Modelling of Liquid Fuel Spray in Non-Isothermal Environments

2014-01-1433

04/01/2014

Event
SAE 2014 World Congress & Exhibition
Authors Abstract
Content
The theory of liquid fuel jet instabilities has been developed under several assumptions, which include the assumption that the jets breakup processes are isothermal. However, liquid fuels are normally injected into an elevated combustion-chamber temperature to maintain a desirable homogeneous combustible mixture - liquid vapour and air. Therefore, a new linear theory model is developed for the instability and breakup of non-isothermal liquid jets, with consideration of a spatially variation of surface tension along the liquid-gas interface. The spatial variation of surface tension is obtained through temperature-dependent surface tension and transient heat-transfer from the combusting gases to the liquid jet. The classical interface hydrodynamic breakup theory and solution of heat-transfer through semi-infinite medium are coupled through the surface tension gradient. The analytical model accounts for the non-isothermal effects on jet breakup. The model is shown to maintain plausibility of investigating liquid fuel breakup mechanisms under the combustion-chamber operating conditions.
Meta TagsDetails
DOI
https://doi.org/10.4271/2014-01-1433
Pages
6
Citation
Diemuodeke, O., and Sher, I., "Modelling of Liquid Fuel Spray in Non-Isothermal Environments," SAE Technical Paper 2014-01-1433, 2014, https://doi.org/10.4271/2014-01-1433.
Additional Details
Publisher
Published
Apr 1, 2014
Product Code
2014-01-1433
Content Type
Technical Paper
Language
English