复合材料转子泵喷推进器的结构响应及流噪声特性研究

Study on structural response and flow noise characteristics of composite rotor pump-jet propulsor

  • 摘要:
    目的 复合材料具有重量轻、耐腐蚀性强、高阻尼比高等优点,为提高水下航行器的综合性能,开展复合材料转子泵喷推进器的特性研究。
    方法 首先,结合计算流体力学(CFD)与有限元法(FEM),建立复合材料转子泵喷推进器的双向流固耦合数值方法和基于FW-H方程的流噪声预报方法;然后,针对不同工况,分析复合材料转子泵喷推进器的敞水性能、结构响应以及流噪声特性。
    结果 结果表明:随着进速系数的增加,复合材料泵喷推进器的转子结构变形、应力应变均有所减小,而流噪声总声压级则先减小后增加,且在J=0.8时的最低值为87.60 dB。与传统铝合金泵喷推进器相比,模型尺度下复合材料泵喷推进器的转子结构变形很小,未引起其水动力性能的明显变化;复合材料泵喷推进器的流噪声在特定频率出现了小幅下降,同时噪声总声压级的下降量也较小。
    结论 研究成果可为泵喷推进器的减重设计、降噪设计等综合性能优化提供理论依据。

     

    Abstract:
    Objectives The composite material has the advantages of light weight, corrosion resistance and high damping ratio. In order to improve the comprehensive performance of underwater vehicles, the characteristics research of composite material rotor pump-jet propulsor is carried out.
    Methods Firstly, by combining Computational Fluid Dynamics (CFD) and the Finite Element method (FEM), a two-way fluid-structure coupling method and a flow noise prediction method based on FW-H equation are established for the composite rotor pump-jet propulsor. Then, investigated the open water performance, structural response characteristics and flow noise characteristics of the composite rotor pump-jet propulsor under different working conditions.
    Results Results show that with increase of advance speed coefficient, the structural deformation and stress-strain values of composite pump-jet propulsor rotor decrease, while the overall sound pressure level of flow noise decreases first and then increases, the lowest is 87.60 dB when J=0.8. Compared with the traditional aluminum alloy pump-jet propulsor, the rotor structure deformation of model scale composite pump-jet propulsor is little, which has no effect on its hydrodynamic shape and does not cause obvious change its hydrodynamic performance; the flow noise of composite pump-jet propulsor is reduced slightly at specific frequency, and overall sound pressure level reduction is also relatively small.
    Conclusion  The research findings can provide theoretical foundations for the comprehensive performance optimization such as weight reduction and noise reduction design of pump-jet propulsor.

     

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