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首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Natural Convection Analysis in a Cavity with an Inclined Elliptical Heater Subject to Shape Factor of Nanoparticles and Magnetic Field
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Natural Convection Analysis in a Cavity with an Inclined Elliptical Heater Subject to Shape Factor of Nanoparticles and Magnetic Field

机译:腔内的自然对流分析,具有倾斜椭圆加热器的纳米颗粒和磁场的形状因子。

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摘要

The objective of the present study is to peruse the natural convection in the cavity containing inclined elliptical heater under shape factor of nanoparticles and magnetic field. The control volume-based finite element method is used for solving conservation equations. Numerical results show very good grid independency and very good compromise with other works. The result shows the heat transfer grows via mounting nanofluid volume fraction. The increment of Ra number also leads the heat transfer to ascend. Heat transfer of nanofluid with three different shapes of nanoparticles is studied, and results show the platelet nanoparticle is better than the other ones. The influence of magnetic field on heat transfer is also investigated and discussed. The obtained outcomes represent that at a certain Rayleigh number, the average Nusselt number descends with the ascendant of Hartmann number. Finally, the new correlation is reported for calculating the Nu number in these geometries.
机译:本研究的目的是在纳米颗粒和磁场的形状因子下仔细地将包含倾斜椭圆加热器的空腔中的自然对流。基于控制体积的有限元方法用于求解节约方程。数值结果显示出非常好的网格独立性,并与其他作品妥协。结果表明,通过安装纳米流体体积分数,传热生长。 RA编号的增量也会导致升高的传热。研究了具有三种不同形状的纳米颗粒的纳米流体的热传递,结果显示血小板纳米粒子优于其他颗粒。还研究和讨论了磁场对热传递对热传递的影响。所获得的结果代表在某个瑞利数,平均露天数与Hartmann号的升级下降。最后,据报道了新的相关性来计算这些几何形状中的nu编号。

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