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MULTI-TUNED OPTIMUM VIBRATION ABSORBERS FOR CURVED BEAMS

机译:用于弯曲梁的多调谐最佳振动吸收器

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Detailed investigations on the vibration suppression of beam-type structures using Multiple Tuned Mass Damper (MTMD) technology has been carried out in this study. A general curved beam has been utilized as a case study to illustrate the developed optimum design methodology. The governing differential equations of motion for the curved beam with the attached MTMD systems have been derived, and then solved using the finite element method. A hybrid optimization methodology, which combines the global optimization method based on Genetic Algorithm (GA) and the local optimization technique based on Sequential Quadratic Programming (SQP), has been developed. This has been utilized to find the optimum design parameters (damping coefficient, spring stiffness and position coordinate) of the attached Tuned Mass Damper (TMD) systems in order to suppress the vibration levels at a particular mode or several modes, simultaneously. Finally, a design principle for vibration suppression of beam-type structures using the MTMD technology has been proposed through extensive numerical investigations.
机译:在本研究中已经在使用多调谐质量阻尼器(MTMD)技术对光束型结构振动抑制的详细研究。一般曲线被用作案例研究以说明所开发的最佳设计方法。已经得出了用附接的MTMD系统的弯曲光束的控制差动方程,然后使用有限元方法解决。已经开发了一种基于遗传算法(GA)和基于顺序二次编程(SQP)的遗传算法(GA)和局部优化技术的全局优化方法的混合优化方法。这已经利用来找到附着调谐质量阻尼器(TMD)系统的最佳设计参数(阻尼系数,弹簧刚度和位置坐标,以便同时抑制特定模式或多种模式的振动水平。最后,通过广泛的数值研究提出了使用MTMD技术的振动抑制光束型结构的设计原理。

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