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Evaluation of a solid stream radial nozzle on fixed-wing aircraft, for penetration of spray within a soybean canopy

机译:评估固定翼飞机上的固体流径向喷嘴对大豆冠层内喷雾的渗透性

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Experiments were conducted to evaluate the Accu-Flo multiple orifice nozzle for penetration of spray into a soybean (Glycine max L.) canopy by comparing results to those from a popular straight stream nozzle and rotary atomizer. A mixture of water + Induce~R adjuvant was applied at three different spray release heights in a random sequence, using an Air Tractor 402-B agricultural aircraft. Sampler stands were placed at twenty-four locations in the field. Water sensitive paper (WSP) cards were clippedonto rigid stands just above the canopy and 30 cm off the ground within the canopy. Weather data were recorded using two different stations on-site. Wind was predominantly from the west and parallel to the direction of the spray runs. The spray deliverysystems compared were the Accu-Flo nozzles, (64 needle 0.020 opening), CP-09 straight stream with 5 degree deflection, and Micronair~R AU5000 atomisers (14 mesh screen) at a low volume spray rate of 18.7 1/ha. A total of 54 spray runs were made over three days, and heights were varied at 3.7 m, 4.9 m and 6.1 m. Water sensitive papers were scanned and analysed for coverage per unit card area using an image analysis system. Altitude and [Nozzle X Altitude] interaction were significant effects on coverageat the 0.01 and 0.07 significance levels, respectively, for the top cards. Nozzle type was not a significant effect on coverage for the top cards, but was significant at the 0.01 level for the bottom cards. Altitude alone had no obvious effect on coverage for the bottom cards, although it had an effect for the top cards. The highest percentage area of spray coverage was observed from the Accu-Flo nozzles, especially for the bottom cards. Average spray coverage from the Accu-Flo nozzles was 1.7 times higher than coverage from the CP* nozzles or Micronair~R atomisers in the lower portion of the canopy.
机译:通过将实验结果与流行的直流喷嘴和旋转雾化器的结果进行比较,进行了实验以评估Accu-Flo多孔喷嘴对喷雾渗透到大豆冠层中的作用。使用Air Tractor 402-B农用飞机,以三种不同的喷雾释放高度以随机顺序施加水+ Induce〜R佐剂的混合物。采样架放置在现场的二十四个位置。将水敏纸(WSP)卡固定在顶棚上方且顶棚内离地面30厘米的刚性支架上。气象数据是使用两个不同的站点进行记录的。风主要来自西方,并且与喷雾的方向平行。比较的喷雾输送系统为Accu-Flo喷嘴(64针0.020开口),具有5度偏转的CP-09直射流和Micronair〜R AU5000雾化器(14目筛网),低喷雾量为18.7 1 / ha 。在三天内总共进行了54次喷雾,高度分别为3.7 m,4.9 m和6.1 m。扫描水敏纸,并使用图像分析系统分析每张卡片区域的覆盖率。高度和[Nozzle X Altitude]交互作用对顶部卡片的覆盖率分别在0.01和0.07显着性水平上有显着影响。喷嘴类型对顶部卡片的覆盖率没有显着影响,但底部卡片的0.01显着。尽管海拔对顶牌有影响,但仅海拔对顶牌的覆盖率没有明显影响。从Accu-Flo喷嘴观察到最大的喷雾覆盖面积百分比,尤其是对于底卡。 Accu-Flo喷嘴的平均喷雾覆盖度比机盖下部CP *喷嘴或Micronair〜R雾化器的平均喷雾覆盖度高1.7倍。

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