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Effect of insect-proof screens and roof openings on greenhouse ventilation

机译:防虫网和屋顶开口对温室通风的影响

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摘要

The object of this work was to determine and model the air exchange rate of greenhouses with insect-proof screens over the vents. Experimental tests were conducted on multi-span tunnel greenhouse with two types of ventilation openings, one withcontinuous roof vents and the other with an insect-proof screen which was able to replace a flexible roll-up plastic cover.Ventilation rates of the experimental greenhouses were measured using the tracer gas technique. Discharge coefficients were determined in a 1:3 scale model replica of the experimental greenhouses. A simple model that includes the global effect of the wind on the greenhouse ventilation was developed and compared with the measured air exchange values.The main results determine the reduction in the discharge coefficient when an insect-proof screen is incorporated. It was found that vents located in lateral spans have a higher discharge coefficient than those located in central spans. Some practicalconsiderations for the design of more efficient ventilation systems can be derived from this fact.The global wind effect coefficient was found to be dependent on the type of vent, insect-proof screen and wind speed. Some results are not in agreement with others previously published, but obtained under different environmental conditions. Thiscoefficient is derived from empirical measurements which makes its general application questionable.In spite of its simplicity, the theoretical model describes accurately the ventilation rate of the greenhouse with both types of vents. The roll-up roof vent provides a ventilation rate about three times greater than the continuous roof vent. It has anacceptable air exchange, while acting as a barrier against the entrance of undesirable pests.
机译:这项工作的目的是使用通风口上方的防虫网来确定和模拟温室的空气交换率。在具有两种类型通风孔的多跨隧道温室中进行了试验测试,一种具有连续的屋顶通风孔,另一种具有防虫网,该防虫网能够代替柔性的可卷起的塑料覆盖物。使用示踪气体技术进行测量。在实验温室的1:3比例模型副本中确定排放系数。开发了一个简单的模型,该模型包括风对温室通风的整体影响,并将其与测得的空气交换值进行比较。主要结果确定了安装防虫网时排放系数的降低。发现位于横向跨度的通风口的排放系数比位于中央跨度的通风口的排放系数高。从这一事实可以得出设计更高效通风系统的一些实际考虑。发现整体风效应系数取决于通风口的类型,防虫网和风速。一些结果与先前发表的其他结果不一致,但是是在不同的环境条件下获得的。该系数是从经验测量得出的,这使它的一般应用受到质疑。尽管简单,但该理论模型仍准确地描述了两种通风口的温室通风率。卷起的屋顶通风口提供的通风率大约是连续屋顶通风口的三倍。它具有可接受的空气交换功能,同时可以阻止有害有害生物的进入。

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