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Optimal design of tuned mass damper inerter with a Maxwell element for mitigating the vortex-induced vibration in bridges

机译:具有麦克斯韦元件的调谐质量阻尼器中的最佳设计,用于减轻桥梁涡流振动的旋风元件

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This paper investigates the optimal design of the Maxwell tuned mass-damper-inerter (M-TMDI) for mitigating the vortex-induced vibration (VIV) in bridges. The M-TMDI consists of a three-element tuned mass damper (TMD) and an inerter. Considering that the bridge deck is a multiple-degree-of-freedom (DOF) system, the inerter location is considered as a design variable of the M-TMDI in our study. The optimal parameters of a specific M-TMD1, in which the end of the inerter is connected to the fixed ground, are analytically given based on a two-DOF system. Furthermore, the optimal parameters of the M-TMDI with any inerter location on the bridge deck are developed in closed-form based on a multiple-DOF system. Finally, numerical analysis on a continuous steel box-girder bridge subjected to the VIV is performed to confirm the optimal design and superiority of the M-TMDI control. The result demonstrates that the optimally designed M-TMDI outperforms the TMD and three-element TMD in the transient amplitude mitigation, steady-state amplitude mitigation, stroke limitation, and static stretching reduction. The optimal control effect of the M-TMDI greatly depends on the defined effective mass ratio, which is function of the inerter location, mode shape, physical mass, and inertial mass.
机译:本文调查了麦克斯韦调整质量损阻 - 移位(M-TMDI)的最佳设计,用于在桥梁中减轻涡旋诱导的振动(VIV)。 M-TMDI由三个元素调谐质量阻尼器(TMD)和处于活动。考虑到桥梁甲板是多程度自由度(DOF)系统,所谓的位置被认为是我们研究中M-TMDI的设计变量。基于双DOF系统,分析了特定M-TMD1的最佳参数,其中,在该特定M-TMD1的最佳参数连接到固定地。此外,基于多DOF系统,以封闭形式开发桥式甲板上的M-TMDI的最佳参数。最后,进行了对VIV进行的连续钢箱梁桥的数值分析,以确认M-TMDI控制的最佳设计和优越性。结果表明,最佳设计的M-TMDI在瞬态幅度缓解,稳态振幅缓解,行程限制和静态拉伸减小中优于TMD和三元素TMD。 M-TMDI的最佳控制效果大大取决于所定义的有效质量比,其是处于处于活动的位置,模式形状,物理质量和惯性质量。

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