CFD Analysis of VVT/VVA on the Gas Exchange and Fuel-Air Mixing in a Diesel Engine

Event
2008 SAE International Powertrains, Fuels and Lubricants Congress
Authors Abstract
Content
A three-dimensional simulation was carried out for investigating effects of negative valve overlap (NVO) on gas exchange and fuel-air mixing processes in a diesel homogeneous charge compression ignition (HCCI) engine with early fuel injection. It was found that the case with longer NVO produced a stronger swirl motion and a more significant vortex below the intake valve due to the high annular jet flow through the valve curtain area during the intake stroke. However, there was not much difference in the values of swirl ratio, tumble ratio and turbulence intensity between different NVOs at the end of compression stroke. It was also seen that enlarged NVO not just increased in-cylinder temperature but also improved the temperature homogeneity. With increased NVO, there is a bigger spray shape and more droplets exist in gaps of sprays. This demonstrates that stronger turbulence intensity and higher temperature homogeneity with higher NVO improve fuel vaporization and air-fuel mixing.
Meta TagsDetails
DOI
https://doi.org/10.4271/2008-01-1635
Pages
11
Citation
Peng, Z., Jia, M., and Lu, L., "CFD Analysis of VVT/VVA on the Gas Exchange and Fuel-Air Mixing in a Diesel Engine," SAE Int. J. Fuels Lubr. 1(1):1026-1036, 2009, https://doi.org/10.4271/2008-01-1635.
Additional Details
Publisher
Published
Jun 23, 2008
Product Code
2008-01-1635
Content Type
Journal Article
Language
English