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首页> 外文期刊>Journal of Agricultural Engineering Research >The effects of vertical sprayer boom movements on the uniformity of spray distribution
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The effects of vertical sprayer boom movements on the uniformity of spray distribution

机译:垂直喷雾器吊杆运动对喷雾分布均匀性的影响

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Vertical sprayer boom movements are studied with experimental modal analysis. A distinction is made between rigid-body motions and flexible deformations of the sprayer boom. Pure vertical and rolling rigid-body motions of the boom are mainly caused by unwanted tractor movements which are caused primarily by soil undulations and tyre characteristics. Flexible boom vibrations are induced by vertical and rolling angular accelerations of the tractor body. The influence of the driving speed and tyre pressure is investigated on the distinct boom motions and the effect of speed seems to dominate. Increase of driving speed (4-12 km/h) results in a rise of the pure vertical translations (130%), the rolling motions (×10) and the vertical flexible deformations (×4). A change of tyre pressure from 60 to 180 kPa leads to fall of the pure vertical translations (-20%), while the rolling and vertical flexible deformations go up by 2%. These phenomena are due to frequency shifts and larger force intensities in the frequency band between 0.5 and 3.5 Hz. The spray deposit distribution is calculated and, from the simulated spray patterns, the effect of the boom motions on uniformity of the spray pattern is examined. Simulation outcomes reveal a minor effect of the vertical translations, while rolling of the boom and vertical flexible deformations have larger influences, especially at the extremities of the boom owing to their larger amplitudes. Maximum deposits reach 760% and minimum 0% in the case of the largest sprayer boom motions. From these calculated spray patterns, an optimal range of use is determined for the tested sprayer: a spraying height of 0.5 m or more in combination with a fixed nozzle spacing of 0.5 m, a limited tractor speed and low tyre pressure leads to a good spray distribution (correct overlap) with the flat fan nozzle with top angle of 110°.
机译:通过实验模态分析研究了垂直喷雾机的动臂运动。在喷雾机的刚性体运动和柔性变形之间有区别。动臂的纯垂直和滚动刚体运动主要是由拖拉机的不必要运动引起的,拖拉机运动主要是由土壤起伏和轮胎特性引起的。拖拉机机体的垂直和滚动角加速度会引起动臂振动。研究了行驶速度和轮胎压力对动臂运动的影响,速度的影响似乎占主导地位。行驶速度的提高(4-12 km / h)导致纯垂直平移(130%),侧倾运动(×10)和垂直挠性变形(×4)的增加。轮胎压力从60 kPa更改为180 kPa会导致纯垂直位移降低(-20%),而滚动和垂直挠性变形会增加2%。这些现象是由于频率偏移和0.5至3.5 Hz之间的频带中较大的作用力强度引起的。计算喷雾沉积物分布,并从模拟喷雾模式中检查喷杆运动对喷雾模式均匀性的影响。仿真结果表明,垂直平移的影响较小,而动臂的滚动和垂直柔性变形的影响较大,尤其是在动臂的末端,因为振幅较大。如果喷杆的最大运动量,最大沉积物达到760%,最小沉积物为0%。从这些计算出的喷雾模式中,可以确定被测喷雾器的最佳使用范围:0.5 m或更高的喷雾高度,以及0.5 m的固定喷嘴间距,有限的牵引车速度和较低的轮胎压力导致良好的喷雾扁平风扇喷嘴的顶部角度为110°分布(正确重叠)。

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