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首页> 外文期刊>Engineering Structures >Optimum properties of multiple tuned mass dampers for reduction of translational and torsional response of structures subject to ground acceleration
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Optimum properties of multiple tuned mass dampers for reduction of translational and torsional response of structures subject to ground acceleration

机译:多重调谐质量阻尼器的最佳性能,可降低地面加速度作用下结构的平移和扭转响应

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The application of multiple tuned mass dampers (MTMD) with identical stiffness and damping coefficient but different mass for suppressing translational and torsional responses is discussed for a simplified two-degree-of-freedom (2DOF) structure, able to represent the dynamic characteristics of general asymmetric structures subject to ground motions. This 2DOF structure is a generalized 2D0F system of an asymmetric structure with predominant translational and torsional responses under earthquake excitations using the mode reduced-order method. Depending on the ratio of the torsional to the translational eigenfrequency, i.e. the torsional to translational frequency ratio (TTFR), of asymmetric structures, the following cases can be distinguished: (1) torsionally flexible structures (TTFR < 1.0), (2) torsionally intermediate stiff structures (TTFR = 1.0), and (3) torsionally stiff structures (TTFR > 1.0). Taking into account the even placement of the MTMD within the width of the asymmetric structure, a careful examination of the effects of the normalized eccentricity ratio (NER) on the performance of the MTMD are carried out with resort to the provided analytical expressions for the dynamic magnification factors (DMF) of both the translational and torsional responses of the asymmetric structure. Extensive numerical simulations have been performed to accurately estimate the dynamic characteristics of the MTMD for asymmetric structures subject to ground acceleration. In the simulations, the dimensionless DMF parameters, bounded between zero and unity, are used as the formal indexes estimating the effectiveness of the MTMD in reducing both the translational and torsional responses of the asymmetric structure. A new basic result is that the NER affects significantly the performance of the MTMD for both torsionally flexible and torsionally intermediate stiff structures; while the influence of the NER is rather negligible on the performance of the MTMD for torsionally stiff structures, thus implying that in such a case the MTMD may be designed by ignoring the effects of torsional coupling. Likewise, the effectiveness and robustness of the MTMD strategies with different layouts are also investigated and demonstrated for the case of mitigating the torsional response of asymmetric structures, thus providing valuable guidance for the MTMD design. Furthermore, the frequency response curves of asymmetric structures without and with both the optimum MTMD and TMD are plotted for the three cases of TTFR as well, consequently obtaining some very useful results.
机译:讨论了具有相同刚度和阻尼系数但质量不同的多重调谐质量阻尼器(MTMD)在抑制平移和扭转响应中的应用,该结构简化了两自由度(2DOF)结构,能够代表通用的动态特性。受地震动影响的非对称结构。该2DOF结构是使用模式降阶方法在地震激励下具有主要平移和扭转响应的不对称结构的广义2D0F系统。根据不对称结构的扭转与平移本征频率之比,即扭转与平移频率之比(TTFR),可以区分以下情况:(1)扭转挠性结构(TTFR <1.0),(2)扭转中间刚性结构(TTFR = 1.0),以及(3)扭转刚性结构(TTFR> 1.0)。考虑到MTMD在不对称结构的宽度内的均匀放置,请使用提供的动力学解析表达式仔细检查归一化偏心率(NER)对MTMD性能的影响。不对称结构的平移和扭转响应的放大倍数(DMF)。已经进行了广泛的数值模拟,以准确地估计非对称结构受地面加速度影响时MTMD的动态特性。在仿真中,将无量纲的DMF参数(限制在零和统一之间)用作形式指标,以估计MTMD在减少不对称结构的平移和扭转响应中的有效性。一个新的基本结果是,NER对于扭转挠性和扭转中间刚性结构均会显着影响MTMD的性能。而NER对扭转刚性结构的MTMD性能的影响可以忽略不计,因此暗示在这种情况下,可以通过忽略扭转耦合的影响来设计MTMD。同样,对于缓解不对称结构的扭转响应的情况,还研究了不同布局的MTMD策略的有效性和鲁棒性,从而为MTMD设计提供了有价值的指导。此外,还针对三种情况的TTFR绘制了不具有和同时具有最佳MTMD和TMD的不对称结构的频率响应曲线,因此获得了一些非常有用的结果。

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