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Influence of plant structure, orifice size, and nozzle inclination of spray penetration into peanut canopy

机译:植物结构,孔口尺寸和喷雾剂渗入花生冠层的喷嘴倾角的影响

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Three spray penetration tests were conducted 48, 68, and 109 days after peanuts were planted on single-row and twin-row beds. Spray was applied with flat fan pattern nozzles 8001 VS, 8003 VS, and 8005 VS at 276 kPa pressure. Leaf area index; foliage density, and plant height and width were measured for each test and correlated with spray deposits at the bottom and middle of peanut canopies. Tests to compare spray penetrations by adjusting spray inclination from vertical to 15° toward travel direction were also conducted when peanut plants were 68 and 109 days old. Data showed that spray penetration into peanut canopies could be improved by increasing nozzle size from 8001 VS to 8003 VS but could not be improved by increasing the nozzle size from 8003 VS to 8005 Vs after plants were 68 days old. Spray deposits on the top of canopies from the 8003 Vs nozzle were 10.5 times higher than at the middle position and 62 times higher than at the bottom positions when plants were 109 days old. The average spray deposits at the middle of canopies from the 8003 VS nozzle were 1.251, 0.721 and 0.552 μL/cm{sup}2 when plants were 48, 68, and 109 days old, respectively. Spray deposits at the bottom and middle of peanut canopies tended to decrease linearly as the plant structure indicator of growth (square root of the product of plant height, width, leaf area index; and foliage density) increased. Inclining nozzles to discharge sprays from vertical to 15° toward travel direction did not significantly improve spray penetration.
机译:花生分别种植在单行和双行床上后48、68和109天进行了三个喷雾渗透测试。在276 kPa压力下,用平扇形喷嘴8001 VS,8003 VS和8005 VS进行喷涂。叶面积指数;在每个试验中都测量了叶子的密度,植物的高度和宽度,并将其与花生冠部底部和中部的喷雾沉积物相关联。当花生植株分别有68天和109天龄时,还进行了通过将喷雾的倾斜度从垂直方向调整为15°来比较喷雾渗透的测试。数据显示,将植株生长68天后,将喷嘴尺寸从8001 VS增加到8003 VS可以改善喷雾渗透到花生冠层中的能力,但不能通过将喷嘴尺寸从8003 VS增加到8005 VS来提高喷雾的渗透性。当植物生长109天时,从8003 Vs喷嘴喷出的冠层顶部的喷雾沉积物比中间位置高10.5倍,比底部位置高62倍。当植物分别为48、68和109天大时,8003 VS喷嘴在冠层中间的平均喷雾沉积分别为1.251、0.721和0.552μL/ cm {sup} 2。随着植物结构生长指标(植物高度,宽度,叶面积指数和叶密度的乘积的平方根)的增加,花生冠层底部和中部的喷雾沉积物倾向于线性减少。使喷嘴倾斜以将喷雾从垂直方向向行进方向倾斜15°并不能显着提高喷雾渗透性。

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