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Unsteady Boundary Layer Flow and Heat Transfer of a Casson Fluid past an Oscillating Vertical Plate with Newtonian Heating

机译:卡森流体的不稳定边界层流动和热交换通过牛顿热经过振荡垂直板的传递

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摘要

In this paper, the heat transfer effect on the unsteady boundary layer flow of a Casson fluid past an infinite oscillating vertical plate with Newtonian heating is investigated. The governing equations are transformed to a systems of linear partial differential equations using appropriate non-dimensional variables. The resulting equations are solved analytically by using the Laplace transform method and the expressions for velocity and temperature are obtained. They satisfy all imposed initial and boundary conditions and reduce to some well-known solutions for Newtonian fluids. Numerical results for velocity, temperature, skin friction and Nusselt number are shown in various graphs and discussed for embedded flow parameters. It is found that velocity decreases as Casson parameters increases and thermal boundary layer thickness increases with increasing Newtonian heating parameter.
机译:本文研究了牛顿加热条件下卡森流体通过无限振荡垂直板的非稳态边界层流动的传热效应。使用适当的无量纲变量,将控制方程转换为线性偏微分方程组。用拉普拉斯变换法对所得方程进行解析求解,得到速度和温度的表达式。它们满足所有施加的初始条件和边界条件,并简化为牛顿流体的一些众所周知的解决方案。速度,温度,皮肤摩擦和Nusselt数的数值结果显示在各种图表中,并讨论了嵌入式流量参数。发现随着牛顿加热参数的增加,速度随卡森参数的增加而减小,而热边界层的厚度随厚度的增加而增加。

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