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首页> 外文期刊>International Communications in Heat and Mass Transfer >Cooling strategy by mixed convection of a discrete heater at its optimum position in a square cavity with ventilation ports
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Cooling strategy by mixed convection of a discrete heater at its optimum position in a square cavity with ventilation ports

机译:在具有通风口的方腔中,通过将离散加热器在其最佳位置混合对流进行冷却的策略

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We studied cooling strategy in a square enclosure with ventilation ports and a discrete heat source at its optimum position. We searched the optimum heater position by maximizing the global conductance at different Rayleigh and Reynolds numbers and considered three different ventilation ports arrangements. We solved the conservation equations of mass, momentum and energy for mixed convection. We found that the heater position is at off center in all cases, its optimum position is insensitive to the variation of Ra and Re; it solely depends on the ventilation ports arrangement. The Nusselt number is dependent on Ri=Ra/Re~2: at its low values, Nu is a decreasing function of Ri and at its high values, it is an increasing function of it.
机译:我们研究了在方形外壳中的冷却策略,该方形外壳具有通风孔和处于最佳位置的离散热源。我们通过在不同的瑞利数和雷诺数下最大化全局电导来搜索最佳加热器位置,并考虑了三种不同的通风口布置。我们求解了混合对流的质量,动量和能量守恒方程。我们发现,在所有情况下,加热器的位置都偏离中心,其最佳位置对Ra和Re的变化不敏感。它仅取决于通风口的布置。 Nusselt数取决于Ri = Ra / Re〜2:在低值时,Nu是Ri的递减函数,而在高值时,它是Ri的递增函数。

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