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Mixed convection in the stagnation point flow adjacent to a vertical surface in a viscoelastic fluid

机译:粘弹性流体中与垂直表面相邻的停滞点流中的混合对流

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摘要

An analytic technique, namely the homotopy analysis method (HAM), is applied to study the steady mixed convection in two-dimensional stagnation flows of a viscoelastic fluid around heated surfaces for the case when the temperature of the wall varies linearly with the distance from the stagnation point. The two-dimensional boundary layer equations governing the flow and thermal fields are reduced by appropriate transformations to a set of two ordinary differential equations. These equations are solved analytically using the HAM in the buoyancy assisting and opposing regions. It is found that, as for the Newtonian flow case, a reverse flow region develops in the buoyancy opposing flow region, and dual solutions are found to exist in that flow regime for a certain ranges of the buoyancy and viscoelastic parameters.
机译:当壁的温度随距离的变化呈线性变化时,采用一种分析技术,即同伦分析法(HAM),研究粘弹性流体在加热表面周围的二维停滞流中的稳态混合对流。停滞点。通过适当地转换为两个常微分方程组,可以简化控制流动和热场的二维边界层方程。使用浮力辅助区域和相对区域中的HAM解析地求解这些方程式。发现,对于牛顿流情况,在反向浮力处形成反向流动区域,并且在该流动状态下对于一定的浮力和粘弹性参数存在双重解。

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