复合材料导管对泵喷推进器水动力性能及振动特性的影响

The influence of a composite duct on the hydrodynamic and vibration characteristics of a pump-jet propulsor

  • 摘要:
    目的 针对泵喷推进器的轻量化与减振需求,提出将碳纤维增强复合材料应用于泵喷推进器导管。
    方法 首先,建立泵喷推进器CFD/FEM双向流固耦合数值计算方法,获取泵喷推进器在流体激励下的结构响应,进而分析结构变形对水动力性能和轴系激励的影响;然后,建立泵喷推进器的碳纤维增强复合材料导管模型,分析复合材料对泵喷推进器水动力、结构振动传递和响应的影响。
    结果 复合材料导管泵喷推进器的结构变形为10−7 m量级,对水动力性能没有影响;复合材料导管前4阶湿模态的固有频率比对应干模态减少了65.3~80.2%;在振动特性方面,在定子与导管连接约束处激励时复合材料导管的总加速度级相较于铜合金下降了1.053 3 dB,但在内表面激励时复合材料导管的振动性能将有所反弹。
    结论 复合材料在实现轻量化的同时,还可以显著改善泵喷推进器的振动特性,研究成果可为推进器设计提供参考。

     

    Abstract:
    Objective To address the lightweight and vibration reduction needs of pump-jet propulsors, this study proposes the use of carbon fiber-reinforced composites in propulsor ducts.
    Method First, a two-way CFD/FEM fluid-structure interaction method was developed to capture structural responses caused by hydrodynamic forces. This enabled a systematic analysis of the effects of structural deformation on both hydrodynamic performance and shaft excitation characteristics. Subsequently, a duct model was developed to investigate the impact of the composite material on hydrodynamic performance, vibration transmission mechanisms, and structural responses.
    Results Composite ducts exhibited structural deformations of 10-7 m, indicating a negligible impact on hydrodynamic performance. The natural frequencies of the first four wet modes showed a 65.3-80.2% reduction compared to the corresponding dry modes. Vibration analysis revealed a 1.0533 dB reduction in total acceleration level at stator-duct connections compared to bronze alloy ducts, though a slight rebound in vibration performance was observed under internal surface excitation.
    Conclusion The study strongly confirms the role of composites in lightweight design, vibration reduction, and performance optimization, providing a basis for propulsor design.

     

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