模拟多孔吸收器高度可变对太阳能烟囱通风性能的影响

Suhaib Alshbailat, Mohammed A. Nima
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引用次数: 0

摘要

在计算工作中测试了添加金属泡沫对太阳能烟囱热性能和热行为的改善效果。太阳能烟囱模型的流动和传热控制方程是通过计算流体动力学(CFD)求解的。求解时使用了 ANSYS FLUENT 14.5 中的控制体积数值方法。它用于构建有限体积建模技术,以求解控制方程和辐射传热方程。结果表明,在使用标准平板吸收板的情况下,加入金属泡沫(10 PPI)可增加热传递,从而使太阳能烟囱处的空气流速增加约 13.3%。当吸收板的高度从 5 厘米变为 25 厘米时,10 PPI 的最高平均气流速度分别下降了 54.4%。
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Simulation of Effect a Variable Height of Porous Absorber on Ventilation Solar Chimney Performance
The improvement in solar chimneys' thermal performance and thermal behavior that can be achieved by adding metal foam has been tested in computational work. The flow and heat transfer governing equations for solar chimney models were solved using computational fluid dynamics (CFD). It was solved using the control volume numerical method in ANSYS FLUENT 14.5. It is used to construct a finite volume modeling technique for solving the governing equations and the radiation heat transfer equations. With standard flat absorber plates, the results showed that heat transmission was increased by the inclusion of metal foam (10 PPI), leading to an increase in air velocity at the solar chimney of around 13.3%. The highest average air velocity with 10 PPI drops by 54.4% as the height of the absorber plate changes from 5 cm to 25 cm respectively.
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