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Reduction of Hull-Radiated Noise Using Vibroacoustic Optimization of the Propulsion System

机译:推进系统振动声优化降低船体辐射噪声

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摘要

Vibration modes of a submarine are excited by fluctuating forces generated at the propeller and transmitted to the hull via the propeller-shafting system. The low frequency vibrational modes of the hull can result in significant sound radiation. This work investigates reduction of the far-field radiated sound pressure from a submarine using a resonance changer implemented in the propulsion system as well as design modifications to the propeller-shafting system attachment to the hull. The submarine hull is modeled as a fluid-loaded ring-stiffened cylindrical shell with truncated conical end caps. The propeller-shafting system is modeled in a modular approach using a combination of mass-spring-damper elements, beams, and shells. The stern end plate of the hull, to which the foundation of the propeller-shafting system is attached, is modeled as a circular plate coupled to an annular plate. The connection radius of the foundation to the stern end plate is shown to have a great influence on the structural and acoustic responses and is optimized in a given frequency range to reduce the radiated noise. Optimum connection radii for a range of cost functions based on the maximum radiated sound pressure are obtained for both simple support and clamped attachments of the foundation to the hull stern end plate. A hydraulic vibration attenuation device known as a resonance changer is implemented in the dynamic model of the propeller-shafting system. A combined genetic and pattern search algorithm was used to find the optimum virtual mass, stiffness, and damping parameters of the resonance changer. The use of a resonance changer in conjunction with an optimized connection radius is shown to give a significant reduction in the low frequency structure-borne radiated sound.
机译:潜艇的振动模式是由螺旋桨产生的波动力激发的,并通过螺旋桨轴系传递给船体。船体的低频振动模式会导致明显的声音辐射。这项工作研究了使用在推进系统中实现的共振变换器以及从对潜艇的螺旋桨轴系系统进行设计修改的方式来降低潜水艇的远场辐射声压。潜艇船体建模为带有截头圆锥形端盖的流体加载的环形加劲圆柱壳。螺旋桨-轴系系统采用质量弹簧-阻尼器元件,横梁和壳体的组合,以模块化方式建模。螺旋桨轴系系统的基础固定在船体的船尾端板上,其模型建模为与环形板相连的圆形板。地基到船尾端板的连接半径显示出对结构和声学响应有很大的影响,并在给定的频率范围内进行了优化以减少辐射噪声。对于基础的简单支撑和基座到船体船尾端板的夹紧连接,都可以获得基于最大辐射声压的一系列成本函数的最佳连接半径。在传动轴系统的动力学模型中实现了一种称为共振变换器的液压减振装置。使用组合的遗传和模式搜索算法来找到谐振变换器的最佳虚拟质量,刚度和阻尼参数。已表明,将谐振变换器与优化的连接半径结合使用可显着降低低频结构传播的辐射声。

著录项

  • 来源
    《Journal of Ship Research》 |2011年第3期|p.149-162|共14页
  • 作者单位

    School of Mechanical and Manufacturing Engineering, The University of New South Wales, Sydney, Australia;

    School of Mechanical and Manufacturing Engineering, The University of New South Wales, Sydney, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    vibrations; noise; propulsion; ship motions; loads;

    机译:振动噪声;推进力船舶运动;负载;
  • 入库时间 2022-08-18 01:36:52

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