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Enhancing Fog Evaporation Rate using an Upward Air Stream to improve Greenhouse Cooling Performance

机译:使用向上的气流提高雾气的蒸发速率,以改善温室的制冷性能

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Fogging systems are still not widely used for greenhouse cooling mainly owing to their low cooling efficiency and high risk of pathogen expansion caused by excess wetness of plant foliage. To increase the cooling efficiency and to keep the foliage relatively dry, the ratio of evaporated fog to generated fog (i. e. evaporation ratio) needs to be increased. In this study, a vertically installed conventional nozzle with two small fans (100mm by 100mm) to provide an upward air stream for enhancing fog evaporation was compared with a vertical nozzle and an approximately horizontal nozzle, both without any fan. To minimise the effect of other factors, the study was conducted under indoor conditions. With fans, a downward cooled air stream with fog was rarely observed by an image-enhancing camera. On the other hand, without fans, a strong downward cooled air stream with fog was observed, indicating that most of the fog descended without evaporation. The nozzle with fans provided a 1.5 times better evaporation ratio and three times wider cooling area than did the nozzle without fans under similar conditions. The nozzle with fans produced a lower and more uniform air temperature. The system employing a nozzle with small fans can achieve a higher evaporation ratio, resulting in an increased greenhouse cooling efficiency and a decreased possibility of pathogen expansion.
机译:雾化系统仍未广泛用于温室降温,这主要是由于其降温效率低以及由于植物叶片过湿造成的病原体膨胀的高风险。为了提高冷却效率并保持树叶相对干燥,需要增加蒸发的雾与生成的雾的比率(即蒸发比)。在这项研究中,将垂直安装的带有两个小风扇(100mm x 100mm)以提供向上的气流以增强雾气蒸发的常规喷嘴与垂直喷嘴和近似水平的喷嘴(均不带风扇)进行了比较。为了最大程度地减少其他因素的影响,该研究在室内条件下进行。对于风扇,图像增强型摄像机很少观察到有雾的向下冷却气流。另一方面,在没有风扇的情况下,观察到强烈的向下冷却的空气流有雾,这表明大部分雾在没有蒸发的情况下下降。带风扇的喷嘴在类似条件下的蒸发率比没有风扇的喷嘴高1.5倍,冷却面积大3倍。带风扇的喷嘴产生较低且更均匀的空气温度。使用带有小风扇的喷嘴的系统可以实现更高的蒸发比,从而提高温室冷却效率并降低病原体扩展的可能性。

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