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Minimisation of the sound power radiated by a submarine through optimisation of its resonance changer

机译:通过优化谐振器来最小化潜水艇辐射的声功率

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An important cause of sound radiation from a submarine in the low frequency range is fluctuating forces at the propeller. The forces are transmitted to the hull via the shaft and the fluid. Sound radiation occurs due to hull and propeller vibrations as well as dipole sound radiation caused by the operation of the propeller in a non-uniform wake. In order to minimise sound radiation caused by propeller forces, a hydraulic vibration attenuation device known as a resonance changer can be implemented in the propeller/shafting system. In this work, cost functions that represent the overall radiated sound power are investigated, where the virtual stiffness, damping and mass of the resonance changer were chosen as design parameters. The minima of the cost functions are found by applying gradient based optimisation techniques. The finite element and boundary element methods are used to model the structure and the fluid, respectively. The adjoint operator is employed to calculate the sensitivity of the cost function to the design parameters. The influence of sound radiation due to propeller vibration on the optimisation of the resonance changer as well as the influence of the reduction in amplitude for higher harmonics of the blade-passing frequency on the control performance is investigated.
机译:低频范围内潜水艇发出的声音辐射的一个重要原因是螺旋桨上的波动力。力通过轴和流体传递到船体。声音辐射是由于船体和螺旋桨的振动以及螺旋桨在非均匀尾流中的操作所引起的偶极子声音辐射而产生的。为了最小化由螺旋桨力引起的声音辐射,可以在螺旋桨/轴系中安装一种称为共振变换器的液压减振装置。在这项工作中,研究了代表总辐射声功率的成本函数,其中选择了谐振变换器的虚拟刚度,阻尼和质量作为设计参数。通过应用基于梯度的优化技术可以找到成本函数的最小值。有限元和边界元方法分别用于对结构和流体进行建模。伴随运算符用于计算成本函数对设计参数的敏感性。研究了螺旋桨振动引起的声辐射对谐振变换器优化的影响以及叶片通过频率的高次谐波的振幅减小对控制性能的影响。

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