An Optimization of the Combustion Parameters for Reducing Exhaust Emissions in a Direct Injection Diesel Engine

직접분사식 디젤기관 배기배출물 저감을 위한 연소인자의 최적화

  • 주봉철 (회원, 전북대학교 기계공학부) ;
  • 노병준 (회원, 전북대학교 기계공학부 자동차신기술연구소) ;
  • 김규철 (회원, 전북대학교 대학원, 기계공학부) ;
  • 이삼구 (회원, 전북대학교 대학원, 기계공학부)
  • Published : 2000.09.01

Abstract

This study is to develop the diesel engine which has 6 cylinder natural aspiration direct injection type of 7.4$\ell$ with high performance, low emissions and low fuel consumption Finally the developed engine meets Korean `98 exhaust emission regulation for the city bus of heavy duty diesel engine by optimizing the various combustion parameters affecting performance and exhaust emissions. Combustion parameters are the swirl ratio of intake ports, the profile of injection pump`s cam affecting injection pressure, the design features of piston bowl of injection pump`s cam affecting injection pressure, the design features of piston bowl of combustion chamber and injector`s hole size. Through experimental analysis, various combustion parameters are optimized and the results are as follows; the swirl ratio is 2.20, the profile of injection pump`s cam is concave and re-entrant ratio, inner diameter of piston bowl and hole diameter of injector is 0.88,$\psi$64.0mm and $\psi$0.25mm respectively.

Keywords

References

  1. SAE 972682 A View of the Future of Automotive Hikosaka N.
  2. JSME NO1.22 no.4 Combustion Process in a D.I Diesel Engine with High Pressure Injection Effects of Partial Distribution of Fuel Spray in a Combustion Chamber on NOx Emission H. Hiroyasu(et al.)
  3. SAE 851542 Smoke and Fuel Consumption Measurements in a Direct Injector Diesel Engine with Varect Swirl David J. Timoney
  4. SAE 880491 A New Series of Timing and Injection Rate Control Systems Hiroshi Ishiwata,;Hideo Okubo
  5. The 10th Internal Combustion Symposium Effect of Combustion Chamber Geometries on In-Cylinder Flow Motion and Exhaust Emission in a Direct Injection Diesel Engine Z. Hou(et al.)
  6. SAE 890790 Swirl Generation by Helical Ports Arcoumanis, C.;Tanabe, S.