Experimental Study on Firing Test of LPI Engine Using Gasoline Fuel for Improving the Production Process at End of line

엔진 착화 라인의 생산성 향상을 위한 LPI 엔진 가솔린 연료 적용성에 대한 실험적 연구

  • Hwang, In-Goo (Department of Mechanical Engineering, Graduate School of Korea University) ;
  • Choi, Seong-Won (Department of Mechanical Engineering, Graduate School of Korea University) ;
  • Myung, Cha-Lee (Department of Mechanical Engineering, Korea University) ;
  • Park, Sim-Soo (Department of Mechanical Engineering, Korea University) ;
  • Lee, Jong-Soo (Kia Motors Company)
  • Published : 2007.05.01

Abstract

The purpose of this study was to evaluate the effects of gasoline fuel to the LPI engine. Firing test bench was used in order to assess the effect on gasoline-injected LPI engine. Gasoline fuel was supplied into the reverse direction(3-4-2-1 cylinder) at 3.0 bar with commercial gasoline fuel pump. Engine test was performed using the firing test mode at end of line. The deviations of excess air ratio of each cylinder and maximum combustion pressure using gasoline fuel were within 0.1 and $1{\sim}2\;bar$. Engine start time was measured with changing coolant temperature at $20^{\circ}C,\;40^{\circ}C,\;80^{\circ}C$, respectively. Residual gasoline volume in the fuel line was measured about 32 cc after firing test and it was less than 2 cc within 10 seconds purging. To simulate the end of line, the residual gasoline in the fuel line was purged during 5 and 10 seconds. Start time of LPI engine with LPG fuel were 0.61 and 0.58 seconds. This work showed that severe problems such as misfiring and liner scuffing were not occurred applying gasoline fuel to LPI engine.

Keywords

References

  1. I. G. Hwang, C.-L. Myung, S. S. Park and J.-S. Lee, 'A Research of LPI Engine Firing Test and Evaluate Application using Gasoline Fuel,' Spring Conference Preceedings, Vol.IV, KSAE, pp.1974-1979, 2006
  2. H. M. Lee, S. W. Choi, C.-L. Myung and S. S Park, 'Experimental Investigation on the THC Reduction in Liquid Phase LPG injection (LPLi) Engine with Recirculation System Using Canister,' Proceeding of IPC-13, pp.407-412, 2005
  3. H. Ono, M. Ishii, S. Tsusaka, B. Takigawa and T. Fukawa, 'Research and Development of LPG Liquid Fuel Injection System(1st. Report)-Overview of Liquid Fuel Injection System and Engine Performance,' JSAE 20025034, 2002
  4. C.-L. Myung, H. C. Kwak and S. S. Park, 'Development On Enhanced Leaked Fuel Recirculation Device Of LPLi Engine to Satisfy SULEV Standard,' Int. J. Automotive Technology, Vol.7, No.4 pp.407-413, 2006
  5. J.-H. Lim, C.-L. Myung, S. S. Park, S.-J. Yang, 'LPLi Engine Performance and Vehicle Exhaust Emission Characteristics,' Transactions of KSAE, Vol.11, No.4, pp.15-21, 2003
  6. W. S. Kim, J. C. Park, S. S. Park, J. S. Yoo and J. H. Lee, 'A Study on the Development of Icing by Injection of LPG in the Liquid Phase around Injector (I),' Transactions of KSAE, Vol.11, No.1, pp.87-94, 2003