Numerical Simulation on Flow Field of Laval-style Atomizer by Fluent

Si Chaorun, Zhang Xianjie, Wang Junbiao
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引用次数: 1

Abstract

Gas atomization can be used in producing high-quality metal powder and the atomizer has great influence on the production quality. In this paper, the annular orifice atomizer is optimized by adopting Laval nozzle as the shape of gas jet orifice and a three-dimensional model of supersonic annular orifice atomizer is adopted to investigate the flow field characteristic at different atomization gas pressure (P0), including gas velocity, static pressure and aspiration pressure at the delivery tube tip. The numerical results indicate that the maximum gas velocity in the atomization zone increases with increasing P0. The aspiration pressure is also found to increase as P0 increases. Comparing with annular slit atomizer, there is no airflow shock wave in the flow field, which can weak the atomization effect.
利用Fluent对拉瓦尔式雾化器流场的数值模拟
气体雾化可以用于生产高质量的金属粉末,雾化喷嘴对生产质量有很大影响。本文采用拉瓦尔喷嘴作为气体喷射孔的形状,对环形孔雾化器进行了优化,并采用超声速环形孔雾化器的三维模型,研究了不同雾化气体压力(P0)下的流场特性,包括输送管尖端的气体速度、静压和吸入压力。数值结果表明,雾化区最大气速随P0的增大而增大。吸入压力也随着P0的增大而增大。与环形狭缝雾化器相比,流场中没有气流激波,可以减弱雾化效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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