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Numerical simulation of natural convection heat transfer inside a perpendicular to shaped cavity filled by a MWCNT-Fe3O4/water hybrid nanofluids using LBM

机译:使用LBM垂直于垂直于成形腔内填充的自然对流传热的数值模拟。使用LBM填充MWCNT-Fe3O4 /水杂交纳米流体

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摘要

Natural convection of multi-wall carbon nanotubes-Iron Oxide nanoparticles/water hybrid nanofluid (MWCNT-Fe3O4/water hybrid nanofluid) inside a perpendicular to shaped enclosure has been numerically investigated using Lattice Boltzmann Method. Numerical in-house code has been developed to study the effects of different parameters including the nanoparticles volume fraction, the Rayleigh number, the cavity obstruction ratio, the heat source position, and the heat source aspect ratio on the hydrodynamic and thermal characteristics. In order to validate the developed numerical code, the results have been compared with previous works and have shown a good concordance. The results indicate that Nusselt number degrades respect to the cavity obstruction ratio because of development of the thermal boundary layer thickness. In addition, an increment of the heat source aspect ratio results in better cooling condition due to decreasing in the boundary layer thickness.
机译:使用晶格Boltzmann方法在数值上研究了多壁碳纳米管 - 氧化铁氧化铁氧化铁纳米粒子/水杂化纳米流体(MWCNT-Fe3O4 /水杂交纳米流动纳米流动纳米流体)。 已经开发了数值内部代码以研究不同参数,包括纳米颗粒体积分数,瑞利数,腔梗阻率,热源位置和热源纵横比在流体动力学和热特性上的影响。 为了验证开发的数字代码,结果已经与以前的作品进行了比较,并显示出很好的一致性。 结果表明,由于热边界层厚度的发展,尤塞格数降低了腔阻塞比。 另外,由于边界层厚度的降低,热源纵横比的增量导致更好的冷却条件。

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