...
首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Mitigation of Vortex-Induced Vibrations of a Pivoted Circular Cylinder Using an Adaptive Pendulum Tuned-Mass Damper
【24h】

Mitigation of Vortex-Induced Vibrations of a Pivoted Circular Cylinder Using an Adaptive Pendulum Tuned-Mass Damper

机译:使用自适应摆调谐质量阻尼器来减轻枢轴旋转圆柱的涡流振动

获取原文
获取原文并翻译 | 示例

摘要

A novel adaptive pendulum tuned-mass damper (TMD) was integrated with a two degree-of-freedom (DOF) cylindrical structure in order to control vortex-induced vibrations of the structure. The natural frequency of the TMD was adjusted autonomously in order to control the vortex-induced vibrations. The experiments were performed at a constant Reynolds number of 2100 and for four reduced velocities, 4.18, 5.44, 6.00, and 6.48. Two TMD damping ratios, 0 and 0.24, were investigated for a constant TMD mass ratio of 0.087. The results demonstrate that tuning the natural frequency of the TMD to the natural frequency of the structure decreases the amplitudes of transverse and streamwise vibrations of the structure significantly. Specifically, the transverse amplitudes of vibrations are decreased by a factor of ten and streamwise amplitudes of vibrations are decreased by a factor of three. Depending on the value of the TMD damping ratio, the frequency of transverse vibrations is either characterized by the natural frequency of the structure or by two other fundamental frequencies, one higher and the other lower than the natural frequency of the structure. The results demonstrate that, independent of the TMD damping and tuning frequency ratios, the frequency of streamwise vibrations matches that of the transverse vibrations in the synchronization region, and the cylinder traces elliptic trajectories. A mathematical model is proposed to gain insight into the frequency response of the structure and fluid-structure interactions. The model shows that, for low TMD damping ratios, the frequency response of the structure equipped with the TMD is characterized by two fundamental frequencies; whereas, for relatively high TMD damping ratios, the frequency response of the structure is characterized by a single frequency, i.e., the natural frequency. In both cases, the fluid forcing within the synchronization region is linked to the fundamental frequency/frequencies of the structure. Thus, the classical definition of synchronization applies to multiple DOF structures undergoing vortex-induced vibrations.
机译:一种新型的自适应摆质量阻尼器(TMD)与两个自由度(DOF)圆柱结构集成在一起,以控​​制涡流引起的结构振动。可以自动调节TMD的固有频率,以控制涡流引起的振动。实验在恒定的雷诺数2100和4.18、5.44、6.00和6.48四个降低的速度下进行。对于恒定的TMD质量比0.087,研究了两个TMD阻尼比0和0.24。结果表明,将TMD的固有频率调整为结构的固有频率会显着降低结构的横向和横向振动幅度。具体地说,振动的横向幅度减小了十倍,而沿流的振动幅度减小了三倍。根据TMD阻尼比的值,横向振动的频率可以用结构的固有频率来表征,也可以用另外两个基频来表征,一个基频高于另一个基频。结果表明,与TMD阻尼和调谐频率比无关,流向振动的频率与同步区域中的横向振动的频率匹配,并且圆柱体跟踪椭圆形轨迹。提出了一个数学模型来深入了解结构的频率响应和流体-结构相互作用。该模型表明,对于低TMD阻尼比,配备TMD的结构的频率响应的特征在于两个基本频率。相反,对于较高的TMD阻尼比,结构的频率响应的特征在于单一频率,即固有频率。在两种情况下,同步区域内的流体强迫都与结构的基本频率/频率相关。因此,同步的经典定义适用于经历涡激振动的多个自由度结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号