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Exact Solutions for Laminar Periodic Non-Axisymmetric Slip Flow of a Viscous Incompressible Fluid due to a Porous Rotating Disk

机译:多孔旋转盘对粘性不可压缩流体的层流周期性非轴对称滑移的精确解

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摘要

An exact analytical solution of the steady, three-dimensional Navier-Stokes equations is obtained for the case of flow due to a porous disk rotating with a constant angular velocity, where the disk surface admits partial slip. The basic equations have been solved by reducing them to second order ordinary differential equations with appropriate boundary conditions. The temperature distribution in the flow field is also investigated in the case when the disk is maintained at constant temperature and heat is being transferred from the disk to the fluid. The influence of the slip parameter and other pertinent parameters on the velocity and the temperature profiles are discussed. Finally, the results obtained are shown graphically for various parameters. The main finding is that the velocity and temperature profiles are greatly influenced by the slip parameter.
机译:对于由于多孔盘以恒定角速度旋转而引起的流动情况,可获得稳定的三维Navier-Stokes方程的精确解析解,其中盘表面允许部分滑动。基本方程已通过将它们简化为带有适当边界条件的二阶常微分方程来求解。当圆盘保持恒定温度并且热量从圆盘传递到流体时,还研究了流场中的温度分布。讨论了滑动参数和其他相关参数对速度和温度分布的影响。最后,对于各种参数,以图形方式显示了获得的结果。主要发现是,滑移参数极大地影响了速度和温度曲线。

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