Back to Search Start Over

Experimental and Analytical Study on the Liquid Film by Jet–Wall Impingement

Authors :
Chuansheng Liu
Chenglong Tang
Qingchen Ma
Zuohua Huang
Peng Zhang
Feng Zhang
Source :
Journal of Thermophysics and Heat Transfer. :1-9
Publication Year :
2023
Publisher :
American Institute of Aeronautics and Astronautics (AIAA), 2023.

Abstract

Liquid film cooling by jet–wall impingement on the combustor wall is commonly used in small rocket engines. The heat transfer mechanism inside the liquid film is closely related to the film flow. Therefore, we establish a comprehensive analytical model with reasonable assumptions for the liquid film flow by inclined jet–wall impingement, and we validate it through a series of experiments. It is found that the predicted liquid film dimensions agree well with the experimental results. As the impingement angle increases from 30 to 60 deg, the shape of the liquid film turns from an oval to a circle. With the increase of the impingement velocity from 7.8 to [Formula: see text], the width, length, and area of the liquid film increase. The wall roughness [Formula: see text] ranges from 6.3 to [Formula: see text], which shows negligible effects on the liquid film dimensions. As the surface tension increases from 36.03 to 67.13 mN/m and the viscosity increases from 1 to [Formula: see text], the dimensions of the liquid film decrease. The effect of viscosity is more significant than surface tension within the scope of this experiment. Finally, an empirical correlation for the three investigated film dimensional parameters is proposed.

Details

ISSN :
15336808 and 08878722
Database :
OpenAIRE
Journal :
Journal of Thermophysics and Heat Transfer
Accession number :
edsair.doi...........fb4cd8d7fac317c98479ab2f69c6135f