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3D Numerical study of the effect of aspect ratio on mixed convection air flow in upward solar air heater

机译:3D纵横比对向上太阳能空气加热器混合对流空气流动影响的数值研究

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A 3D Numerical study of mixed convection air flow in upward solar air heater with large spanwise aspect ratio (A = 10 to 40) was performed using CFD commercial code Fluent 14.5 (ANSYS). The main objective of this study is to investigate the channel height's effect (aspect ratio) on flow pattern and heat transfer in upward solar air heater in the particular case of low Re and high aspect ratio. The bottom plate (absorber) was submitted to Constant Heat Flux (CHF) in the range of 200 to 1000 W/m(2) and Reynolds number was varied from 50 to 1000. Our results are in concordance with most of authors conclusions about Poiseuille-Rayleigh-Benard flows. In mixed convection, increasing heat flux enhances heat transfer unlike forced convection flows. Simulation results of flow visualizations and Nusselt number calculations have shown that depending on Ri*, the velocity and temperature distributions in SAH vary greatly with the channel's height. The obtained results were different from previous studies. Indeed, our investigation of channel's height was achieved for the same heat flux but different Grashof numbers. For low channel's heights (high aspect ratio), increasing heat flux has not a significant effect but for higher channel's heights, an augmentation of heat flux enhances buoyancy effects in the flow and causes high turbulence. Also, increasing Reynolds number in low channel's heights (high A), can enhance substantially heat transfer. For higher channel's heights (low A), increasing Reynolds number decreases Ri* and thus buoyancy forces. Heat transfer is reduced and so Nusselt number. The obtained results may be very useful for engineers in designing and testing solar collectors.
机译:使用CFD商业代码流畅的14.5(ANSYS)进行具有大的跨度纵横比(A = 10至40)的向上太阳能空气加热器中混合对流空气流量的3D数值研究。本研究的主要目的是在低Re和高纵横比的特定情况下,研究通道高度和向上太阳能空气加热器的流动模式和传热。将底板(吸收器)提交至恒定的热通量(CHF),在200至1000W / m(2)的范围内,雷诺数从50到1000变化。我们的结果与大多数作者结论有关Poiseuille的结论 - rayleigh-benard流动。在混合对流中,随着强制对流流,增加热通量增强了传热。流动可视化和露珠数计算的仿真结果表明,根据RI *,SAH中的速度和温度分布与通道的高度大。获得的结果与先前的研究不同。实际上,我们对相同的热通量而且实现了对频道的高度但不同的格雷什数。对于低通道的高度(高纵横比),增加的热通量没有显着效果,而是对于较高的通道高度,加热通量的增强增强了流动中的浮力效应并引起高湍流。而且,在低通道的高度(高a)中增加雷诺数可以增强大致热传递。对于较高的通道的高度(低a),增加雷诺数减少了Ri *并因此浮力。传热减少,营养数量。获得的结果对于设计和测试太阳能集热器的工程师来说非常有用。

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