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Nonlinear Radiation Heat Transfer Effects in the Natural Convective Boundary Layer Flow of Nanofluid Past a Vertical Plate: A Numerical Study

机译:纳米流体通过垂直板的自然对流边界层流中的非线性辐射传热效应:数值研究

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摘要

The problem of natural convective boundary layer flow of nanofluid past a vertical plate is discussed in the presence of nonlinear radiative heat flux. The effects of magnetic field, Joule heating and viscous dissipation are also taken into consideration. The governing partial differential equations are transformed into a system of coupled nonlinear ordinary differential equations via similarity transformations and then solved numerically using the Runge–Kutta fourth-fifth order method with shooting technique. The results reveal an existence of point of inflection for the temperature distribution for sufficiently large wall to ambient temperature ratio. Temperature and thermal boundary layer thickness increase as Brownian motion and thermophoretic effects intensify. Moreover temperature increases and heat transfer from the plate decreases with an increase in the radiation parameter.
机译:在存在非线性辐射热通量的情况下,讨论了纳米流体通过对流板自然对流边界层流动的问题。还考虑了磁场,焦耳热和粘性耗散的影响。控制的偏微分方程通过相似变换转换为耦合的非线性常微分方程组,然后使用带有射击技术的Runge-Kutta四五阶方法进行数值求解。结果表明,对于足够大的壁与环境温度之比,温度分布存在拐点。随着布朗运动和热泳效应的增强,温度和热边界层的厚度增加。此外,随着辐射参数的增加,温度升高并且来自板的热传递降低。

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