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Development of a variable-rate sprayer for nursery liner applications.

机译:开发用于幼儿园班轮应用的可变速率喷雾器。

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Sensor-guided application technologies are needed to achieve constant spray deposition for the rapid growth of nursery liner trees during a growing season. An experimental real-time variable-rate sprayer was developed to adjust spray outputs automatically based on the liner canopy size. The developed sprayer consisted of two vertical booms, an ultrasonic sensor detecting system coupled with a spray flow rate controlled unit, a microcontroller, and a spray delivery system. Two booms were integrated with five opposing pairs of equally spaced spray nozzles. The sensors were mounted 0.35 m ahead of the spray nozzles to ensure sufficient time for signal processing. The accuracy of the sprayer in triggering spray against detected targets moving at 3.2 km h-1 was evaluated by use of a high-speed camera. An outdoor laboratory plot consisting of six different-sized tree species was used to test the sprayer performance consistency. Test results revealed that the spray nozzles were triggered from 4.5 to 12.5 cm ahead of detected targets. Seventy-five percent of test runs for detecting canopy volume of the six tree species produced significant (p<0.05) Pearson correlation coefficients from 0.43 to 0.88 when the sprayer travel speed was from 3.2 to 6.4 km h-1. While the sprayer applied variable output rates from 0 to 20.4 L min-1 at travel speeds from 3.2 to 8.0 km h-1, the mean spray coverage inside canopies of six tree species was 12.0% to 14.7% and the mean spray deposit was 0.72 to 0.90 micro L cm-2. Effects of travel speed on both mean spray deposit and coverage were insignificant. Therefore, the newly developed sprayer offered a possibility to achieve uniform spray deposition and coverage for nursery liner applications despite variations in liner canopy size and sprayer travel speed.
机译:需要传感器引导的应用技术来实现恒定的喷雾沉积,以便在生长季节内苗圃树木的快速生长。开发了一种实验性的实时可变速率喷雾器,可根据衬里机盖尺寸自动调节喷雾量。研发的喷雾器包括两个垂直喷杆,一个与喷雾流量控制单元耦合的超声传感器检测系统,一个微控制器和一个喷雾输送系统。两个喷杆与五对相对的等距喷嘴集成在一起。传感器安装在喷嘴前方0.35 m处,以确保有足够的时间进行信号处理。通过使用高速摄像机评估了喷雾器针对在3.2 km h -1 处移动的目标触发喷雾的准确性。使用由六种不同大小树种组成的室外实验室地块来测试喷涂机的性能一致性。测试结果表明,在检测到的目标之前4.5至12.5厘米处触发了喷嘴。当喷雾器行进速度为3.2至6.4 km h -1 。当喷涂机以3.2至8.0 km h h -1 的行驶速度施加0至20.4 L min -1 的可变输出速率时,六棵树冠层内部的平均喷雾覆盖率物种为12.0%至14.7%,平均喷雾沉积物为0.72至0.90 micro L cm -2 。行驶速度对平均喷雾沉积物和覆盖率的影响均不显着。因此,尽管衬垫顶棚尺寸和喷雾器行进速度有所变化,新开发的喷雾器仍可为苗圃衬垫应用提供均匀的喷雾沉积和覆盖。

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