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Efficiency of an air curtain as an anti-insect barrier: the honey bee as a model insect

机译:空气幕的效率作为抗昆虫屏障:蜜蜂作为模型昆虫

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摘要

BACKGROUND Vector-borne diseases are of high concern for human, animal and plant health. In humans, such diseases are often transmitted by flying insects. Flying insects stop their flight when their kinetic energy cannot compensate for the wind speed. Here, the efficiency of an air curtain in preventing insects from entering a building was studied using the honey bee as a model. RESULTS CONCLUSION Bees were trained to visit a food source placed in a building. The air curtain was tested with strongly motivated bees, when the visiting activity was very high. Airflow velocity was modulated by setting an air curtain device at different voltages. At the nominal voltage, the anti-insect efficiency was 99.9 +/- 0.2% compared with both the number of bees at a given time in the absence of the air curtain and the number of bees before the activation of the air curtain. The efficiency decreased as the airflow velocity decreased. The results show that an air curtain operating at an airflow velocity of 7.5 m s(-1) may prevent a strong flyer with high kinetic energy, such as the honey bee, from entering a building. Thus, air curtains offer an alternative approach for combating vector-borne diseases. (c) 2018 Society of Chemical Industry
机译:背景技术染料疾病对人类,动物和植物健康有高担忧。在人类中,这种疾病通常通过飞虫传播。当他们的动能不能弥补风速时,飞行昆虫停止他们的航班。这里,使用蜂蜜蜂作为模型,研究了防止昆虫进入建筑物中的空气幕的效率。结果结论蜜蜂培训,参观放置在建筑物中的食品源。当访问活动非常高时,空气幕被强烈的蜜蜂进行了测试。通过在不同电压下设定空气幕装置来调制气流速度。在标称电压下,与在不存在空气幕前的给定时间和在激活空气幕前的蜜蜂的数量时,抗昆虫效率为99.9 +/- 0.2%。随着气流速度降低,效率降低。结果表明,在7.5M S(-1)的气流速度下操作的空气幕可以防止具有高动能的强大的传单,例如蜂蜜蜜蜂进入建筑物。因此,空气窗帘提供了一种替代方法,用于调用载体传染性疾病。 (c)2018化学工业协会

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