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首页> 外文期刊>Computers and Electronics in Agriculture >A new integrated CFD modelling approach towards air-assisted orchard sprayingPart II: Validation for different sprayer types
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A new integrated CFD modelling approach towards air-assisted orchard sprayingPart II: Validation for different sprayer types

机译:一种新的集成CFD建模方法,用于果园空气喷涂第二部分:针对不同喷涂机类型的验证

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A computational fluid dynamics (CFD) model to simulate airflow from air-assisted orchard sprayers through pear canopies was validated for three different sprayers; single-fan (Condor V), two-fan (Duoprop) and four-fan sprayers (AirJet Quatt). The first two sprayers are widely used in Belgium and the latter one is a new design. Validation experiments were carried out in an experimental orchard (pcfruit, Velm, Belgium) in spring 2008. Ultrasonic anemometers were used to measure the time-averaged velocity components at different vertical positions before the tree and after the tree when the sprayers were driven through the orchard. The model was able to predict accurately the peak jet velocity, U m from all the sprayers considered at all distances from the sprayer centre and vertical positions. More than 95% of the local relative errors of U m were below 20%. Average relative errors, E, and root mean square errors, E RMS, were all less than 11.04% and 1.68msp#, respectively. The regions of high- (up to 18.0msp# upstream) and low (down to 2.8msp# downstream)-air velocity zones for all the sprayers were accurately predicted. The simulation results showed that the Condor V sprayer had a highly disturbed vertical jet velocity profile, especially at higher heights. The Duoprop sprayer had high jet velocities at the two-fan positions and lower jet velocity in between the two fans. Within the canopy height the AirJet Quatt sprayer showed a more uniform distribution of air than the other two sprayers except the minor peaks at the fan positions. These situations were all confirmed by the measurements.
机译:针对三种不同的喷雾器验证了计算流体动力学(CFD)模型,以模拟果园喷雾器通过梨冠层的气流。单风扇(Condor V),两风扇(Duoprop)和四风扇喷雾器(AirJet Quatt)。前两个喷雾器在比利时广泛使用,后一个是新设计。验证实验是在2008年春季在实验性果园(pcfruit,Velm,比利时)中进行的。使用超声波风速仪测量树木前和树木后不同垂直位置的时间平均速度分量(当喷雾器被驱动通过时)。果园。该模型能够准确地预测在距喷涂机中心和垂直位置所有距离的情况下,所有喷涂机的峰值喷射速度U m。 U m的局部相对误差的95%以上低于20%。平均相对误差E和均方根误差E RMS均分别小于11.04%和1.68msp#。准确预测了所有喷雾器的高(最高上游18.0msp#)和低(最低下游2.8msp#)空气速度区域。仿真结果表明,Condor V喷雾器的垂直射流速度分布受到严重干扰,尤其是在更高的高度。 Duoprop喷涂机在两个风扇位置处的射流速度较高,而在两个风扇之间的射流速度较低。在机盖高度内,AirJet Quatt喷雾器比其他两个喷雾器显示出更均匀的空气分布,除了风扇位置的次要峰。这些情况都通过测量得到了证实。

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