2012Proceedings of the Institution of Mechanical Engineers Part G Journal of Aerospace EngineeringRequires access

Effect of geometric parameters on the spray cone angle in the pressure swirl injector

Juan Liu, Xin-Qiao Zhang, Qinglian Li, Zhenguo Wang

Open publisher page 61 citations

Abstract

Spray cone angle affects the droplet distribution after atomization and is one of the main targets of coaxial gas–liquid injector optimization. Experimental measurements and numerical modeling (volume of fluid method) were used to investigate the effects of geometric parameters on the spray cone angle in pressure swirl injectors. The non-dimensional impact factor, η, is defined to examine the influence of each parameter on the spray cone angle. Except for the atomizer constant, the most important parameters influencing the spray cone angle are the divergent angle at the injector exit, the diameter, and the length of the swirl chamber. Raising the divergent angle at the injector exit reduces spray cone angle, because it increases axial velocity and decreases tangential velocity. Meanwhile, the acceleration of the radial component declines due to the lower pressure differential force. The Malvern diffraction laser system was used to measure the droplet sizes. An empirical formula, which gives the relationship between the Sauter mean diameter and the geometric parameters, D s / d 0 , L 0 / d 0 , and divergent angle, θ, was deduced based on Lefebvre’s theory.

About this research paper

What this paper is about

Spray cone angle affects the droplet distribution after atomization and is one of the main targets of coaxial gas–liquid injector optimization. Experimental measurements and numerical modeling (volume of fluid method) were used to investigate the effects of geometric parameters on the spray cone angle in pressure swirl injectors. The non-dimensional impact factor, η, is defined to examine the influence of each parameter on the spray cone angle. Except for the atomizer constant, the most important parameters influencing the spray cone angle are the divergent angle at the injector exit, the diameter, and the length of the swirl chamber. Raising the divergent angle at the injector exit reduces spray cone angle, because it increases axial velocity and decreases tangential velocity. Meanwhile, the acceleration of the radial component declines due to the lower pressure differential force. The Malvern diffraction laser system was used to measure the droplet sizes. An empirical formula, which gives the relationship between the Sauter mean diameter and the geometric parameters, D s / d 0 , L 0 / d 0 , and divergent angle, θ, was deduced based on Lefebvre’s theory.

Why it matters

OpenAlex reports 61 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Spray cone angle affects the droplet distribution after atomization and is one of the main targets of coaxial gas–liquid injector optimization. Experimental measurements and numerical modeling (volume of fluid method) were used to investigate the effects of geometric parameters on the spray cone angle in pressure swirl injectors. The non-dimensional impact factor, η, is defined to examine the influence of each parameter on the spray cone angle. Except for the atomizer constant, the most important parameters influencing the spray cone angle are the divergent angle at the injector exit, the diameter, and the length of the swirl chamber. Raising the divergent angle at the injector exit reduces spray cone angle, because it increases axial velocity and decreases tangential velocity. Meanwhile, the acceleration of the radial component declines due to the lower pressure differential force. The Malvern diffraction laser system was used to measure the droplet sizes. An empirical formula, which gives the relationship between the Sauter mean diameter and the geometric parameters, D s / d 0 , L 0 / d 0 , and divergent angle, θ, was deduced based on Lefebvre’s theory.

Key concepts: Injector, Sauter mean diameter, Ligand cone angle, Spray characteristics, Coaxial, Mechanics, Materials science, Capillary action

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of geometric parameters on the spray cone angle in the pressure swirl injector — Research Paper | ScholarLens