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직접분사식 압축점화 디젤엔진의 연소 및 배기특성에 관한 연구

A Study on Combustion and Emission Characteristics in Compression Ignition CRDI Diesel Engine

  • Kim, Gi-Bok (Advanced engineering Dept., graduate school, kyungnam Univ.) ;
  • Choi, Il-Dong (Advanced engineering Dept., graduate school, kyungnam Univ.) ;
  • Ha, Ji-Hoon (Advanced engineering Dept., graduate school, kyungnam Univ.) ;
  • Kim, Chi-Won (School of Mechanical Engineering, Kyungnam University) ;
  • Yoon, Chang-Sik (School of Mechanical Engineering, Kyungnam University)
  • 투고 : 2014.08.27
  • 심사 : 2014.09.17
  • 발행 : 2014.11.30

초록

Recently it has been focused that the automobile engine has developed in a strong upward tendency for the use of the high viscosity and poorer quality fuels in achieving the high performance, fuel economy, and emission reduction. Therefore it is not easy to solve the problems between low specific fuel consumption and exhaust emission control at motor cars. In this study, it is designed and used the engine test bed which is installed with turbocharger and intercooler. In addition to equipped using CRDI by controlling injection timing with mapping modulator, it has been tested and analyzed the engine performance, combustion characteristics, and exhaust emission as operating parameters, and they were engine speeds(rpm), injection timing(bTDC), and engine load(%). From the result of an experimental analysis, peak cylinder pressure and the rate of pressure rise were increased, and the location of it was closer toward top dead center according to the increasing of engine speed and load, and with advancing injection timing. The combustion characteristics are effected by fuel injection timing due to be enhanced the mass burned fraction. Using the engine dynamometer for analyzing the engine performance, the engine torque and power have been enhanced according to advancing the fuel injection timing. In analyzing of exhaust emission, there has been a trade-off between PM and NOx with increasing of engine speed and load, and with advanced injection timing. The experimental data are shown that the formation of NOx has increased and PM, vice versa.

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