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Numerical analysis on dynamic behaviors of coupled propeller-shafting system of underwater vehicles

机译:水下车耦合螺旋桨式系统动态行为的数值分析

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The control of unsteady bearing forces generated by propellers is of great importance for the reduction of vibration and noise of underwater vehicles. This paper is concerned with the development of a numerical method for analyzing the hydroelastic behaviors of fully coupled marine propeller and shafting system immersed in water. A three-dimensional panel method for fluid modeling combined with a finite element method for modeling of the shafting system is developed. The two sets of equations of the structural system and the fluid are strongly coupled by considering the non-penetration boundary condition on the wet surface of the propeller. A modal reduction technique is employed to determine the hydroelastic responses of the coupled fluid-propeller-shafting system, which overcomes the low numerical efficiency of the method due to the asymmetric added matrices of the propeller. The validity of the proposed method is confirmed by comparing the present results with those solutions obtained from finite element analysis. It is found that for the case of the driving force frequency close to the umbrella mode frequencies of the propeller and longitudinal mode frequenices of the shaft, the coupling of the fluid, propeller, and the shaft must be taken into account for predicting the dynamic response of the system.
机译:通过螺旋桨产生的非定常承载力的控制对于减少水下车辆的振动和噪音非常重要。本文涉及开发分析完全耦合海上螺旋桨和浸入水中施华系统的液压加强行为的数值方法。开发了一种用于流体建模的三维面板法,结合用于建模轴系系统的有限元方法。通过考虑螺旋桨的湿表面上的非穿透边界条件,结构系统的两组结构和流体的方程牢固地连接。采用模态降低技术来确定耦合流体 - 螺旋桨 - 垫系系统的液体响应,其克服了由于螺旋桨的不对称添加基质的方法的低数值效率。通过将本结果与从有限元分析获得的那些溶液进行比较来确认所提出的方法的有效性。发现,对于靠近轴的螺旋桨和纵向模式频率的驱动力频率的情况,必须考虑流体,螺旋桨和轴的耦合以预测动态响应系统。

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    《Oceanographic Literature Review》 |2021年第5期|1135-1135|共1页
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