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首页> 外文期刊>Journal of thermal analysis and calorimetry >Numerical investigation of the magnetic field effect on the heat transfer and fluid flow of ferrofluid inside helical tube
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Numerical investigation of the magnetic field effect on the heat transfer and fluid flow of ferrofluid inside helical tube

机译:螺旋管内铁磁流体传热与流体流动的数值研究

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摘要

The effect of a magnetic field on heat and fluid flow of ferrofluid in a helical tube is studied numerically. The helical tube is under constant wall temperature boundary condition. Parametric studies are done to investigate the effects of different factors such as the magnetic field gradient value and Reynolds number on heat transfer rate and pressure drop. Results indicate that the magnetic field increases the Nusselt number by about 40%. At high magnetic gradient value, Nusselt number and friction factor rise slightly, while at low magnetic gradient value, the increment of Nusselt number is considerable. Furthermore, the growth of wall shear stress on tube wall results in lower thermal-hydraulic performance at the high magnetic gradient value. There is an optimum case for thermal-hydraulic performance which results in most top performance of helical tube in the presence of the magnetic field.
机译:在数值上研究了磁场对螺旋管中的铁物质流体的热量和流体流动的影响。 螺旋管处于恒定壁温边界条件下。 完成参数研究以研究不同因素,例如磁场梯度值和雷诺数对传热率和压降的影响。 结果表明,磁场增加了营养数约40%。 在高磁性梯度值下,尤其孔数和摩擦因子略微上升,而在低磁梯度值的同时,NUSERET数的增量是相当大的。 此外,管壁上的壁剪切应力的生长导致高磁梯度值下的较低的热液压性能。 热液压性能存在最佳情况,这导致磁场存在下螺旋管的最高性能。

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