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Effects of position angles in twin-jet spray applications on droplet penetration of hydraulic nozzles

机译:双射流喷雾应用中位置角度对液压喷嘴液滴渗透的影响

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This study was conducted to determine the effects of different position angles in twin-jet spray applications on droplet penetration of different nozzle types. Seven different nozzle types (standard flat fan, ST; narrow flat fan, STN; multirange, LU; low-drift potential, AD; air-induction, IDK; twin-jet air-induction, IDKT) were used and nozzles were positioned +15° along the forward direction, perpendicular to ground surface 0? and reverse direction of forward -15°. Spray experiments at 100 L/ha constant application volume were conducted under controlled conditions of a closed facility. Water sensitive paper (WSP) was used as sampling surface. WSP samples were placed vertically and horizontally over both the metal frames and root collar of artificial plants. The present findings revealed that transport potential of spray droplets was quite lower on vertical planes than on horizontal planes. The greatest coverage was achieved with ST, STN, LU, and SC-type nozzles producing fine droplets. Compared to open targets, the coverage ratios around the root collars were quite low and insufficient. In all spray treatments, coverage ratio on the vertical planes was 86.1% lower than the coverage ratio on the horizontal plane. In other words, coverage ratio on the horizontal plane was 7.2 times greater than the coverage ratio on the vertical plane. Transfer efficiency of medium and coarse droplet-producing nozzles to root collars was greater than the transfer efficiency of fine droplet-producing nozzles. Such a ratio for AD, IDKT, and IDK-type nozzles was determined as 37.06, 37.85, and 41.02% respectively. According to the present findings, effects of nozzle position angle on droplet penetration were not found to be significant. However, nozzle position angle along the forward direction increased coverage ratios on the vertical planes.
机译:进行该研究以确定不同位置角度在双喷射喷雾应用中的不同位置角度对不同喷嘴类型的液滴渗透。七种不同的喷嘴类型(标准扇形风扇,ST;窄平扇,STN;多朗,LU;低漂移潜力,广告;空气感应,IDK;双喷射空气诱导,IDKT)被定位+沿向前方向15°,垂直于地面0?和向前的向前方向-15°。在封闭设施的受控条件下进行100 L / HA恒定施用体积的喷雾实验。水敏感纸(WSP)用作取样表面。 WSP样品垂直和水平放置在人造植物的金属框架和根轴上。本研究结果显示,垂直平面上喷雾液滴的运输潜力比水平平面相当较低。使用ST,STN,LU和SC型喷嘴达到最大的覆盖范围,生产细液滴。与开放目标相比,根环周围的覆盖率相当低且不充足。在所有喷雾处理中,垂直平面上的覆盖率比水平平面上的覆盖率低86.1%。换句话说,水平平面上的覆盖率比垂直平面上的覆盖率大7.2倍。将介质和粗液滴的转移效率与根轴环的产生效率大于细液滴喷嘴的转移效率。 AD,IDKT和IDK型喷嘴的这种比例分别为37.06,37.85和41.02%。根据目前的研究结果,未发现喷嘴位置角对液滴渗透的影响是显着的。然而,沿向前方向的喷嘴位置角度增加了垂直平面上的覆盖率。

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