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導葉式離心泵內(nèi)部流動特性數(shù)值模擬
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國家自然科學基金項目(51076126)


Numerical Analysis of Hydraulic Performance in Centrifugal Pump with Vane Diffuser
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    摘要:

    采用SST k—ω湍流模型對導葉式單級離心泵內(nèi)部流場與壓力場進行非穩(wěn)態(tài)數(shù)值模擬,并進行試驗驗證。根據(jù)數(shù)值計算結果分析導葉、蝸殼內(nèi)非定常壓力回收與總壓損失、壓力脈動等特性。結果表明,數(shù)值模擬性能預測結果與試驗結果較吻合;由于動靜干涉作用影響,導葉與蝸殼內(nèi)總壓損失、靜壓回收呈現(xiàn)周期性波動,且導葉內(nèi)總壓損失與靜壓回收都大于蝸殼;導葉內(nèi)大量漩渦主要由導葉葉片前緣漩渦誘導產(chǎn)生,且逐漸向出口延伸,而蝸殼內(nèi)漩渦主要由導葉葉片尾緣誘導產(chǎn)生。葉輪中最大壓力脈動強度集中于葉輪出口處,導葉與蝸殼中壓力脈動強度最大區(qū)域分別集中于導葉前緣附近、蝸殼出口。

    Abstract:

    The unsteady numerical method was applied to simulate the flow field and pressure field in the single-stage centrifugal pump with vane diffuser by using SST k—ω turbulent model. The static pressure recovery, energy loss and pressure fluctuation in the diffuser and volute were analyzed and the results showed that the performance using the numerical method was in good agreement with data obtained from experimental investigation. The total pressure loss and static pressure recovery in the diffuser and volute presented periodic fluctuation due to interaction between impeller and diffuser, and they were much bigger than those in volute. The pressure loss in vane diffuser was increased as the increase of flow rate. The static pressure recovery was got small as the flow rate came large. Pressure loss and pressure recovery in volute presented the same trend. The difference between the maximum and minimum pressure losses was increased as the increase of operating flow rate, as well as the pressure recovery. The pressure pulsation intensity distributed on impeller was got stronge as the increase of operating flow rate. The pressure pulsation intensity distributed on guide blade was increased at low flow rate and reached the maximum value, and then it was decreased as the increase of flow rate. The large number of vorticity in the diffuser moved to exit was induced by the vane leading edge, but it was provoked by the vane trialing in volute. The maximum pressure fluctuation intensity coefficient (Csdv) in impeller was concentrated at the impeller exit, and it was concentrated on the vane leading edge and the volute exit in the diffuser and volute, respectively.

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朱相源,江偉,李國君,孫光普.導葉式離心泵內(nèi)部流動特性數(shù)值模擬[J].農(nóng)業(yè)機械學報,2016,47(6):34-41,46. Zhu Xiangyuan, Jiang Wei, Li Guojun, Sun Guangpu. Numerical Analysis of Hydraulic Performance in Centrifugal Pump with Vane Diffuser[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(6):34-41,46.

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  • 收稿日期:2015-11-27
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  • 在線發(fā)布日期: 2016-06-10
  • 出版日期: 2016-06-10