前置定子对泵喷转子激励力幅频特性影响研究

Influence of the Pre-stator on the Amplitude-Frequency Characteristics of the Excitation Force of the Pump-Jet Rotor

  • 摘要: 摘 要:【目的】螺旋桨旋转产生的非定常激励力包含轴向和周向分量,分别影响航行器结构振动噪声特性和轴系运行稳定性。因此,调控激励力对改善航行器的振动噪声和安全性至关重要。【方法】本文选取suboff艇艉搭载加速导管、5叶定子和4119桨组成的泵喷推进模型,采用CFD方法讨论了有无定子对螺旋桨激励力的综合影响,在此基础上探究定转子间距及叶片周向弯曲度两种参数对激励力幅频特性的调控规律,并结合流场结构分析揭示内在作用机理。【结果】结果显示前置定子会增强转子入流场的非均匀性,使轴向、周向激励力波动幅值均显著增加,轴向上新增高频主峰,周向以2倍叶频为主导;不同定转子间距下激励力幅值随间距呈先减小后增大的非单调变化趋势,中等间距(0.2D~0.4D)下轴向和周向激励力幅值整体处于较低水平;定子周向弯曲度通过改变叶尖低压区分布使得轴向激励力主频向高频段迁移,周向激励力幅值先降低后趋于稳定,且始终低于直定子工况。【结论】研究成果表明:引入前置定子后螺旋桨轴向推力升高,有助于提高航行器推进性能。但会增大轴向激励波动幅值,对振动性能产生不利影响。通过协调定转子间距与周向弯曲度,可实现轴向与周向激励脉动的有效降低,同时调控激励力频率迁移特性,规避低阶共振风险并抑制有害高频尖峰。

     

    Abstract: Objective The unsteady excitation forces generated by the rotation of the rotor consist of axial and circumferential components, which respectively affect the vibration and noise characteristics of the vehicle structure and the operational stability of the shafting system. Therefore, controlling the excitation forces is of vital importance for improving the vibration, noise and safety of the vehicle. Methods This paper selects a pump-jet propulsion model composed of a suboff boat stern-mounted acceleration tube, a 5-blade stator, and 4119 blades. Using the CFD method, it discusses the combined influence of the presence or absence of the stator on the excitation force of the rotor. Based on this, it explores the regulatory laws of the stator-rotor spacing and the circumferential bending degrees of the blades on the amplitude-frequency characteristics of the excitation force, and combines the flow field structure analysis to reveal the underlying mechanism.ResultsThe results show that the stator in front will enhance the non-uniformity of the inflow field of the rotor, resulting in a significant increase in the amplitude of axial and circumferential excitation forces. New high-frequency main peaks appear axially, and the circumferential excitation force is dominated by twice the blade frequency. The amplitude of the excitation force varies non-monotonically with the distance between the stator and rotor, decreasing first and then increasing. At medium spacing (0.2D to 0.4D), the axial and circumferential excitation force amplitudes are generally at a lower level. The circumferential bending degrees of the stator, by changing the distribution of the low-pressure area at the blade tip, causes the main frequency of the axial excitation force to shift to the high-frequency range. The amplitude of the circumferential excitation force decreases first and then tends to stabilize, and lower than that of the straight stator condition. ConclusionThe research results show that after the introduction of the Pre-installed stator, the axial thrust of the rotor increases, which is beneficial to improving the propulsion performance of the vehicle. However, it will increase the amplitude of axial excitation fluctuations, which has an adverse effect on the vibration performance. By optimizing the stator-rotor spacing and circumferential bending degrees, effective reduction of both axial and circumferential excitation pulsations can be achieved. Simultaneously, the frequency migration characteristics of the excitation force are regulated to mitigate low-order resonance risks and suppress harmful high-frequency spikes.

     

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