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Measuring Spray Droplet Size from Agricultural Nozzles Using Laser Diffraction

机译:使用激光衍射从农业喷嘴测量喷雾液滴尺寸

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摘要

When making an application of any crop protection material such as an herbicide or pesticide, the applicator uses a variety of skills and information to make an application so that the material reaches the target site (i.e., plant). Information critical in this process is the droplet size that a particular spray nozzle, spray pressure, and spray solution combination generates, as droplet size greatly influences product efficacy and how the spray moves through the environment. Researchers and product manufacturers commonly use laser diffraction equipment to measure the spray droplet size in laboratory wind tunnels. The work presented here describes methods used in making spray droplet size measurements with laser diffraction equipment for both ground and aerial application scenarios that can be used to ensure inter- and intra-laboratory precision while minimizing sampling bias associated with laser diffraction systems. Maintaining critical measurement distances and concurrent airflow throughout the testing process is key to this precision. Real time data quality analysis is also critical to preventing excess variation in the data or extraneous inclusion of erroneous data. Some limitations of this method include atypical spray nozzles, spray solutions or application conditions that result in spray streams that do not fully atomize within the measurement distances discussed. Successful adaption of this method can provide a highly efficient method for evaluation of the performance of agrochemical spray application nozzles under a variety of operational settings. Also discussed are potential experimental design considerations that can be included to enhance functionality of the data collected.
机译:在施用任何除草剂或杀虫剂等农作物保护材料时,施药者会使用各种技能和信息进行施药,以使该材料到达目标部位(即植物)。在此过程中至关重要的信息是特定喷嘴,喷雾压力和喷雾溶液组合产生的液滴大小,因为液滴大小会极大影响产品功效以及喷雾在环境中的移动方式。研究人员和产品制造商通常使用激光衍射设备来测量实验室风洞中的雾滴尺寸。此处介绍的工作描述了用于地面和空中应用场景的激光衍射设备进行雾滴尺寸测量的方法,可用于确保实验室间和实验室内的精度,同时最大程度地减少与激光衍射系统相关的采样偏差。在整个测试过程中保持关键的测量距离和并发的气流是实现此精度的关键。实时数据质量分析对于防止数据中的过度变化或不必要地包含错误数据也至关重要。该方法的一些局限性包括非典型喷嘴,喷雾溶液或使用条件,这些条件导致喷雾流在讨论的测量距离内无法完全雾化。这种方法的成功改编可以提供一种高效的方法,用于评估各种操作设置下农药喷洒喷嘴的性能。还讨论了潜在的实验设计考虑因素,可以考虑这些因素以增强所收集数据的功能。

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