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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Three-dimensional numerical study of natural convective heat transfer of liquid in a cubic enclosure
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Three-dimensional numerical study of natural convective heat transfer of liquid in a cubic enclosure

机译:立方外壳内液体自然对流传热的三维数值研究

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Steady-state laminar natural convection in a cubic enclosure with a cold vertical wall and two hot square heaters with constant temperature on the opposite wall is studied numerically. The enclosure is filled with various liquids. Three-dimensional Navier-Stokes equations are solved by employing the SIMPLE algorithm. Computations are performed for a range of Rayleigh number from 10(3) to 10(7) while enclosure aspect ratio varies from 0.05 to 1.6. The effects of Rayleigh number, enclosure aspect ratio, and Prandtl number on heat transfer characteristics are studied in detail. The results show that the flow field is very complex and heat transfer from the two heaters is not the same. The effects of Prandtl number are negligible in the range from 5 to 140 with other parameters kept constant. This allows the use of liquids such as water for studying other dielectric liquids, provided the flow geometry and other nondimensional parameters are similar. The overall Nusselt number increases markedly with Rayleigh number. It is also affected by enclosure aspect ratio. It attains the maximum value when aspect ratio is in the range of 0.1-0.2 and decreases as enclosure aspect ratio varies from 0.2 to 1.6. Also, various settings of cooling face and arrangement of heaters are investigated, and the results show that they have considerable effects on heat transfer of both heaters.
机译:数值研究了一个立方立式箱体的稳态层流自然对流,该箱体具有垂直的冷壁和相对的壁上有两个恒温的方形热加热器。外壳中充满了各种液体。通过采用SIMPLE算法求解三维Navier-Stokes方程。在瑞利数从10(3)到10(7)的范围内执行计算,而外壳宽高比在0.05到1.6之间变化。详细研究了瑞利数,围护结构纵横比和普朗特数对传热特性的影响。结果表明,流场非常复杂,两个加热器的传热不相同。在其他参数保持恒定的情况下,Prandtl数的影响在5至140范围内可忽略不计。只要流动几何形状和其他无量纲参数相似,就可以使用液体(例如水)来研究其他介电液体。总体Nusselt数随Rayleigh数显着增加。它还受机箱纵横比的影响。当宽高比在0.1-0.2的范围内时,它将达到最大值,而随着外壳高宽比从0.2到1.6的变化,它会减小。此外,研究了冷却面的各种设置和加热器的布置,结果表明它们对两个加热器的热传递都有相当大的影响。

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