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摘要:
Coupled natural convection and surface radiation within a square cavity, filled with air and submitted to discrete heating and cooling from all its walls, is studied numerically. The thermally active elements are centrally located on the walls of the cavity. Two heating modes, called SB and SV, are considered. They correspond to bottom and vertical left elements sinusoidally heated in time, respectively, while the top and vertical right ones are constantly cooled. The remaining portions of all the walls are considered adiabatic. The parameters governing the problem are the amplitude and the period of the temporally sinusoidal temperature, the emissivity of the walls , the relative lengths of the active elements and the Rayleigh number . The effect of such parameters on flow and thermal fields and the resulting heat transfer is examined. It is shown that, during a flow cycle, the flow structure can present complex behavior, depending on the emissivity and the amplitude and period of the exciting temperature. The rate of heat transfer is generally enhanced in the case of sinusoidal heating. Also, the resonance phenomenon existence, characterized by maximum fluctuations in flow intensity and heat transfer, is proved in this study.
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篇名 Effect of Sinusoidal Heating on Natural Convection Coupled to Thermal Radiation in a Square Cavity Subjected to Cross Temperature Gradients
来源期刊 电子器件冷却与温度控制期刊(英文) 学科 物理学
关键词 Natural CONVECTION Thermal Radiation Heatlines Cross Gradients of Temperature PERIODIC HEATING RESONANT Heat Transfer Numerical Study
年,卷(期) 2013,(1) 所属期刊栏目
研究方向 页码范围 7-21
页数 15页 分类号 O3
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Natural
CONVECTION
Thermal
Radiation
Heatlines
Cross
Gradients
of
Temperature
PERIODIC
HEATING
RESONANT
Heat
Transfer
Numerical
Study
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电子器件冷却与温度控制期刊(英文)
季刊
2162-6162
武汉市江夏区汤逊湖北路38号光谷总部空间
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64
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0
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