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Developing Buoyancy Driven Flow of a Nanofluid in a Vertical Channel Subject to Heat Flux

机译:在受热通量作用的垂直通道中发展纳米流体的浮力驱动流

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The developing natural convective flow of a nanofluid in an infinite vertical channel with impermeable bounding walls has been investigated. It is assumed that the nanofluid is dominated by two specific slip mechanisms and that the channel walls are subject to constant heat flux and isothermal temperature, respectively. The governing nonlinear partial differential equations coupling different transport processes have been solved numerically. The variations of velocity, temperature, and nanoparticles concentration have been discussed in relation to a number of physical parameters. It is seen that the approach to the steady-state profiles of velocity and temperature in the present work is different from the ones reported in a previous study corresponding to isothermal wall conditions.
机译:已经研究了纳米流体在具有不可渗透边界壁的无限垂直通道中发展的自然对流。假设纳米流体主要受两种特定的滑动机制控制,并且通道壁分别受到恒定的热通量和等温温度的影响。数值求解了耦合不同传输过程的控制非线性偏微分方程。速度,温度和纳米粒子浓度的变化已针对许多物理参数进行了讨论。可以看出,目前工作中速度和温度的稳态分布图的方法与先前研究中等温壁条件所对应的方法不同。

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