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Stagnation Point Flow of a Williamson Fluid over aNonlinearly Stretching Sheet with Thermal Radiation

机译:带有热辐射的非线性拉伸片上威廉姆森流体的停滞点流

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摘要

The present analysis deals with the study of stagnation point flow of a Williamson fluid over a nonlinearly stretching sheet with thermal radiation. The partial differential equations governing this phenomenon were transformed into coupled nonlinear ordinary differential equations with suitable similarity transformations. These equations were then solved by numerical technique known as Keller Box method. The various parameters such as Prandtl number (Pr), velocity ratio parameter (ε), Williamson parameter (λ) and Radiation parameter (R) and non linear stretching parameter (n) determining the velocity and temperature distributions, the local Skin friction coefficient and the local Nusselt number governing such a flow were also analyzed. On analysis it was found that the Williamson fluid parameter (λ) decreased both the fluid velocity whereas an increase in (λ) increased wall skin-friction coefficient. The wall temperature gradient increased with an increase in Pr but decreased with radiation parameter R.
机译:本分析研究了具有热辐射的非线性拉伸片材上Williamson流体的停滞点流。控制这种现象的偏微分方程被转换为具有适当相似变换的耦合非线性常微分方程。然后通过称为Keller Box方法的数值技术求解这些方程。各种参数(例如普朗特数(Pr),速度比参数(ε),威廉姆森参数(λ)和辐射参数(R)和非线性拉伸参数(n))决定了速度和温度分布,局部蒙皮摩擦系数和还分析了控制此类流的本地Nusselt数。通过分析发现威廉姆森流体参数(λ)降低了流体速度,而(λ)增大则增加了壁的皮肤摩擦系数。壁温度梯度随Pr的增加而增加,但随辐射参数R减小。

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