The prediction of Performance in Two-Stroke Large Marine Diesel Engine Using Double-Wiebc Combustion Model

2중 Wiebe 연소모델을 이용한 2행정 대형 선박용 디젤엔진의 성능예측

  • Published : 1999.09.01

Abstract

In this study well-known burned rate expressions of Weibe function and double Wiebe function have been adopted for the combustion analysis of large two stroke marine diesel engine. A cycle simulation program was also developed to predict the performance and pressure waves in pipes using validated burned rate function,. Levenberg-Marquardt iteration method was applied to cali-brate the shape coefficients included in double Wiebe function for the performance prediction of two-stroke marine diesel engine. As a result the performance prediction using double Wiebe func-tion is well correlated withexperimental dta with the accuracy of 5% and pressure waves in intake and transport pipe are well predicted. From the results of this study it can be confirmed that the shape coefficients of burned rate function should be modified using the numerical method suggested for the accurated prediction and double Wiebe function is more suitable than Wiebe func-tion for combustion analysis of large two stroke marine engine.

Keywords

References

  1. SAE paper 800029 A Combustion Correlation for Diesel Engine Simulation N. Watson;A. D. Pilley;M. Marzouk
  2. SAE paper 710176 Mathematical Simulation of a Large Turbocharged Two-Stroke Diesel Engine E. E. Streit;G. L. Borman
  3. Internal Combustion Engine Fundamentals v.2 J. B. Heywood
  4. Introduction to Internal Combustion Engines R. Stone
  5. Int. J. Mech. Sci. v.17 no.2 A Simulation Model Including Intake and Exhaust Systems for a Single Cylinder 4-Stroke Cycle S. I. Engine Benson, R. S. et al.
  6. Habempirische Formel fur die Verbrennungsgeschrwindigkeit I. Wiebe
  7. Prog. Energy Combust. Sci. v.13 Internal-Combustion Engine Heat Transfer G. Borman;K. Nishiwaki
  8. SAE paper 961359 Cylinder Pressure Analysis in High Performance Two-Stroke Engines Anthony Cartwright and Robert Fleck
  9. SAE paper 850107 Description and Analysis of Diesel Engine Rate of Combustion and Performance Using Wiebe's Functions Noboru Miyamoto et al.
  10. 日本機械學會論文集 v.38 no.308 低壓縮比 デイ-ゼル 開發に關する硏究 山村正等
  11. 대한기계학회논문집 v.9 no.3 Wiebe의 연소함수에 의한 디젤기관의 연소와 성능의 해석 李盛魯;宮本登
  12. 대한기계학회논문집 v.9 no.5 Wiebe의 연소함수에 의한 디젤기관의 연소 소음저감에 관한 연구 李盛魯;宮本登
  13. 대한기계학회논문집 v.18 no.3 4기통 4행정 가솔린 엔진의 배기계 형상이 기관성능에 미치는 영향에 관한 연구 정수진;김태훈;김병수;조진호
  14. SAE Paper 932749 Evaluation of a One-Zone Burn-Rate Analysis Procedure Using Production SI Engine Pressure Data Hon, M. Cheung;John B. Heywood
  15. SAE paper 962535 Cylinder Pressure Analysis in High Performance Two-Stroke Engines A. Cartwright;R. Fleck
  16. SAE paper 800131 Motion Pictures of Engine Flames Correlated with Pressure Cards G. M. Rassweiler;L. Withrow
  17. SAE paper 841359 Heat Release Analysis of Engine Pressure Data J. A. Gatowski;E. N. Balles;K. M. Chun;F. E. Nelson;J. A. Ekchian;J. B. Heywood
  18. SAE paper 790493 An Empirical Formula for Computing the Pressure Rise Delay of a Fuel from its Cetane Number and from the relevant Parameters of Direct-Injection Diesel Engine H. O. Hardenberg;F. W. Hase
  19. SAE paper 870455 Effect of Thermal Strain on Measurement of Cylinder Pressure Stein, R. A. et al.
  20. 내연기관 조진호;김태훈