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Spray Characteristics and Drift Reduction Potential with Air Induction and Conventional Flat-Fan Nozzles

机译:空气感应和传统的平口式喷嘴的喷雾特性和降低漂移的潜力

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Spray drift potential, spray coverage, droplet size, and spray pattern width for various sizes of air induction and conventional flat-fan nozzles with equivalent orifice areas were investigated and compared under laboratory conditions. Droplet sizes were measured with a laser imaging system; spray coverage on water-sensitive paper (WSP) was evaluated with a boom sprayer at a constant travel speed in a greenhouse, and ground and airborne spray deposits were determined in a wind tunnel at two wind velocities (2.5 and 5.0 m/s). Tests were also conducted to evaluate the effect of air-intake holes being sealed or open on spray characteristics of air induction nozzles. With the equivalent nominal flow rate, air induction nozzles had approximately 2.1 to 2.75 times larger exit orifice areas than the conventional nozzles. With the equivalent orifice area and equal liquid flow rate, there was no significant difference in droplet size, spray pattern width, spray coverage, ground spray deposit, and airborne deposit among regular air induction nozzles, air induction nozzles with two sealed air-intake holes, and conventional flat-fan nozzles. Spray characteristics of air induction nozzles could be achieved by conventional nozzles with the equivalent orifice size operated at the reduced operating pressure
机译:在实验室条件下,研究并比较了各种尺寸的进气口和具有相等孔口面积的常规平扇喷嘴的喷雾漂移势,喷雾覆盖范围,液滴尺寸和喷雾图案宽度。液滴尺寸用激光成像系统测量;在室内以恒定的行进速度使用动臂式喷雾机评估了水敏纸(WSP)上的喷雾覆盖率,并在风洞中以两种风速(2.5和5.0 m / s)确定了地面和空中喷雾沉积物。还进行了测试以评估密封或打开进气孔对进气喷嘴喷雾特性的影响。在相同的标称流速下,进气喷嘴的出口孔面积是传统喷嘴的约2.1至2.75倍。在相同的孔口面积和相等的液体流量的情况下,常规进气喷嘴,带有两个密封进气孔的进气喷嘴之间的液滴尺寸,喷雾图案宽度,喷雾覆盖率,地面喷雾沉积物和空气传播沉积物之间无显着差异。以及传统的平扇喷嘴。空气感应喷嘴的喷雾特性可以通过在减小的工作压力下操作相同孔口尺寸的常规喷嘴实现

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