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Effects of operating conditions on droplet deposition onto surface of atomization impinging spray

机译:工作条件对雾化喷雾表面液滴沉积的影响

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摘要

A comprehensive model based on the Navier-Stokes equation and particle tracking method is used to study the effervescent atomization impinging spray, and another model is used to establish the relationship between the droplet velocity near the plate and the different operating conditions. The models and numerical code are validated by comparing the numerical results with the published experimental results. The effects of air-to-liquid ratio, nozzle diameter, liquid mass flow rate, and the position of impinging plate on the Weber number and K number as well as the droplet deposition onto the plate are discussed. The results show that the droplet velocity near the plate increases with increasing air-to-liquid ratio and liquid mass flow rate, and with decreasing nozzle diameter and axial distance from the nozzle exit to the plate. The droplet diameter near the plate increases with increasing axial distance from the nozzle exit to the plate, and with decreasing air-to-liquid ratio. As a function of the nozzle diameter and liquid mass flow rate, the variation of droplet diameter is not monotonous and the effect of liquid mass flow rate on the droplet diameter is insignificant. In the studied operating conditions, it is difficult for the droplet to rebound off the plate when impinging on the plate but it is easier for the droplet to splash. In order to create a condition which can benefit the droplet deposition when impinging on the plate, the suggested ways are to reduce the air-to-liquid ratio and liquid mass flow rate, increase the nozzle diameter, and select a suitable range of axial distance from the nozzle exit to the plate.
机译:使用基于Navier-Stokes方程和粒子跟踪方法的综合模型研究泡腾雾化撞击喷雾,并使用另一种模型建立板附近的液滴速度与不同操作条件之间的关系。通过将数值结果与已发布的实验结果进行比较来验证模型和数值代码。讨论了气液比,喷嘴直径,液体质量流速和撞击板的位置对韦伯数和K数以及液滴在板上的沉积的影响。结果表明,板附近的液滴速度随着气液比和液体质量流量的增加而增加,并且随着喷嘴直径的减小以及从喷嘴出口到板的轴向距离的减小。板附近的液滴直径随着从喷嘴出口到板的轴向距离的增加以及气液比的减小而增加。作为喷嘴直径和液体质量流量的函数,液滴直径的变化不是单调的,并且液体质量流量对液滴直径的影响微不足道。在研究的工作条件下,当液滴撞击板上时,液滴很难从板上反弹,但是液滴更容易飞溅。为了创造一个条件,使其在撞击板上时有利于液滴的沉积,建议的方法是降低气液比和液体质量流量,增加喷嘴直径,并选择合适的轴向距离范围从喷嘴出口到板。

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