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Numerical Study of Heat Transfer Enhancement for Low-Pressure Flows in a Square Cavity with Two Fins Attached to the Hot Wall Using Al2O3-Air Nanofluid

机译:使用Al2O3 - 空气纳米流体附着在热壁上与热壁上的翅片中低压流动热传递增强的数值研究

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摘要

The gaseous low-pressure nanofluid flow of a steady-state two-dimensional laminar natural convection heat transfer in a square cavity of length L with two attached solid fins to the hot wall is numerically investigated. Such flows are found in many engineering applications, such as nuclear reactors and electronic cooling equipment. Physical parameter ranges in this study are as follows: 0 = Kn = 0.1, 10(3)= Ra = 10(6), 0 =phi = 0.2, L-F/L takes the value of 0.5, H-F takes the values of 0.25 to 0.75. Simulation results show that Nusselt number depends directly on the Rayleigh number and inversely on the Knudsen number. In addition, it is found that heat transfer will be enhanced by dispersing the nanoparticles of Al2O3 in the base low-pressure gaseous flow. Moreover, it is found that the Nusselt number of such flows increases as the nano-particle volume fraction increases for the investigated range of volume fractions considered in this study. In addition, a correlation of the Nusselt number among all the investigated parameters in this study is proposed as Nu = 0.2196 Ra(0.0829)Kn(-0.511)phi(0.104).
机译:数值研究了在长度L的长度L方形腔中的稳态二维层状自然对流传热中的气态低压纳米流体流动。这种流量在许多工程应用中找到,例如核反应堆和电子冷却设备。本研究中的物理参数范围如下:0& = kn = 0.1,10(3)& = 10(6),0& = phi值为0.5,HF的值为0.25至0.75。仿真结果表明,NUSERET号码直接取决于RAYLEIGH号码并反映在knudsen号上。另外,发现通过将Al 2 O 3的纳米颗粒分散在基础低压气流中,将增强热传递。此外,发现这种流量的氮这些流量的数量随着本研究中考虑的研究的体积分数的增加而增加。此外,提出了本研究中所有研究参数中的良好数量的相关性是Nu = 0.2196 Ra(0.0829)KN(0.511)PHI(0.104)。

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