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Magnetohydrodynamic flow and heat transfer over a moving cylinder in a nanofluid under convective boundary conditions and heat generation

机译:在对流边界条件下纳米流体中动磁圆柱上的磁流体动力流动和传热以及生热

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In this paper, the effect of convective boundary conditions, heat generation, Brownian motion, and thermophoresis on heat transfer characteristics of a moving cylinder embedded into cooling medium consists of water with nanoparticles are studied. The governing boundary-layer equations transformed to ODE using similarity transformation method and then solved analytically using optimal homotopy asymptotic method for the general case. The velocity, temperature, and concentration profiles within the boundary-layer plotted and discussed in details for various values of the different parameters. Moreover, the effect of boundary-layer behavior on the surface shear stress, rate of heat and mass transfer investigated.
机译:本文研究了对流边界条件,热量产生,布朗运动和热泳对嵌入有水和纳米颗粒的冷却介质中的移动气缸传热特性的影响。一般情况下,将控制边界层方程式通过相似变换法转换为ODE,然后使用最优同伦渐近法进行解析求解。在边界层内绘制速度,温度和浓度曲线,并详细讨论了不同参数的各种值。此外,研究了边界层行为对表面剪切应力,传热速率和传质的影响。

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