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離心泵葉片吸力面粗糙帶抑制空化效果研究
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國家重點研發(fā)計劃項目(2018YFB0606103)和甘肅省自然科學基金項目(18JR3RA149)


Effect of Suppressing Cavitation of Rough Zone on Suction Surface of Centrifugal Pump Blade
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    摘要:

    提出一種在葉片前緣吸力面布置粗糙帶抑制空化的方法。選用低比轉數(shù)離心泵作為研究對象,利用修正的SST k-ω湍流模型和Kubota空化模型對離心泵全流域進行空化數(shù)值模擬。通過對比不同空化數(shù)下有,、無粗糙帶結構離心泵葉輪內(nèi)的流場結構、湍動能分布,、速度矢量、空泡體積變化和監(jiān)測點壓力脈動結果,,分析粗糙帶結構對離心泵工作性能的影響和空化抑制效果,。結果表明:粗糙帶結構對離心泵揚程和效率的影響較小,不會對離心泵工作性能造成較大影響,;布置粗糙帶后,,葉輪內(nèi)的流場分布得到改善,漩渦強度減弱,,流動變得平穩(wěn),;粗糙帶結構有效抑制了空泡的初生,減弱了初生階段湍流帶來的能量耗散,,對空化嚴重階段的空泡體積也有一定的抑制效果,;粗糙帶結構對葉輪進口處、葉輪外緣和蝸殼隔舌處的主頻壓力振幅影響較小,,對粗糙帶結構之后且靠近該結構流域的壓力脈動產(chǎn)生不同程度的擾動,。

    Abstract:

    A low specific speed centrifugal pump was selected as the research object, and a method of suppressing cavitation was proposed by arranging rough zone on the suction surface of the blade leading edge. The modified SST k-ω turbulence model and Kubota cavitation model was applied to carry out cavitation numerical simulation on the whole flow area of the centrifugal pump. By comparing the flow field structure, turbulent kinetic energy distribution, velocity vector, cavitation volume change and pressure fluctuation of monitoring points in centrifugal pump impeller with and without rough zone structure under different cavitation numbers, the performance and cavitation suppression effect of rough zone structure on centrifugal pump were analyzed. The research results showed that the rough zone structure had little effect on the head and efficiency loss of the centrifugal pump, and it also did not have a great impact on the operation of the centrifugal pump. After the rough zone was arranged, the flow field distribution in the impeller was improved, the vortex intensity was weakened, and the flow became more stable. The rough zone structure effectively suppressed the initial formation of cavitation bubbles, reduced the energy dissipation caused by turbulence in the initial stage, and also had a certain inhibitory effect on the volume of the cavitation in the stage that cavitation bubbles had a great impact on the head of the centrifugal pump. Under different cavitation numbers, the rough zone structure had little effect on the main frequency pressure amplitude at the impeller inlet, the outer edge of the impeller and the volute separation tongue, and produced varying degrees of disturbance to the pressure pulsation behind the rough zone structure and close to the structure. The structure had certain reference significance for practical engineering applications.

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趙偉國,李清華,亢艷東.離心泵葉片吸力面粗糙帶抑制空化效果研究[J].農(nóng)業(yè)機械學報,2021,52(6):169-176. ZHAO Weiguo, LI Qinghua, KANG Yandong. Effect of Suppressing Cavitation of Rough Zone on Suction Surface of Centrifugal Pump Blade[J]. Transactions of the Chinese Society for Agricultural Machinery,2021,52(6):169-176.

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  • 收稿日期:2020-08-06
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  • 在線發(fā)布日期: 2021-06-10
  • 出版日期: 2021-06-10
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