首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Large eddy simulations of variable property turbulent flow in horizontal and vertical channels with buoyancy and heat transfer effects
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Large eddy simulations of variable property turbulent flow in horizontal and vertical channels with buoyancy and heat transfer effects

机译:具有浮力和传热效果的水平和垂直通道内可变特性湍流的大涡模拟

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Turbulent combined flow of forced and natural convection was investigated using large eddy simulations for horizontal and vertical channels with significant heat transfer. The walls were maintained at constant temperatures, one heated and the other cooled, at temperature ratios of 1.01, 1.99, and 3.00, respectively. Results showed that with increasing the Grashof number, large-scale turbulent motions emerged near the wall, resulting in significant changes in turbulent intensities for the horizontal channel flow case. Aiding and opposing flows, however, for the vertical channel, emerge near the heated and cooled walls, respectively, while the pressure gradient drives the mean flow upwards. Buoyancy effects on the mean velocity, temperature, and turbulent intensities were observed near the walls. In the aiding flow, the turbulent intensities and heat transfer were suppressed and the flow was relaminarized at large values of the Grashof number. In the opposing flow, however, turbulence was enhanced with increasing velocity fluctuations.
机译:对大型传热模拟了水平和垂直通道的强涡流和自然对流湍流,并进行了研究。将壁保持在恒定温度下,一个加热而另一个冷却,分别以1.01、1.99和3.00的温度比。结果表明,随着Grashof数的增加,壁附近出现了大规模的湍流运动,从而导致水平通道流动情况下的湍流强度发生了显着变化。但是,垂直通道的辅助流和反向流分别出现在加热壁和冷却壁附近,而压力梯度将平均流向上驱动。在壁附近观察到浮力对平均速度,温度和湍流强度的影响。在辅助流中,湍流强度和热传递受到抑制,并且在大的Grashof值下重新流动。然而,在逆流中,湍流随着速度波动的增加而增强。

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