Atomization of liquid pulsed jet in subsonic crossflow

Author:

Chang Jianlong12ORCID,He Liujing12ORCID,Chen Lianhua3,Li Zhaoyong4

Affiliation:

1. College of Mechatronic Engineering, North University of China 1 , Taiyuan 030051, China

2. Institute of Intelligent Weapon, North University of China 2 , Taiyuan 030051, China

3. Jiangnan Industries Group CO., LTD. 3 , Xiangtan 411207, China

4. Jinxi Industrial Group Co., Ltd 4 , Taiyuan 030027, China

Abstract

Pulsed jet is an effective solution to improve fuel jet penetration depth and consequently increase the mixing efficiency of gas–liquid in conventional combustion chambers. This has the benefits of reducing pollutant emissions and diminishing the instability of fuel combustion. However, the atomization process of pulsed jets with small amplitude has still not been properly investigated. This paper studies such a process through Large Eddy Simulation and a Coupled Level Set and Volume of Fluid method. We investigate the atomization process in a liquid pulsed jet with a subsonic crossflow and the impact of the Strouhal number on atomization morphology and the behavior of the pulsed jet in general. Results show that, with a constant mass flow rate, the role of Rayleigh–Taylor instability is replaced by the periodic fluctuation of the jet velocity, which ends up dominating the primary process of atomization of the liquid transverse pulsed jet. This also improves atomization, in general, and the fragmentation of the jet. We also show that the Strouhal number significantly impacts the penetration depth of the jet, with high values increasing penetration by up to 12%.

Funder

Aviation Science Foundation

Fundamental Research Program of Shanxi Province

Foundation for Innovative Research Groups of the National Natural Science Foundation of China

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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