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首页> 外文期刊>Annual Review of Fluid Mechanics >Laminar, Transitional, and Turbulent Flows in Rotor-Stator Cavities
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Laminar, Transitional, and Turbulent Flows in Rotor-Stator Cavities

机译:转子-定子腔中的层流,过渡流和湍流

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This article reviews the range of flows that may be created within thin cylindrical or annular cavities due to the rotation of one of the confining disks. At low Reynolds numbers, the rotation gives rise to an axisymmetric, radially outward motion near the rotor with a return flow along the stationary disk. As the Reynolds number is raised, this base flow gives way to a shear flow populated by discrete vortices, whether of cylindrical or spiral form, near both the rotating and stationary disks. At Reynolds numbers high enough for turbulent flow to occur, in the twentieth century both experimental and computational studies treated the flow as axisymmetric and steady. Recent research has shown, however, that complex organized structures also persist in the turbulent regime.
机译:本文回顾了由于一个限制盘的旋转而可能在细圆柱或环形腔内产生的流动范围。在低雷诺数下,旋转会引起转子附近的轴对称径向向外运动,并沿着固定盘产生回流。随着雷诺数的增加,该基本流向由离散的涡流(无论是圆柱形还是螺旋形)构成的剪切流让位于旋转盘和固定盘附近。在雷诺数足够高以至于发生湍流的情况下,在20世纪,无论是实验研究还是计算研究都将其视为轴对称且稳定的。但是,最近的研究表明,复杂的组织结构在动荡的政权中也仍然存在。

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