线性粒子阻尼器通过等效线性化方法等同于线性系统,获得粒子阻尼系统的随机响应的数学表达。随后比较粒子阻尼系统的非静止响应和静止响应,并且基于粒子阻尼系统的固定响应进行参数研究。结果表明,对于在随机地震激发下的给定粒子阻尼系统,存在最佳间隙间隙,以最小化结构响应,这是关键参数; the mass ratio is closely related to the gap clearance and in practice, the appropriate mass ratio should be properly selected;粒子阻尼器还可以在宽频范围内抑制主要结构的振动响应,显示其强大的鲁棒性。本文提出了某些设计建议。最后,进行了数值分析和实验研究以验证粒子阻尼系统随机振动分析的可行性和可靠性。 (c)2020 elestvier有限公司保留所有权利。

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