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Analytical Solutions for the Flow of a Fractional Second Grade Fluid due to a Rotational Constantly Accelerating Shear

机译:旋转恒加速剪切引起的分数二等分流体流动的解析解

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Exact analytic solutions are obtained for the flow of a generalized second grade fluid in an annular region between two infinite coaxial cylinders. The fractional calculus approach in the governing equations of a second grade fluid is used. The exact analytic solutions are constructed by means of Laplace and finite Hankel transforms. The motion is produced by the inner cylinder which is rotating about its axis due to a constantly accelerating shear. The solutions that have been obtained satisfy both the governing equations and all imposed initial and boundary conditions. Moreover, they can be easily specialized to give similar solutions for second grade and Newtonian fluids. Finally, the influence of the pertinent parameters on the fluid motion, as well as a comparison between the three models, is underlined by graphical illustrations.
机译:对于广义的二级流体在两个无限同轴圆柱体之间的环形区域中的流动,获得了精确的解析解。在二级流体的控制方程中使用分数演算方法。精确的解析解是通过Laplace和有限Hankel变换构造的。该运动由内部圆柱体产生,该内部圆柱体由于不断加速的剪切而绕其轴线旋转。已获得的解既满足控制方程,又满足所有施加的初始条件和边界条件。而且,它们可以很容易地进行专业化处理,从而为二等和牛顿流体提供类似的解决方案。最后,图形说明强调了相关参数对流体运动的影响以及这三个模型之间的比较。

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