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THE EFFECT OF CROSSWIND VELOCITY ON THE SPRAY DRIFT OF FLAT FAN NOZZLE

机译:横风速度对平板风扇喷嘴喷雾漂移的影响

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The objective of this research project is to eliminate the spray drift caused by crosswind. Spray drift is an important problem for the agricultural industry. Some herbicides (e.g. Dicamba) can cause serious damage if it drifts to nearby crops that are not genetically modified to withstand those herbicides. Our hypothesis is that the nozzle geometry and the injection angle can be actively/passively controlled to compensate for the crosswind velocity and effectively deliver the herbicides to the target area. The measurements include the breakup regime transitions, the droplet sizes, and the droplets trajectory as function of the wind speed and the injection angle. The current results show that the crosswind modifies the primary breakup mechanism from sheet breakup regime (i.e. thinning and fragmentation of the liquid sheet into ligaments) to bag breakup regime (i.e. the formation bags along the downstream side of liquid sheet) resulting in smaller drop sizes and an increased drift flux. Techniques to eliminate the bag breakup regime are presented.
机译:该研究项目的目的是消除侧风引起的喷雾漂移。喷雾漂移是农业的重要问题。如果某些除草剂(例如麦草畏)漂移到附近的未经过基因改造以承受这些除草剂的农作物,则会造成严重破坏。我们的假设是可以主动/被动控制喷嘴的几何形状和喷射角度,以补偿侧风速度并有效地将除草剂输送到目标区域。测量包括破裂状态转变,液滴尺寸以及作为风速和喷射角度的函数的液滴轨迹。当前结果表明,侧风改变了主要的破碎机制,从薄片破碎状态(即液体薄片变薄并破碎成韧带)到布袋破碎状态(即沿液体薄片下游侧的地层袋子)导致了较小的液滴尺寸。并增加了漂移通量。提出了消除袋子破裂状态的技术。

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