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Mixed Convection Stagnation-Point Flow Past a Vertical Flat Plate With a Second Order Slip

机译:通过具有二阶滑移的垂直平板的混合对流滞止点流

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摘要

An exact similarity solution of the steady mixed convection flow of a viscous and incompressible fluid in the vicinity of two-dimensional stagnation-point with a second-order slip condition has been investigated. Using appropriate similarity variable, the Navier-Stokes equations coupled with the energy equation governing the flow and heat transfer are reduced to a system of nonlinear ordinary (similarity) equations, which are well-posed. These equations are solved numerically in the buoyancy assisting and opposing flow regions. It is found that a reverse flow region develops in the buoyancy opposing flow case, and dual (upper and lower branch) solutions are found to exist in the case of opposing flow region for a certain range of the negative values of the mixed convection parameter. A stability analysis has been performed, which shows that the upper branch solutions are stable and physically realizable in practice, while the lower branch solutions are not stable and, therefore, not physically realizable in practice. The numerical results have been compared with those reported in the literature, the agreement being excellent.
机译:研究了二维停滞点附近具有二阶滑移条件的粘性和不可压缩流体的稳态混合对流的精确相似解。使用适当的相似性变量,将Navier-Stokes方程与控制流动和传热的能量方程式简化为一个非线性的普通(相似性)方程组。这些方程在浮力辅助和反向流动区域中通过数值求解。发现在浮力反向流动情况下出现了反向流动区域,并且在混合对流参数的负值的一定范围内,在反向流动区域的情况下发现存在双重(上部和下部分支)解。进行了稳定性分析,表明上分支解决方案在实践中是稳定且可物理实现的,而下分支解决方案在实践中是不稳定且因此不可物理实现的。数值结果已与文献报道相比较,一致性非常好。

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