CRDI 방식 디젤기관의 EGR율에 따른 UBD20 적용에 관한 실험 연구

An Experimental Study on Application of UBD20 according to EGR Rate in a CRDI Type Diesel Engine

  • 신서용 (충남대학교 대학원 기계공학과) ;
  • 임석연 (충남대학교 대학원 기계공학과, BK21 메카트로닉스사업단) ;
  • 정영철 (공주대학교 기계자동차공학부) ;
  • 최두석 (공주대학교 기계자동차공학부) ;
  • 류정인 (충남대학교 기계공학부, BK21 메카트로닉스사업단)
  • Shin, Seo-Yong (Graduate School of Mechanical Engineering, Chungnam National University) ;
  • Im, Seok-Yeon (Graduate School of Mechanical Engineering, BK21 Mechatronics Group, Chungnam National University) ;
  • Jung, Young-Chul (Division of Mechanical & Automative Engineering, Kongju National University) ;
  • Choi, Doo-Seuk (Division of Mechanical & Automative Engineering, Kongju National University) ;
  • Ryu, Jeong-In (Department of Mechanical Engineering, BK21 Mechatronics Group, Chungnam National University)
  • 발행 : 2007.11.01

초록

An object of this study is to understand the application characteristics in accordance with changes of EGR rate, applying BD20 reformed by ultrasonic energy irradiation to common-rail diesel engine. BD containing about 10% oxygen has attracted attention due to soaring crude oil prices and environmental pollution. This oxygen decreases soot by promoting combustion, but it also increases NOx. To make up for this problem, an EGR system is applied so that NOx might be decreased. In that case, engine power is lowered and exhaust gas is raised. However, the reformed fuel by ultrasonic energy irradiation is changed physically and chemically, promotes combustion, and thus solves such a problem. As the results of the experimemt, we could identify the optimum EGR rate by investigating the engine performance and the characteristics of exhaust materials in accordance with the EGR rate after ultrasonic energy irradiation to BD20 and applying it to common-rail diesel engine. The optimum EGR rate that can satisfy both engine performance and characteristics of exhaust materials was in the range of 15%.

키워드

참고문헌

  1. T. V. Johnson, 'Diesel Emission Control in Review,' SAE 2001-01-0184, 2001
  2. K. H. Ryu and Y. T. Oh, 'Durability Test of a Direct Injection Diesel Engine Using Biodiesel Fuel,' Transactions of KSAE, Vol.12, No.1, pp.32-38, 2004
  3. Y. T. Oh and S. H. Choi, 'Exhaust Emission Characteristics by Alteration of MTBE Contents in D.I. Diesel Engine,' Transactions of KSAE(B), Vol.26, No.5, pp.724-732, 2002 https://doi.org/10.3795/KSME-B.2002.26.5.724
  4. L. G. Schumacher, S. C. Borgelt and W. G. Hires, Soydiesel/Biodiesel Blend Research, ASAE, pp.93-6523, 1993
  5. Y. S. Song, B. O. Lee and J. I. Ryu, 'Effects of the Ultrasonic Energy on Smoke Reduction of Diesel Engine,' Spring Conference Proceedings, Vol.I, KSAE, pp.222-227, 2003
  6. D. S. Bail, 'Combined Effects of BD20, Low Sulfur Diesel Fuel and Diesel Oxidation Catalyst in a HD Diesel Engine,' Int. J. Automotive Technology. Vol.7, No.6, pp.653-658, 2006
  7. Y. F. Lue, Y. Y. Yeh and C. H. Wu, 'The Emission Characteristics of a Small D.I. Diesel Engine Using Biodiesel Blended Fuels,' Journal of Environmental Science and Health, Vol.36, No.5, pp.845-859, 2001 https://doi.org/10.1081/ESE-100103765
  8. Y. Y. Ham and K. M. Chun, 'Parametric Study for Reducing NO and Soot Emissions in a DI Diesel Engine by Using Engine Cycle Simulation,' Transactions of KSAE, Vol.10, No.5, pp.35-44. 2002
  9. Y. S. Song, The Characteristics of Performance and Exhaust in Diesel Engine of Ultrasonic Irradiation Bio-diesel Blended Fuel, Ph. D Dissertation, Chungnam University, 2005