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Measurement and classification methods using the ASAE S572.1 reference nozzles

机译:使用ASAE S572.1参考喷嘴的测量和分类方法

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An increasing number of spray nozzle and agrochemical manufacturers are incorporating droplet size measurements into both research and development. Each laboratory invariably has their own sampling setup and procedures. This is particularly true about measurement distance from the nozzle and concurrent airflow velocities. Both have been shown to significantly impact results from laser diffraction instruments. These differences can be overcome through the use of standardized reference nozzles and relative spray classification categories. Sets of references nozzles, which defined a set of classification category thresholds, were evaluated for droplet size under three concurrent air flow velocities (0.7, 3.1 and 6.7 m/s). There were significant, though numerically small, differences in the droplet size data between identical reference nozzles. The resulting droplet size data were used to categorize a number of additional spray nozzles at multiple pressure and air flow velocities. This was done to determine if similar classifications were given across the different airspeeds. Generally, droplet size classifications agreed for all airspeeds, with the few that did not, only differing by one category. When reporting droplet size data, it is critical that data generated from a set of reference nozzles also be presented as a means of providing a relative frame of reference.
机译:越来越多的喷嘴和农用化学品制造商正在将液滴尺寸测量纳入研究和开发。每个实验室始终具有自己的采样设置和程序。关于距喷嘴的测量距离和同时的气流速度尤其如此。两者都显示出对激光衍射仪的结果有重大影响。这些差异可以通过使用标准参考喷嘴和相对喷雾分类类别来克服。在三个同时出现的气流速度(0.7、3.1和6.7 m / s)下评估了定义一组分类类别阈值的一组参考喷嘴的液滴大小。尽管在数值上很小,但在相同参考喷嘴之间的液滴尺寸数据却存在显着差异。所得的液滴尺寸数据用于在多个压力和气流速度下对多个附加喷嘴进行分类。这样做是为了确定是否在不同的空速上给出了相似的分类。通常,液滴尺寸的分类适用于所有空速,只有少数没有,只有一个类别有所不同。当报告液滴尺寸数据时,从一组参考喷嘴生成的数据也必须作为提供相对参考框架的一种手段,这一点至关重要。

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