用阴影法测量iso喷嘴的液滴尺寸分布。

N De Cock, M Massinon, S Ouled Taleb Salah, B C Mercatoris, F Lebeau
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引用次数: 0

摘要

农用喷雾剂的粒径分布是植保产品应用中的一个关键参数。因此,液滴尺寸分布的测量是喷雾用户和喷嘴制造商关注的重要问题。目前的工作评估了阴影技术正确区分ISO标准草案(ISO 25358)中定义的6个喷雾类边界的能力。测量装置由与LED背光同步的高速相机组成。被测试的喷雾被放置在相机和灯之间。水滴在图像上以阴影的形式出现在明亮的背景上。对于每次采集,在38 μI的小时间圈内记录两帧。利用先进的图像分析算法,对每对图像帧提取液滴直径和速度。然后,对所有图像检索到的数据进行汇总,得到液滴尺寸分布。整体结果表明,6个液滴大小分布被正确分离,突出了该方法使用相同的设置配置测量小液滴和大液滴的能力。空间分析表明,为了捕捉整个喷雾,应在小轴方向上扩展喷雾扫描。
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DROPLET SIZE DISTRIBUTION MEASUREMENTS OF ISO NOZZLES BY SHADOWGRAPHY METHOD.

The droplet size distribution of agricultural sprays is a key parameter during the plant protection product applications. Therefore, measurement of the drop size distribution is an important concern for spray users as well as nozzle manufacturers. The present work assessed the capability of a shadowgraphy technique to distinguish correctly the 6 spray class boundaries defined in the ISO draft standard (ISO 25358). The measurement set-up is composed by a high speed camera synchronized with a LED backlighting. The tested spray is positioned between the camera and the light. The droplets appear on the images as shadows on a brighter background. For each acquisition, two frames are recorded within a small time laps (38 μI. The droplet diameter and velocity are retrieved by using advanced image analysis algorithm on each pair of frames. Then, the drop size distribution is obtained by gathering the data retrieved from all the images. The global results showed that the 6 drop size distributions were correctly separated highlighting the ability of the method to measure small as well as large droplets using the same set-up configuration. The spatial analysis showed that the spray scanning should be extended in the minor axis direction in order to catch the whole spray.

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