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首页> 外文期刊>Environment control in biology >Control of Greenhouse Humidity and Airflow with Fogging and Circulation Systems and Its Effect on Leaf Conductance in Cucumber Plants
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Control of Greenhouse Humidity and Airflow with Fogging and Circulation Systems and Its Effect on Leaf Conductance in Cucumber Plants

机译:喷雾和循环系统控制温室湿度和气流及其对黄瓜植株叶片电导的影响

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Fogging and circulation systems were installed into a greenhouse to control daytime humidity and airflow at adequately high levels, with systems composed of 9 mist sprayers and 2 fans with a diameter of 0.3 m. The performance of the systems was examined by analyzing humidity (vapor pressure, relative humidity), wind speed, and leaf conductance (total conductance of stomata and leaf boundary layer) of cucumber plants under 2 conditions: with mist and fan treatment and with no treatment. Use of the systems brought increases in relative humidity from 22% to 76% and wind speed from 0.16 to 1.08 m s~(?1) at the center of the greenhouse, and further increased effects were also found over the cultivation area. Moreover, such increases in humidity and wind speed accelerated the leaf conductance by approximately 1.5 times. The results suggest that fogging and circulation systems could improve the greenhouse environment and leaf gas exchange during daytime.
机译:将雾气和循环系统安装到温室中,以将日间湿度和气流控制在足够高的水平,该系统由9个喷雾器和2个直径为0.3 m的风扇组成。通过在以下两种条件下分析黄瓜植物的湿度(蒸气压,相对湿度),风速和叶片电导率(气孔和叶片边界层的总电导率)来检查系统的性能:有雾和风机处理且未经处理。使用该系统使温室中心的相对湿度从22%增加到76%,风速从0.16增加到1.08 m s〜(?1),并且在整个种植区域还发现了进一步的影响。此外,湿度和风速的这种增加使叶片电导加快了约1.5倍。结果表明,雾气和循环系统可以改善白天的温室环境和叶片气体交换。

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