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Air flow characteristics of an air-assisted sprayer through horizontal crop canopy

机译:空气辅助喷雾器通过农作物冠层的空气流动特性

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Abstract: Artificially induced air currents or air-assistance to droplet spectrum produced by hydraulic nozzles not only facilitate in transporting and depositing the droplets in different parts of canopy but also reduce the application rate of chemicals. The air streams increase the velocity of smaller droplets so that extra momentum would increase impaction and improve penetration into the crop as well as mitigating the influence of wind on drift. It is necessary to quantify the airflow characteristics. But, control of climatic and other conditions in the field is very difficult. Thus, airflow characteristics study was done under controlled conditions on a horizontal simulated crop canopy. Based on this study, an airflow distribution model was developed and airflow characteristics for vegetable crops, namely, egg plant, chilli and bittergourd were predicted. The differences between predicted and actual field studies values were statistically non significant. Kinetic energy of air stream dissipated with its movement from top to bottom of the canopy. The rate of kinetic energy dissipation was higher in denser canopies. Higher air velocity 15 m/s was best as it produced maximum turbulence throughout the canopy. Keywords: air assisted sprayer, simulated crop canopy, air velocity DOI: 10.3965/j.ijabe.20120501.001 Citation: Pankaj Gupta, Sirohi N P S, Mishra I M. Air flow characteristics of an air-assisted sprayer through horizontal crop canopy. Int J Agric & Biol Eng, 2012; 5(1): 1.
机译:摘要:人工产生的气流或空气对水力喷嘴产生的液滴谱的辅助作用不仅有助于液滴在冠层不同部位的传输和沉积,而且降低了化学药品的施用率。空气流增加了较小液滴的速度,因此额外的动量会增加撞击力,并提高对农作物的穿透力,并减轻风对漂移的影响。有必要对气流特性进行量化。但是,在现场控制气候和其他条件非常困难。因此,在受控条件下对水平模拟作物冠层进行了气流特性研究。在此基础上,建立了气流分布模型,并预测了茄子,辣椒和苦瓜等蔬菜作物的气流特征。现场研究预测值与实际值之间的差异在统计学上不显着。空气流的动能随着其从顶篷的顶部到底部的运动而消散。在较密的树冠中动能耗散率较高。 15 m / s的较高空气速度是最好的,因为它会在整个顶篷中产生最大的湍流。关键字:空气辅助喷雾器,模拟作物冠层,空气速度DOI:10.3965 / j.ijabe.20120501.001引用:Pankaj Gupta,Sirohi N P S,Mishra IM。空气喷雾器通过水平作物冠层的空气流动特性。农业与生物工程学杂志,2012; 5(1):1。

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