A Study on Fuel Transport Characteristics in a Port Fuel Injected Sl Engine during Transient Condition

흡기포트 분사방식의 가솔린 엔진에서 급가속시 연료 거동에 관한 연구

  • 황승환 (국민대학교 자동차공학전문대학원) ;
  • 조용석 (국민대학교 기계자동차공학부) ;
  • 이종화 (아주대학교 기계 및 산업공학부)
  • Published : 2003.05.01

Abstract

In this paper, the fuel transport characteristics during transient condition was studied by using a Fast Response Flame Ionization Detector(FRFID). The quantitative measurement method for the inducted fuel mass into cylinder is studied. The inducted fuel mass into the cylinder was estimated by using calculated air-fuel ratio by hydrocarbon concentration of cylinder and air flow model. In order to estimate the transportation of injected fuel from the intake port into cylinder, the wall wetting fuel model was used. The two coefficient $\alpha$,$\beta$) of the wall-wetting fuel model was determined from the measured fuel mass that was inducted into the cylinder at the first cycle after injection cut-off To reduce an air/fuel ratio fluctuation during rapid throttle opening, the appropriate fuel injection rate was obtain from the wall wetting model with empirical coefficients. Result of air/fuel ratio control, air/fuel excursion was reduced.

Keywords

References

  1. SAE 952481 Visualization of Mixture Preparation in a Port Fuel Injection Engine during Engine Warm-up Y. Shin;K. Min;W. K. Cheng
  2. SAE 952483 Measurements of Fuel Film Thickness in the Inlet Port of an SI Engine by Laser Induced Fluorescence G Almkvist;I. Denbratt;G. Josefsson;I. Magnusson
  3. SAE 2001-01-1937 Throttle Movement Rate Effects on Transient Fuel Compensation in a Port-Fuel-Injected SI Engine J. S. Cowart;W. K. Cheng
  4. SAE 961186 A New Port and Cylinder Wall Wetting Model to Predict Transient Air/Fuel Excursions in a Port Fuel Injected Engine E. W. Curits;C. F. Aquino;D. K. Trumpy;G. C. Davis
  5. SAE 950160 Modeling the Transit Time of Fast Response Flame Ionization Detector during In-Cylinder Sampling T. Summers;N. Collings
  6. PH. D. Thesis, Seoul National Univ. Real-time Measurement and Analysis of Airflow Rate for MPI Engine Control K. S. Park
  7. Transactions of KSAE v.7 no.3 A Study on the Prediction Model of Residual Gas Fraction in SI Engines H. S. Cho;J. H. Lee;J. S. Yoo;K. Y. Lee
  8. SAE952478 Emissions Reduction during Warm-Up Period by Incorporating a Wall-Wetting Fuel Model on the Fuel Injection Strategy during Engine Starting K. Horie;H. Takahasi;S. Akazaki
  9. Transactions of KSAE v.6 no.3 Estimation of Wall Wetting Fuel by FRFID in an SI Engine S. H. Hwang;J. H. Lee;J. S. Yoo