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首页> 外文期刊>Thermal science >HEAT TRANSFER AUGMENTATION OF MAGNETOHYDRODYNAMICS NATURAL CONVECTION IN L-SHAPED CAVITIES UTILIZING NANOFLUIDS
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HEAT TRANSFER AUGMENTATION OF MAGNETOHYDRODYNAMICS NATURAL CONVECTION IN L-SHAPED CAVITIES UTILIZING NANOFLUIDS

机译:L型腔中利用纳米流体对磁水动力学自然对流进行传热强化

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摘要

A numerical study of natural convection heat transfer through an alumina-water nanofluid inside L-shaped cavities in the presence of an external magnetic field is performed. The study has been carried out for a wide range of important parameters such as Rayleigh number, Hartmann number, aspect ratio of the cavity and solid volume fraction of the nanofluid. The influence of the nanoparticle, buoyancy force and the magnetic field on the flow and temperature fields have been plotted and discussed. The results show that after a critical Rayleigh number depending on the aspect ratio, the heat transfer in the cavity rises abruptly due to some significant changes inflow field. It is also found that the heat transfer enhances in the presence of the nanoparticles and increases with solid volume fraction of the nanofluid. In addition, the performance of the nanofluid utilization is more effective at high Rayleigh numbers. The influence of the magnetic field has been also studied and deduced that it has a remarkable effect on the heat transfer and flow field in the cavity that as the Hartmann number increases the overall Nusselt number is significantly decreased specially at high Rayleigh numbers.
机译:在存在外部磁场的情况下,通过L型腔内的氧化铝-水纳米流体进行自然对流换热的数值研究。已经对广泛的重要参数进行了研究,例如瑞利数,哈特曼数,空腔的纵横比和纳米流体的固体体积分数。绘制并讨论了纳米粒子,浮力和磁场对流场和温度场的影响。结果表明,在取决于纵横比的临界瑞利数之后,由于流场的一些显着变化,腔体内的热传递突然增加。还发现在纳米颗粒的存在下传热增强并且随着纳米流体的固体体积分数而增加。另外,在高瑞利数下,纳米流体利用的性能更有效。还研究了磁场的影响,并得出结论,磁场对腔中的传热和流场具有显着影响,特别是在高瑞利数下,随着哈特曼数的增加,总的努塞尔数会显着降低。

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