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Effect of the borax mass and pre-spray medium temperature on droplet size and velocity vector distributions of intermittently sprayed starchy solutions

机译:硼砂质量和喷涂前介质温度对间歇喷涂淀粉溶液的液滴尺寸和速度矢量分布的影响

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Spray coating technology has demonstrated great potential in the slow release fertilizers industry. The better understanding of the key spray parameters benefits both the environment and low cost coating processes. The use of starch based materials to coat the slow release fertilizers is a new development. However, the hydraulic spray jet breakup of the non-Newtonian starchy solutions is a complex phenomenon and very little known. The aim of this research was to study the axial and radial distributions of the Sauter Mean Diameter (SMD) and velocity vectors in pulsing spray patterns of native and modified tapioca starch solutions. To meet the objective, high speed imaging and Phase Doppler Anemometry (PDA) techniques were employed to characterize the four compositions of the starch-urea-borax complex namely S-0, S-1, S-2 and S-3. The unheated solutions exhibited very high viscosities ranging from 2035 to 3030 cP. No jet breakup was seen at any stage of the nozzle operation at an injection pressure of 1-5 bar. However, at 80 degrees C temperature and 5 bar pressure, the viscosity was reduced to 455 to 638 cP and dense spray patterns emerged from the nozzle obscuring the PDA signals. The axial size distribution revealed a significant decrease in SMD along the spray centreline. The smallest axial SMD (51 to 79 mu m) was noticed in S-0 spray followed by S-1, S-2 and S-3. Unlikely, the radial SMD in S-0 spray did not vary significantly at any stage of the spray injection. This trend was attributed to the continuous growth of the surface wave instabilities on the native starch sheet. However, SMD obtained with S-1, S-2 and S-3 varied appreciably along the radial direction. The mean velocity vector profiles followed the non-Gaussian distribution. The constant vector distributions were seen in the near nozzle regions, where the spray was in the phase of development. In far regions, the velocity vectors were poly-dispersed and a series of ups and downs were seen in the respective radial distributions.
机译:喷涂技术在缓释肥料行业中显示出巨大的潜力。对关键喷涂参数的更好理解有利于环境和低成本喷涂工艺。使用淀粉基材料包衣缓释肥料是新的发展。但是,非牛顿性淀粉溶液的水力喷射破裂是一种复杂的现象,鲜为人知。这项研究的目的是研究天然和改性木薯淀粉溶液在脉冲喷雾模式下的索特平均直径(SMD)的轴向和径向分布以及速度矢量。为了达到该目的,采用高速成像和相位多普勒风速计(PDA)技术来表征淀粉-脲-硼砂复合物的四种成分,即S-0,S-1,S-2和S-3。未加热的溶液表现出非常高的粘度,范围从2035至3030 cP。在1-5 bar的注射压力下,在喷嘴操作的任何阶段均未观察到喷射破裂。但是,在80摄氏度的温度和5巴的压力下,粘度降低到455至638 cP,并且从喷嘴中出现了浓密的喷雾图案,使PDA信号变得模糊。轴向尺寸分布显示沿喷涂中心线的SMD显着减小。在S-0喷雾中观察到最小的轴向SMD(51至79μm),然后是S-1,S-2和S-3。不太可能,S-0喷雾中的径向SMD在喷雾注射的任何阶段都不会发生明显变化。这种趋势归因于天然淀粉片上表面波不稳定性的持续增长。然而,由S-1,S-2和S-3获得的SMD沿径向明显变化。平均速度矢量曲线遵循非高斯分布。在喷嘴处于显影阶段的喷嘴附近区域,可以看到恒定的矢量分布。在较远的区域,速度矢量是多分散的,并且在各自的径向分布中看到一系列的起伏。

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