首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Influence of inclined Lorentz forces through a porous media on squeezing Cu-H_2o nanofluid in the presence of heat source/sink
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Influence of inclined Lorentz forces through a porous media on squeezing Cu-H_2o nanofluid in the presence of heat source/sink

机译:通过多孔介质在热源/水槽存在下挤出Cu-H_2O纳米流体的多孔介质对倾斜的洛伦兹力的影响

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摘要

Purpose - The purpose of this paper is to find the approximate solutions of unsteady squeezing nanofluid flow and heat transfer between two parallel plates in the presence of variable heat source, viscous dissipation and inclined magnetic field using collocation method (CM). Design/methodology/approach - The partial governing equations are reduced to nonlinear ordinary differential equations by using appropriate transformations and then are solved analytically by using the CM. Findings - It is observed that the enhancing values of aligned angle of the magnetic causes a reduction in temperature distribution. It is also seen that the effect of nanoparticle volume fraction is significant on the temperature but negligible on the velocity profile. Originality/value - To the best of the authors' knowledge, no research has been carried out considering the combined effects of inclined Lorentz forces and variable heat source on squeezing flow and heat transfer of nanofluid between the infinite parallel plates.
机译:目的 - 本文的目的是在使用搭配方法(cm)的可变热源(cm)的情况下,在存在可变热源的存在下,在两个平行板之间的不稳定挤压纳米流体流和传热的近似解。设计/方法/方法 - 通过使用适当的变换,将部分控制方程减少到非线性常分方程,然后通过使用CM分析地解决。发现 - 观察到磁力的对准角度的增强值导致温度分布的降低。还可以看出,纳米颗粒体积分数的效果在温度下显着,但在速度曲线上可忽略不计。原创性/价值 - 据作者所知,考虑到倾斜的Lorentz力和可变热源对无限平行板之间的纳米流体挤出和传热的组合效果,没有进行研究。

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