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Numerical Simulation on Air Flow and Heat Transfer inside Solarwall

机译:太阳墙内空气流动和传热的数值模拟

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In China,the severe cold region is vast in territory and its winter cold causes huge energy consumption in heating,while the growing sealing buildings give rise to a poor indoor air quality.Solarwall technology provides an economic and applicable solution for heating and ventilation,and nowadays it is widely used in buildings.An aim of this article was to analyze the air flow and heat transfer inside solarwall.We used realizable k-ε model of FLUENT to simulate conditions of different air supply velocities,indicating the temperature distribution and air velocity distribution inside solarwall.Results showed that the temperature inside the solarwall fluctuated with the holes position.Furthermore,on the width direction sections temperature varied with the absorbed solar radiation intensity,while on the highly direction sections the peak and valley value of average temperature were both declined along the increase of height.However the increase of air supply velocity weakened the effects of solar radiation and uniformed the air temperature in highly direction.The average air velocity presented an upward trend from the bottom to the top,yet a dramatic decline occurred on the area where air flow direction changed.
机译:在中国,严寒地区地域辽阔,冬季寒冷导致供暖能源消耗巨大,而密封建筑物的增加则导致室内空气质量差。太阳能墙技术为供暖和通风提供了经济实用的解决方案,本文的目的是分析太阳能墙内的空气流动和传热。我们使用可实现的FLUENT的k-ε模型来模拟不同送风速度的条件,指示温度分布和风速结果表明,太阳墙内部的温度随孔的位置而变化。此外,在宽度方向上,温度随吸收的太阳辐射强度而变化,而在高度方向上,平均温度的峰值和谷值均为随高度的增加而下降,但是送风速度的增加减弱了太阳的辐射使空气温度向高方向均匀分布。平均风速从底部到顶部呈上升趋势,但气流方向发生变化的区域却急剧下降。

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