Numerical Study on the Performance Analysis and Vibration Characteristics of Flexible Marine Propeller

K. Ashok, S. Anantha, R. Vijayakumar
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引用次数: 1

Abstract

This paper addresses the hydro-elastic performance of two composite marine propellers at operating condition and compares the results with conventional materials. The study involves three stages namely, design and development of a B series propeller, hydrodynamic and structural performance analysis in uniform flow and free vibration test both in dry and wet condition. In order to perform the hydro-elastic based fluid structure interaction (FSI), Co-Simulation method was adopted to couple Reynolds Averaged Navier-Strokes Equation (RANSE) based Computational Fluid Dynamics (CFD) solver and finite element method (FEM) solvers. The open water characteristics such as thrust coefficient (KT), torque coefficient (KQ), and open water efficiency (ηO) were analyzed as a function of advance velocity (J) of the propeller. A detailed study of the various blade materials by varying mechanical properties are presented. The results obtained show the variation of stress and deflection on the blade, along with the influence of the blade deformation on the performance of propeller. The vibration behaviour of the propellers were also analysed by Block-Lanczos method in FEM solver to obtain the natural frequencies and the mode shapes using Acoustic Fluid-Structure Coupling method for both dry and wet condition. Results showed that composite propeller have better hydro-dynamic property and lower vibration than metal propeller.
船用柔性螺旋桨性能分析及振动特性数值研究
本文研究了两种船用复合螺旋桨在工作状态下的水弹性性能,并与常规材料进行了比较。研究分为三个阶段,即B系列螺旋桨的设计与研制、均流水动力与结构性能分析、干湿自由振动试验。为了实现基于水弹性的流体结构相互作用(FSI),采用联合仿真方法将基于Reynolds平均Navier-Strokes方程(RANSE)的计算流体动力学(CFD)求解器与有限元法(FEM)求解器耦合在一起。分析了开放水域推力系数KT、转矩系数KQ和开放水域效率ηO随螺旋桨推进速度J的变化规律。对各种叶片材料力学性能的变化进行了详细的研究。计算结果显示了叶片应力和挠度的变化,以及叶片变形对螺旋桨性能的影响。在有限元求解器中采用Block-Lanczos方法对螺旋桨的振动特性进行了分析,得到了干湿两种工况下螺旋桨的固有频率和模态振型。结果表明,复合材料螺旋桨比金属螺旋桨具有更好的水动力性能和更低的振动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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