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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Numerical Simulation of Unsteady Turbulent Flow in Axisymmetric sudden Expansions
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Numerical Simulation of Unsteady Turbulent Flow in Axisymmetric sudden Expansions

机译:轴对称突变体中非定常湍流的数值模拟

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This paper is concerned with the numerical simulation of unsteady turbulent flows behind sudden expansions without inlet swirl. Time dependent simulations have been carried out using the VLES approach with the standard k-#epsilon# model. The expansion ratio investigated is in the range from 1.96-6.0. The simulations show that the flows in axisymmetric sudden expansions are inherently unstable when the expansion ratio is above a critical value. The precessing phenomenon, which features self-sustained precession of the global flowfield around the expansion centerline, is predicted successfully using CFD, with simulated oscillation frequencies that are in general agreement with reported data. For the case of expansion ratios from 3.5-6.0, a combination of a precession motion and a flapping motion in a rotating frame of reference is predicted in terms of the jet movement. Large-scale structures are identified in the downstream flowfield. Other imporant phenomena, such as the transition of the oscillation patterns, have also been predicted.
机译:本文涉及在没有进气涡旋的情况下突然膨胀后的非定常湍流的数值模拟。已使用VLES方法对标准k-#epsilon#模型进行了与时间有关的仿真。研究的膨胀比在1.96-6.0的范围内。仿真表明,当膨胀比高于临界值时,轴对称突然膨胀中的流动固有地不稳定。使用CFD成功地预测了旋进现象,该旋进现象具有在扩展中心线周围的全局流场的自我维持的进动,模拟振荡频率与报告的数据基本一致。对于从3.5到6.0的膨胀比,根据射流运动预测了进动运动和旋转参考系中的拍打运动的组合。在下游流场中识别出大型结构。还已经预测到其他重要现象,例如振荡模式的转变。

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