Longitudinal low-frequency vibration control of a propeller-shafting system using a hydraulic leveraged dynamic anti-resonance vibration isolator: A theoretical and experimental study
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引用次数: 0
Abstract
The longitudinal fluctuating forces of a propeller are a major cause of sound radiation of an underwater vehicle in the low frequency range. A hydraulic leveraged dynamic anti-resonance vibration isolator (HLVI) is proposed to attenuate the longitudinal vibration of a shaft system transmitted to the hull. The semi-analytical model of the shafting system with and without the isolator is set up by employing the frequency response synthesis method, in which the elasticity of the foundation is taken into consideration. Compared to the traditional isolation scheme and DVA, the proposed control scheme will not change the longitudinal effective stiffness and needs a small mass to attenuate the longitudinal vibration of the shafting system. A parametric study was conducted to investigate the key parameters of the isolator and their impact on its isolation performance. An experimental apparatus is set up to validate the isolation scheme. The acceleration frequency response results of the shafting system under axial excitation with both the frequency sweep method and discrete sinusoidal frequencies are presented and discussed. The results indicate that the proposed method is capable of attenuating the corresponding longitudinal vibration of the shafting system.
螺旋桨的纵向波动力是造成水下航行器低频声辐射的主要原因。本文提出了一种液压杠杆式动态抗共振隔振器(HLVI),用于减弱轴系传递到船体的纵向振动。采用频率响应合成法建立了有隔振器和无隔振器轴系的半分析模型,其中考虑了地基的弹性。与传统的隔振方案和 DVA 相比,所提出的控制方案不会改变纵向有效刚度,只需较小的质量就能衰减轴系的纵向振动。为研究隔振器的关键参数及其对隔振性能的影响,进行了参数研究。为验证隔振方案,建立了一个实验装置。介绍并讨论了轴系在轴向激励下采用频率扫描法和离散正弦频率的加速度频率响应结果。结果表明,所提出的方法能够减弱轴系的相应纵向振动。