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可調導葉式軸流泵壓力脈動數值分析
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國家自然科學基金項目(51422906)


Pressure Oscillations Prediction of Axial Flow Pump with Adjustable Guide Vanes
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    摘要:

    軸流泵葉輪內部的壓力脈動是影響其運行穩(wěn)定性和葉片疲勞破壞的重要因素之一,為了研究壓力脈動的特征和根源,探索壓力脈動的水力優(yōu)化方法,,應用CFD方法模擬軸流泵內部非定常流動,,在模型試驗結果驗證的基礎上,,計算了葉輪葉片和導葉表面的壓力脈動,,采用快速傅里葉變換進行信號處理和分析比較,。研究結果表明:葉輪葉片表面壓力脈動的主頻是導葉通過頻率,,導葉表面壓力脈動的主頻是葉片通過頻率,;在小流量工況下,通過調節(jié)導葉角度可以顯著降低葉輪葉片和導葉表面因動靜干涉引起的壓力脈動,,從而降低疲勞破壞的風險,。

    Abstract:

    Pressure oscillations in the axial flow pump impeller are associated with operational stability of the pump unit and fatigue failure of the blade. In order to obtain the characteristics and sources of the pressure oscillations and investigate the effects of adjustable guide vanes (AGV) on pressure oscillations, the CFD method based on the RANS equations and SST k-ω turbulence model was applied to simulate the unsteady flow inside the axial flow pump. The monitor points were located on the impeller blade and the guide vane. The static pressure of each survey point was recorded for 14 rotation periods. The calculated head was performed and supported by experimental data with the maximum relative error less than 4%. It indicates that the geometric model, numerical method, and simulation scheme are reasonable and reliable. Fast Fourier transformation method was used in the pressure signal processing. The main frequency of the pressure oscillations on the impeller blade is the guide vane passing frequency and the main frequency on the guide vane is the blade passing frequency, which indicates that the rotor-stator interaction between the impeller and the guide vanes is the source of the pressure oscillation in studied operating points. After adjustment of the guide vanes, the amplitudes of the pressure oscillations on both the impeller blade and the guide vane are reduced. The flow pattern with different guide vane angle was shown by the streamline, and the vortex flow was partly suppressed. It indicates that the rotor-tator interaction is improved in such operating conditions. The adjustable guide vane provides a valid solution to protect the impeller from potential fatigue failure.

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王凡,錢忠東,郭志偉,郜元勇.可調導葉式軸流泵壓力脈動數值分析[J].農業(yè)機械學報,2017,48(3):119-123. WANG Fan, QIAN Zhongdong, GUO Zhiwei, GAO Yuanyong. Pressure Oscillations Prediction of Axial Flow Pump with Adjustable Guide Vanes[J]. Transactions of the Chinese Society for Agricultural Machinery,2017,48(3):119-123.

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  • 收稿日期:2016-06-12
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  • 在線發(fā)布日期: 2017-03-10
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