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Thin film flow of an unsteady Maxwell fluid over a shrinking/stretching sheet with variable fluid properties

机译:不稳定麦克斯韦流体在具有可变流体特性的收缩/拉伸片上的薄膜流动

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Purpose - This paper aims to explore the variable properties of a flow inside the thin film of a unsteady Maxwell fluid and to analyze the effects of shrinking and stretching sheet. Design/methodology/approach - The governing mathematical model has been developed by considering the boundary layer limitations. As a result of boundary layer assumption, a nonlinear partial differential equation is obtained. Later on, similarity transformations have been adopted to convert partial differential equation into an ordinary differential equation. A well-known homotopy analysis method is implemented to solve the problem. MATHEMATICA software has been used to visualize the flow behavior. Findings - It is observed that variable viscosity does not have a significant effect on velocity field and temperature distribution either in shrinking or stretching case. It is noticed that Maxwell parameter has no dramatic effect on the flow of thin liquid fluid It has been seen that heat flow increases by increasing the conductivity with temperature in both cases (shrinking/stretching). As a result, fluid temperature goes down when than delta = 0.05 than delta = 0.2. Originality/value - To the best of authors' knowledge, nobody has conducted earlier thin film flow of unsteady Maxwell fluid with variable fluid properties and comparison of shrinking and stretching sheet.
机译:目的-本文旨在探索不稳定麦克斯韦流体薄膜内部流动的可变特性,并分析片材收缩和拉伸的影响。设计/方法/方法-通过考虑边界层限制来开发控制数学模型。作为边界层假设的结果,获得了非线性偏微分方程。后来,采用相似变换将偏微分方程转换为常微分方程。为了解决该问题,实施了众所周知的同伦分析方法。 MATHEMATICA软件已用于可视化流动行为。发现-在收缩或拉伸情况下,可变粘度对速度场和温度分布没有显着影响。值得注意的是,麦克斯韦参数对稀薄液体的流动没有显着影响。已经发现,在两种情况下(收缩/拉伸),热流量都随着温度的升高而随电导率的增加而增加。结果,当δ= 0.05比δ= 0.2时,流体温度下降。原创性/价值-据作者所知,没有人进行过具有可变流体特性的非稳定麦克斯韦流体的较早薄膜流动以及收缩片和拉伸片的比较。

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