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Study of velocity and temperature distributions in boundary layer flow of fourth grade fluid over an exponential stretching sheet

机译:指数拉伸片上四年级流体边界层流动的速度和温度分布研究

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This study deals with the investigation of boundary layer flow of a fourth grade fluid and heat transfer over an exponential stretching sheet. For analyzing two heating processes, namely, (i) prescribed surface temperature (PST), and (ii) prescribed heat flux (PHF), the temperature distribution in a fluid has been considered. The suitable transformations associated with the velocity components and temperature, have been employed for reducing the nonlinear model equation to a system of ordinary differential equations. The flow and temperature fields are revealed by solving these reduced nonlinear equations through an effective analytical method. The important findings in this analysis are to observe the effects of viscoelastic, cross-viscous, third grade fluid, and fourth grade fluid parameters on the constructed analytical expression for velocity profile. Likewise, the heat transfer properties are studied for Prandtl and Eckert numbers.
机译:这项研究涉及对第四级流体边界层流动和指数拉伸片上的热传递的研究。为了分析两个加热过程,即(i)规定的表面温度(PST)和(ii)规定的热通量(PHF),已经考虑了流体中的温度分布。已经采用了与速度分量和温度相关的适当变换,以将非线性模型方程简化为常微分方程组。通过有效的解析方法求解这些简化的非线性方程,可以揭示流场和温度场。该分析的重要发现是观察粘弹性,交叉粘滞,三等流体和四等流体参数对所构造的速度分布解析表达式的影响。同样,研究了Prandtl和Eckert数的传热特性。

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