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Flow and atomization characteristics of a twin-fluid nozzle with internal swirling and self-priming effects

机译:具有内旋转和自吸效果的双流体喷嘴的流动和雾化特性

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A twin-fluid nozzle was proposed for low-pressure atomization. The nozzle is featured by swirling air flows in the mixing chamber. Liquid medium is thereby inhaled due to the pressure difference. An experimental work was performed to investigate the atomization performance of the nozzle and the hydrogen peroxide solution served as the liquid medium. Droplet size and droplet velocity were measured. Effects of the diameter of the air injection orifice and the air-injection pressure were investigated. The results show that small droplet size is achieved with the proposed nozzle. As the spray develops, Sauter mean diameter (SMD) of the droplets decreases first and then increases, irrespective of the variation of the air-injection orifice diameter and the air-injection pressure. Overall SMD varies inversely with the air-injection orifice diameter and air-injection pressure. Near the nozzle, cross-sectional velocity distribution exhibits a peak-valley pattern, which is replaced with uniformized velocity distributions away from the nozzle. Similarity of cross-sectional radial velocity distribution at different air pressures is evidenced. Furthermore, the correlation between droplet size and droplet velocity is established.
机译:提出了一个双流体喷嘴,用于低压雾化。喷嘴通过混合室中的旋转空气流提供。由此由于压力差而吸入液体培养基。进行实验工作以研究喷嘴的雾化性能和用作液体介质的过氧化氢溶液。测量液滴尺寸和液滴速度。研究了空气喷射孔的直径和空气喷射压力的影响。结果表明,采用所提出的喷嘴实现小液滴尺寸。由于喷雾发育,液滴的佐蛋白平均直径(SMD)首先减小,然后增加,而且随着空气喷射孔口直径和空气喷射压力的变化而增加。整体SMD与空气喷射孔口直径和空气喷射压力成反比。在喷嘴附近,横截面速度分布显示出峰值谷图案,其被远离喷嘴的均匀速度分布替换。可以证明不同空气压力下横截面径向速度分布的相似性。此外,建立了液滴尺寸与液滴速度之间的相关性。

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