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首页> 外文期刊>Journal of Sound and Vibration >Structural and acoustic responses of a submarine hull due to propeller forces
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Structural and acoustic responses of a submarine hull due to propeller forces

机译:螺旋桨作用力引起的潜艇船体的结构和声学响应

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The low frequency structural and acoustic responses of a simplified axisymmetric submarine model to fluctuating propeller forces along the submarine axis are investigated. The forces arise from a hydrodynamic mechanism and are transmitted from the propeller to the submarine hull through both the shaft and the fluid. Numerical models have been developed to simulate the strongly coupled structure-fluid interaction of a submerged vessel in the frequency domain. The structure is modelled using the finite element method, so that more complex features such as ring-stiffeners, bulkheads and the propulsion system can be taken into account. A simple, passive vibration attenuation system known as a resonance changer is included in the model of the propeller/shafting system. The surrounding fluid is modelled using the boundary element method. The influence and importance of model parameters such as structural stiffness and fluid loading effects are investigated. Due to the fluctuating propeller forces, the hull is excited by axial structural forces transmitted through the propeller/shafting system as well as by acoustic dipoles, where the dipoles are correlated to the structural forces in strength and direction. The acoustic dipole at the propeller also radiates sound directly to the far field of the surrounding fluid. It is demonstrated that the performance of the RC is negatively influenced at frequencies above the fundamental axial resonance of the hull by the effect of forces transmitted through the fluid. Another problem arises due to increased axial movement of the propeller, when the RC is optimised to minimise excitation of the hull via the propeller shaft. This results in an additional sound field that excites the submarine hull in a similar manner to the fluid forces that arise directly from the hydrodynamic mechanism.
机译:研究了简化的轴对称潜艇模型对沿潜艇轴线波动的螺旋桨力的低频响应。这些力来自流体动力机构,并通过轴和流体从螺旋桨传递到潜艇船体。已经开发了数值模型来模拟浸没船在频域中的强耦合结构-流体相互作用。使用有限元方法对结构进行建模,以便可以考虑更复杂的特征,例如环形加劲肋,舱壁和推进系统。螺旋桨/轴系系统的模型中包含一个简单的,称为共振改变器的被动减振系统。使用边界元方法对周围流体进行建模。研究了模型参数(例如结构刚度和流体载荷效应)的影响和重要性。由于螺旋桨力的波动,船体被通过螺旋桨/轴系传递的轴向结构力以及声学偶极子激发,其中偶极子在强度和方向上与结构力相关。螺旋桨上的声偶极子还将声音直接辐射到周围流体的远场。已经证明,在高于船体基本轴向共振的频率上,RC的性能受到通过流体传递的力的影响而受到负面影响。当优化RC以最小化通过螺旋桨轴对船体的激励时,由于螺旋桨轴向运动的增加会引起另一个问题。这产生了一个额外的声场,它以与直接由流体动力机制产生的流体力相似的方式激发了海底船体。

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