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泵站進水池吸入口渦旋結構及湍流特性的大渦模擬
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國家自然科學基金面上項目(51776087)


Large Eddy Simulation of Vortex Structure and Turbulence Characteristics in Pump Sump
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    摘要:

    進水池是泵站工程的重要組成部分,其流態(tài)及水力特性對水泵性能有著重要的影響,不良的流態(tài)往往伴隨著渦旋等水力現(xiàn)象的出現(xiàn)。采用流體體積(VOF)方法及大渦模擬(LES)對進水池中的流動和相關渦旋進行數(shù)值模擬,系統(tǒng)分析LES湍流模型所采用的網(wǎng)格,對網(wǎng)格進行收斂性驗證,并將數(shù)值模擬結果與PIV實驗結果進行比較,數(shù)值模擬結果與PIV實驗結果吻合,說明本模擬方法可以用來進一步深入探討二階湍流參數(shù)。通過LES模擬結果對進水池中表面渦和底渦的形成和演化的基本機制進行探討,揭示了渦旋周圍的各向異性湍流結構以及動量的傳遞過程。

    Abstract:

    The pump sump is an important part of pump station. Its flow and hydraulic characteristics have an important impact on the performance of the pump. Poor flow patterns are often accompanied by hydraulic phenomena such as vortices. Vortices in the vicinity of pump intakes influence the pump performance with loss of efficiency and vibration. The vortex may appear in the pump sump, and the vortex is generally divided into free surface vortex and submerged vortex. Compared with most Reynolds averaged Navier-Stokes (RANS) based simulations, large eddy simulation (LES) showed a better prediction for all kinds of vortices on location, shape, size of vortex core, velocity, as well as the turbulence kinetic energy inside vortex core. The LES results agreed with PIV results well. Based on the numerical results, timeaveraged behavior of three typical vortices showed better similarities with reality that there was always a core region surrounding the axis where the azimuthal velocity stopped increasing and decreased to zero as radius went to zero. Besides, isosurface of λ2 was adopted to visualize the vortices. The volume of fluid model (VOF) and LES were used to simulate the vortices in the pump sump. The LES model, including the employed mesh was systematically analyzed and the numerical results were compared with the wellknown published experiment with respect to the mean velocity and vorticity fields. Particular interests were paid to discover evolution of the freesurface and wallattached vortices in term of their temporal and spatial characteristics. The anisotropic turbulence structure around the vortices were revealed as well as the momentum transport. The findings provided a deep insight into the application of LES in pump sump and the underlying mechanism of vortex formation and evolution in the sump.

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張德勝,李普熙,趙睿杰,潘強,施衛(wèi)東.泵站進水池吸入口渦旋結構及湍流特性的大渦模擬[J].農(nóng)業(yè)機械學報,2019,50(10):134-141. ZHANG Desheng, LI Puxi, ZHAO Ruijie, PAN Qiang, SHI Weidong. Large Eddy Simulation of Vortex Structure and Turbulence Characteristics in Pump Sump[J]. Transactions of the Chinese Society for Agricultural Machinery,2019,50(10):134-141.

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  • 收稿日期:2019-03-27
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  • 在線發(fā)布日期: 2019-10-10
  • 出版日期: 2019-10-10