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Note on dual solutions for the mixed convection boundary layer flow close to the lower stagnation point of a horizontal circular cylinder:case of constant surface heat flux

机译:关于混合对流边界层流接近水平圆柱的下停滞点的双重解的注意事项:恒定表面热通量的情况

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摘要

The paper reconsiders the problem of the mixed convection boundary layer flow near the lower stagnation point of a horizontal circular cylinder with a second order slip velocity model and a constant surface heat flux studied recently by Roşca et al. (2013). The ordinary (similarity) differential equations are solved numerically using the function bvp4c from Matlab for different values of the governing parameters. It is found that the similarity equations have two branches, upper and lower branch solutions, in a certain range of the mixed convection parameters. A stability analysis has been performed to show that the upper branch solutions are stable and physically realizable, while the lower branch solutions are not stable and therefore, not physically possible. This stability analysis is different by that presented by Roşca et al. (2013), who have presented a time-dependent analysis to determine the stability of the solution branches.
机译:本文利用Roşca等人最近研究的二阶滑移速度模型和恒定表面热通量,重新考虑了水平圆柱体下停滞点附近混合对流边界层流动的问题。 (2013)。对于不同的控制参数值,使用Matlab的函数bvp4c数值求解普通(相似)微分方程。发现在混合对流参数的一定范围内,相似方程具有两个分支,即上分支解和下分支解。进行了稳定性分析,以显示上部分支解决方案是稳定的并在物理上可实现,而下部分支解决方案则不稳定,因此在物理上不可行。这种稳定性分析与Roşca等人提出的分析不同。 (2013年),他们提出了一个时变分析来确定解决方案分支的稳定性。

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