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Global-local approach to the design of dynamic vibration absorber for damped structures

机译:阻尼结构动力减振器设计的全局局部方法

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The dynamic vibration absorber (DVA) has attracted attention since its invention. This paper deals with the optimization problems of the standard DVA and two other models of DVA called three-element DVA and non-traditional DVA for damped primary structures. Unlike the standard configuration, the three-element DVA contains two spring elements in which one is connected to a dashpot in a series and the other is placed in parallel. Meanwhile the non-traditional DVA has a linear viscous damper connecting the absorber mass directly to the ground. There have been some studies on the design of three-element and non-traditional dynamic vibration absorbers in the case of undamped primary structures. These studies have shown that both three-element and non-traditional DVAs perform better than the standard DVA. When the primary structure is damped, there are very few studies on the three-element and non-traditional DVAs in the literature. This article proposes a global-local approach to give approximate analytical solutions of the H optimization for all standard, three-element and non-traditional DVAs attached to damped primary structures. The main idea of the study is based on the global-local criterion of the equivalent linearization method in order to replace approximately the original damped structure by an equivalent undamped one. Afterwards, the already derived expressions of the optimal parameters for the undamped primary system case are used with the equivalent undamped structure that was just obtained. The numerical simulations are carried out to verify the effectiveness of the obtained results. Additionally, design aids, which show the variation of the optimal design quantities for various DVA mass ratios and inherent structural damping ratios are also provided.
机译:自其发明以来,动态吸振器(DVA)引起了人们的注意。本文讨论了标准DVA和其他两种DVA模型的优化问题,这些模型分别用于阻尼初级结构的三元素DVA和非传统DVA。与标准配置不同,三元件DVA包含两个弹簧元件,其中一个弹簧串联连接到一个减震器,另一个弹簧并联放置。同时,非传统DVA具有线性粘性阻尼器,将吸收器块直接连接到地面。在无阻尼主结构的情况下,已经对三元和非传统的动态吸振器的设计进行了一些研究。这些研究表明,三元素DVA和非传统DVA的性能均优于标准DVA。当主要结构受到阻尼时,文献中对三元素和非传统DVA的研究很少。本文提出了一种全局局部方法,为附接到阻尼主结构上的所有标准,三元素和非传统DVA提供H优化的近似解析解。该研究的主要思想是基于等效线性化方法的全局局部准则,以便用等效的无阻尼结构近似替换原始的阻尼结构。然后,将已推导的无阻尼初级系统情况的最优参数表达式与刚获得的等效无阻尼结构一起使用。进行数值模拟以验证所获得结果的有效性。另外,还提供了设计辅助工具,该工具显示了各种DVA质量比和固有结构阻尼比的最佳设计量的变化。

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