가솔린 엔진에서 액막 연료량 추정 및 이를 이용한 공연비 예측에 관한 연구

Estimation of Wall Wetting Fuel at Intake Port and Model Based Prediction A/F in a S.I. Engine

  • 황승환 (아주대학교 기계공학과 대학원) ;
  • 이종화 (아주대학교 기계 및 산업공학부) ;
  • 박경석 (금오공과대학교 기계공학부)
  • 발행 : 1999.11.01

초록

According to the stringent exhaust emission regulation, precise control of air fuel ratio is one of the most important issues on gasoline engine. Although many researches have been carried out to identify the fuel transport phenomena in a port fueled gasoline engine, complexity of fuel film behavior in the intake port makes it difficult. The fuel film behavior was investigated recently by using visualization method and these gave us qualitative understanding. The purpose of this study is to estimate of wall wetting fuel in the intake port and the inducted fuel mass was predicted by using wall wetting fuel model . The model coefficient($\alpha$,$\beta$) and fuel film mass on the port wall were determined from measured in-cylinder HC concentration using FRFID after injection off. The fuel film mass was increased, but $\alpha$(ratio of directly inducted fuel mass into cylinder from injected fuel mass) was decreased with increasing load at the same engine speed. $\beta$is nearly constant value(0.8~0.9). when injected fuel mass is varied at 1500rpm , the calculated air fuel ratio using well wetting fuel model was nearly the same as measured by UEGO.

키워드

참고문헌

  1. KSAE 943880 HC저감용 최적 연료 분사 시스템에 관한 연구 이기영;이창식
  2. SAE paper 941872 Liquid Gasoline Behavior in the Engine Cylinder of a SI Engine Younggy Shin;Wai K. Cheng;John B. Heywood
  3. SAE paper 970878 Numerical Analysis of fuel Behavior in a Port Injection Gasoline Engine M. Nagaoka;K. Ohsawa;B. Crary;T. Yamada;S. Sugiura;N. Imatake
  4. SAE paper 950044 A New Method to Analyze Fuel Behavior in a Spark Ignition Engine Keiso Takeda;Takehisa Yaegashi
  5. SAE paper 952478 Emission Reduction During Warm-Up Period by Incorporating a Wall-Wetting Fuel Model on the Fuel Injection Strategy During Engine Starting Kaoru Horie;Hitoshi Takahasi;Shusuke Akazaki
  6. SAE paper 950160 Modeling the Transit Time of a Fast Response Flame Ionization Detector During In-Cylinder Sampling T.Summers;N.Collings
  7. 자동차공학회지 v.6 no.3 가솔린엔진에서 FIRFID를 이용한 액막 연료량 추정 황승환;이종화;유재석
  8. KSAE 96380311 전기점화기관에서 실린더내 잔류가스량 측정방법에 관한 연구 조한승;이종화;이귀영