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Contribution of spray droplet pinning fragmentation to canopy retention.

机译:雾滴钉扎碎裂对冠层保留的贡献。

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摘要

Drop behaviour during impact affects retention. Increasing adhesion is usually seen as an objective when applying crop protection products, while bouncing and shattering are seen as detrimental to spray retention. However, observation of drop impacts on barley (Hordeum vulgare L.) using high speed shadowgraphy shows that bouncing and fragmentation can occur in Cassie-Baxter as well as in Wenzel wetting regimes. In this last regime, a part of the drop may remain stuck on the surface, contributing to retention. Using simultaneous measurements of drop impacts with high speed imaging and of retention with fluorophotometry for spray mixtures on excised barley leaves using a Teejet 11003 nozzle at 0.2 MPa, it was observed that about 50% of the drops that fragmented in the Wenzel state remain on the horizontal leaf. Depending on the spray mixture, these impact outcomes accounted for 28-46% of retention, the higher contribution being correlated with bigger VMD (Volume Median Diameter). This contribution is not negligible and should be considered when modelling spray retention processes.
机译:撞击过程中的掉落行为会影响保持力。在施用农作物保护产品时,通常将增加附着力视为目标,而反弹和破碎则被视为不利于喷雾保持力。但是,使用高速影象法观察跌落对大麦(大麦(Hordeum vulgare L.))的影响表明,在Cassie-Baxter以及Wenzel润湿方式中都可能发生反弹和破碎。在这最后一个方案中,部分液滴可能会停留在表面上,从而有助于保留。通过同时使用Teejet 11003喷嘴以0.2 MPa的高速成像同时测量液滴撞击的效果和使用荧光光度法对喷雾的大麦叶片上的喷雾混合物的滞留性的观察结果,发现在Wenzel状态下破碎的液滴中约有50%保留在水平叶。取决于喷雾混合物,这些影响结果占保留的28%至46%,较高的贡献与更大的VMD(体积中值直径)相关。这种贡献是不可忽略的,在对喷雾保持过程进行建模时应予以考虑。

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