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Thermal effectiveness of wind-tower with heated exit-wall and inlet-air humidification: Effects of winter and summertime

机译:带加热出口墙和入口空气加湿的风塔的热效力:冬季与夏季的影响

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摘要

Wind-towers provide natural ventilation to residential building in hot arid and semi-arid climate. Water-droplet spray can reduce the air-stream temperature at air-inlet section to increase wind-tower effectiveness. However, temperature and humidity weather conditions due to climate change throughout the year play a main role. Besides, heating of building's structure produced by solar radiation has an impact on interior air-stream temperature. This paper presents a thermal assessment of combined wind-tower air-humidification with a heated wall under the effect of winter and summertime. A correlation Nusselt-Reynolds numbers for different weather conditions was developed experimentally, which investigates thermally a simulated solar heating of an exit-wall wind-tower-building by means of a parallel plate heat exchanger tested in a low-speed wind tunnel. The effect of a water-droplet spray on the wind-tower streams and constant heating exit-wall of the building was investigated varying the air-inlet Re number between 1.3x104 and 2.5x104. The results show that Nu number increases with Re number for both dry-air and moist-air flow wind-tower-building inlet condition. Wind-tower thermal effectiveness is 11.6% higher for summertime compared to the wintertime. Results for dry-air and moist air and the Nu-Re correlation can be used as guidelines for future wind-tower designs.
机译:风塔为热干旱和半干旱气候的住宅建筑提供自然通风。水滴喷雾可以减少空气进口部分的空气流温度,以增加风塔效果。但是,由于全年气候变化导致的温度和湿度的天气条件发挥了主要作用。此外,通过太阳辐射产生的建筑结构的加热对内部空气流温度产生影响。本文介绍了冬季效果下的加热壁的围绕风塔空气加湿的热评估。实验开发了不同天气条件的相关Nusselt reynolds号,其通过在低速风洞中测试的平行板热交换器来研究射壁风塔建筑的热模拟太阳能加热。研究了水滴喷雾对大厦的风塔流和恒定加热出口壁的影响改变了1.3×104和2.5x104之间的空气入口。结果表明,NU数量随着干燥空气和潮湿空气流风塔建筑物入口的RE编号增加。与冬季相比,风塔热效率为11.6%,而夏季较高。干燥空气和潮湿空气的结果和NU-RE相关可用作未来风塔设计的指导方针。

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