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Analytical solution to the problem of heat transfer in an MHD flow inside a channel with prescribed sinusoidal wall heat flux

机译:具有正弦正弦壁热通量的通道内MHD流中传热问题的解析解

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An MHD laminar flow through a two dimensional channel subjected to a uniform magnetic field and heated at the walls of the conduit over the whole length with a sinusoidal heat flux of vanishing mean value or not, is studied analytically. General expressions of the temperature distribution and of the local and mean Nusselt numbers are obtained by using the technique of linear operators in the case of negligible Joule and viscous dissipation and by taking into account the axial conduction effect. The principal results show that an increase of the local Nusselt number with Hartmann number is observed, and, far from the inlet section, the average heat transfer between the fluid and the walls shows a significant improvement at all values of Hartmann number used when the frequency of the prescribed sinusoidal wall heat flux is increasing in the case of vanishing mean value of the heat flux and this is true especially at low Peclet numbers.
机译:分析研究了通过二维通道的MHD层流,该二维通道受到均匀的磁场作用,并在导管壁的整个长度上加热,且正弦波通量的平均值不为零。在焦耳和粘性耗散可忽略不计的情况下,通过使用线性算子技术,并考虑轴向传导效应,可以获得温度分布以及局部和平均努塞尔数的一般表达式。主要结果表明,观察到局部Nusselt数随Hartmann数增加,并且在远离进口部分的情况下,流体和壁之间的平均热传递在频率为在热通量平均值消失的情况下,规定的正弦波壁热通量的百分比会增加,这尤其在低Peclet数时是正确的。

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