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首页> 外文期刊>生物環境調節 >Temperature and humidity environments inside a naturally ventilated greenhouse with the evaporative fog cooling system
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Temperature and humidity environments inside a naturally ventilated greenhouse with the evaporative fog cooling system

机译:具有蒸发雾冷却系统的自然通风温室内的温度和湿度环境

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摘要

Temperature and humidity environments inside an evaporative-fog air cooling greenhouse with natural ventilation were measured on a clear day in summer. The fog was sprayed intermittently (spraying time: 1 min at 3 or 4-min intervals) from nozzles installed 2 m above the floor inside the greenhouse. The side, end, and roof ventilators of the greenhouse remained open to increase air circulation and fog evaporation during cooling. The results of the experiment are summarized below. (1) The inside air temperature reduced to approximately the inside wet bulb temperature within I min after the start of fog spraying. (2) The vertical air temperature differences below the nozzles (plant growing zone) were within 1 deg C, and the horizontal air temperature differences at 1.5 m above the floor in the greenhouse cooled with fog spray system were within 2.5 deg C. (3) The reduction of leaf temperature of the tomato plant by fog spray was smaller than that of air temperature. The difference between the leaf temperature and the air temperature inside the greenhouse decreased as the saturation deficit of the air increased. (4) From these measurements, when fog fills the greenhouse atmosphere, the air is rapidly cooled at a rate of 10 deg C per rain, a small sensor, such as a small diameter thermocouple in which heat capacity is small, is recommended to prevent errors in measuring air temperature.
机译:在夏季的晴天,对具有自然通风的蒸发雾气冷式温室内的温度和湿度环境进行了测量。从安装在温室内地面上方2 m处的喷嘴间歇性地喷雾雾气(喷雾时间:间隔3分钟或4分钟1分钟)。温室的侧面,末端和屋顶通风机保持打开状态,以增加冷却期间的空气流通和雾气蒸发。实验结果总结如下。 (1)在开始喷雾后的1分钟内,内部空气温度降低到大约内部湿球温度。 (2)喷嘴(植物生长区)下方的垂直空气温度差在1摄氏度以内,而采用雾化喷雾系统冷却的温室中高于地面1.5 m的水平空气温度在2.5摄氏度以内(3 )通过喷雾使番茄植株的叶片温度降低幅度小于空气温度的降低幅度。温室中的叶片温度和气温之间的差异随着空气饱和度的增加而减小。 (4)根据这些测量,当雾气充满温室气体时,空气以每雨10摄氏度的速度迅速冷却,建议使用小传感器,例如热容量小的小直径热电偶,以防止空气温度测量错误。

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