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不同載荷分布型式下軸流泵葉頂間隙流特性研究
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國家重點研發(fā)計劃項目(2018YFB0606103)


Numerical Study of Blade Loading Effects on Tip Leakage Flow in Axial-flow Pump
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    摘要:

    軸流泵葉頂泄漏流對水泵內(nèi)外特性有重要影響,,從控制葉片載荷角度建立了輪緣載荷分布型式與葉頂泄漏流的關(guān)系?;谌S反問題設(shè)計方法設(shè)計得到了具有前載,、中載和后載3種典型輪緣載荷分布型式的軸流泵葉輪模型,采用三維湍流模擬技術(shù)研究了上述3種輪緣載荷分布型式對軸流泵葉頂泄漏流及其誘導(dǎo)的泄漏渦流動的影響,。結(jié)果表明,,相對于輪緣前載型葉輪和輪緣中載型葉輪,輪緣后載型葉輪可有效消除葉片進(jìn)口附近低壓區(qū),,有利于葉輪空化性能,;小流量工況性能有所提高,有效抑制流量揚程曲線的駝峰現(xiàn)象,;同時輪緣后載型葉輪具有更好的小流量工況壓力脈動性能,。

    Abstract:

    The tip leakage flow of axial-flow pump has an important influence on the internal and external characteristics of the pump. The relationship between the blade loading distribution patterns and tip leakage flow was established from the perspective of controlling the blade load. Based on the three-dimensional inverse problem design method, the impeller models of axial-flow pump with three typical blade loading distribution patterns of front load, middle load and after load at the blade tip were obtained. The influence of the blade loading distribution on tip leakage flow and induced leakage vortex flow of the axial-flow pump was studied based on three-dimensional turbulence simulation technique. It was found that compared with the front-loading type impeller and the middle-loading type impeller, the after-loading type impeller can effectively eliminate the low-pressure area near the blade inlet, which was beneficial to the cavitation performance of the impeller. The external performance simulation results showed that the pump performance was improved at the small flow rate and the hump phenomenon of the discharge-head characteristic curve was effectively suppressed, which was consistent with the experiment results. At the same time, the impeller with after load had better pressure pulsation performance under the condition of small flow rate.

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楊魏,楊科迪,伏澤,吳俊杰.不同載荷分布型式下軸流泵葉頂間隙流特性研究[J].農(nóng)業(yè)機(jī)械學(xué)報,2022,53(6):177-183. YANG Wei, YANG Kedi, FU Ze, WU Junjie. Numerical Study of Blade Loading Effects on Tip Leakage Flow in Axial-flow Pump[J]. Transactions of the Chinese Society for Agricultural Machinery,2022,53(6):177-183.

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  • 收稿日期:2021-06-29
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  • 在線發(fā)布日期: 2021-09-05
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