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Large-eddy simulations of flow and heat transfer in heated concentric annulus with inner cylinder rotation

机译:内圆柱体旋转时加热同心环空中流动和传热的大涡模拟

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Results from large-eddy simulations are reported for the flow and heat transfer in the annular gap between two concentric cylinders with the outer cylinder stationary and the inner cylinder rotating about its longitudinal axis. The objective of the study was to document the effects of destabilizing rotation on the turbulent transport of heat and momentum. The inner cylinder was heated by applying a constant heat flux while the conditions at the outer wall were adiabatic. Results were obtained for a stationary inner cylinder to serve as baseline for isolating the effects of rotation, and for the inner cylinder rotated at two different rotation numbers viz. 0.21 and 0.86. The Reynolds number was set at 9000 for all cases. With the outer cylinder stationary and the inner cylinder rotating, the effects of rotation are to destabilize the turbulence leading to enhanced mixing and significant increase in wall shear stress and Nusselt number. Additional effects include the displacement from each other of the points where the Reynolds stresses and the corresponding rates of strain are zero, and the non-alignment of their respective directions. These and other results reported herein provide a useful contribution to the very limited literature on heated turbulent flows destabilized by rotation, and can serve as benchmark to aid in the development and validation of turbulence closures for engineering applications.
机译:据报道,大涡模拟的结果是两个同心圆柱体之间的环形间隙中的流动和热传递,外圆柱体固定,内圆柱体绕其纵轴旋转。该研究的目的是记录不稳定旋转对热和动量湍流传递的影响。通过施加恒定的热通量加热内筒,同时外壁的条件是绝热的。获得了用于固定内缸作为隔离旋转效果的基准以及以两个不同转数viz旋转的内缸的结果。 0.21和0.86。对于所有情况,雷诺数均设置为9000。在外筒静止且内筒旋转的情况下,旋转的作用是使湍流不稳定,从而导致混合增强并显着增加壁切应力和Nusselt数。其他影响包括雷诺应力和相应应变率均为零的点之间的位移,以及它们各自方向的不对齐。本文报道的这些和其他结果为关于旋转不稳定的加热湍流的非常有限的文献提供了有用的贡献,并且可以用作基准,以帮助开发和验证用于工程应用的湍流封闭装置。

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