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基于LES的泵站前池表面渦及液下渦流瞬態(tài)特性分析
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國家留學(xué)基金委聯(lián)合培養(yǎng)項目(201608320265),、江蘇省普通高校研究生科研創(chuàng)新計劃項目(KYZZ16_0334)、國家自然科學(xué)基金項目(51579118,、51509110)和江蘇高校優(yōu)勢學(xué)科建設(shè)工程項目


Transient Characteristics Analysis of Free-surface and Submerged Vortices in Pump Sump Based on LES
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    摘要:

    泵站前池或泵站進水池是泵進口前的過流部件,,在不同工況的流動中存在多種旋渦,可分為自由表面渦和液下渦,,這些高度不穩(wěn)定的旋渦是影響水泵裝置運行效率及穩(wěn)定性的重要因素,。為了研究泵站進水池的內(nèi)部渦流,采用大渦模擬(LES)及流體體積函數(shù)(VOF)方法對泵站進水池中的三維非穩(wěn)態(tài)流動進行了非定常數(shù)值計算,,并進行了系統(tǒng)的驗證,。基于數(shù)值計算結(jié)果,,統(tǒng)計了旋渦的時均特性,,討論了RANS方法和LES方法對渦流預(yù)測的區(qū)別;采用λ2等值面將旋渦結(jié)構(gòu)可視化,,觀測到自由表面渦及附底渦周圍環(huán)繞的二次渦結(jié)構(gòu),;分析了不同時刻表面渦及附底渦的形態(tài)和瞬態(tài)特性,通過渦量方程得到了對流項及拉升,、彎曲項對主渦渦量變化的影響,。結(jié)果表明:二次渦與主渦的相互作用在一定程度上增強了主渦動量的向外耗散,并通過自旋引起主渦軸向拉升或者彎曲,。

    Abstract:

    The hydraulic performance of water intake system is strongly influenced by the geometry of the pump intake and the approaching flow conditions. Undesirable vortices and the suction of air will be induced if a poor design of the system is made. An open pump intake was referred so that both the free-surface and sub-surface vortices could be taken into account under the influence of the geometry and neighboring flows. Large eddy simulation (LES) was employed to simulate the flow and the associated vortices in the pump intake and the fluctuation of free surface was resolved by means of volume of fluid model (VOF). The verification and validation of the simulated results were systematically performed. On the one hand, the mesh size near the wall was checked with y+ and the LES index of quality (LES_IQ) was calculated which demonstrated the percentage of directly resolved turbulent kinetic energy in LES by using two sets of meshes with different grid quantities. On the other hand, the numerical results were compared with the well-known published experiments with respect to the transient flow feature and time-averaged vorticity profile, where the disparities were also analyzed. Compared with most Reynolds averaged Navier-Stokes (RANS) based simulations, 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. 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 λ2 was adopted to visualize the vortices at different times, showing the main vortex and spirally rounding vortical structures. Transient behaviors of free surface and submerged vortices were analyzed, and the effects of advection and stretching/tilting termed on the vorticity variation were discussed via vorticity transport equation.

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潘強,施衛(wèi)東,趙瑞杰,張德勝.基于LES的泵站前池表面渦及液下渦流瞬態(tài)特性分析[J].農(nóng)業(yè)機械學(xué)報,2018,49(5):186-194. PAN Qiang, SHI Weidong, ZHAO Ruijie, ZHANG Desheng. Transient Characteristics Analysis of Free-surface and Submerged Vortices in Pump Sump Based on LES[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(5):186-194.

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  • 收稿日期:2017-09-14
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  • 在線發(fā)布日期: 2018-05-10
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