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A New Model for Matching Advanced Boosting Systems to Automotive Diesel Engines

Journal Article
2014-01-1078
ISSN: 1946-3936, e-ISSN: 1946-3944
Published April 01, 2014 by SAE International in United States
A New Model for Matching Advanced Boosting Systems to Automotive Diesel Engines
Sector:
Citation: Galindo, J., Lujan, J., Climent, H., Guardiola, C. et al., "A New Model for Matching Advanced Boosting Systems to Automotive Diesel Engines," SAE Int. J. Engines 7(1):131-144, 2014, https://doi.org/10.4271/2014-01-1078.
Language: English

References

  1. Albrecht A. , Grondin O. , Le Berr F. , and Le Soliec G. Towards a Stronger Simulation Support for Engine Control Design: a Methodological Point of View Oil & Gas Science and Technology, Revue IFP 62 4 437 456 2007 10.2516/ogst:2007039
  2. Gautier , P. , Albrecht , A. , Moulin , P. , Chasse , A. et al. A New Simulation Step Towards Virtual Bench Through the Challenging Case of Two-Stage Turbocharger Diesel Engine Control Design SAE Technical Paper 2008-01-0355 2008 10.4271/2008-01-0355
  3. Chow A. and Wyszynski M.L. Thermodynamic Modelling of Complete Engine Systems - A Review Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 213 4 403 415 1999
  4. Grondin , O. , Stobart , R. , Chafouk , H. , and Maquet , J. Modelling the Compression Ignition Engine for Control: Review and Future Trends SAE Technical Paper 2004-01-0423 2004 10.4271/2004-01-0423
  5. Rakopoulos , C. and Giakoumis , E. Review of Thermodynamic Diesel Engine Simulations under Transient Operating Conditions SAE Technical Paper 2006-01-0884 2006 10.4271/2006-01-0884
  6. Bohbot , J. , Lafossas , F. , Albrecht , A. , Miche , M. et al. A New Coupling Approach Using a 1D System Simulation Software and a 3D Combustion Code Applied to Transient Engine Operation SAE Technical Paper 2004-01-3002 2004 10.4271/2004-01-3002
  7. OpenWAM open source project website http://www.openwam.org
  8. Galindo J. , Serrano J.R. , Arnau F. , and Piqueras P. Description and Analysis of a One-Dimensional Gas-Dynamic Model with Independent Time Discretization Proceedings of the ASME Internal Combustion Engine Division, Spring Technical Conference Chicago 2008
  9. Payri F. , Galindo J. , Serrano J.R. , and Arnau F.J. Analysis of Numerical Methods to Solve One Dimensional Fluid-Dynamic Governing Equations Under Impulsive Flow in Tapered Ducts International Journal of Mechanical Science 46 981 1004 2004
  10. Winterbone , D. and Yoshitomi , M. The Accuracy of Calculating Wave Action in Engine Intake Manifolds SAE Technical Paper 900677 1990 10.4271/900677
  11. Winterbone , D. , Thiruarooran , C. , and Wellstead , P. A Wholly Dynamic Model of a Turbocharged Diesel Engine for Transfer Function Evaluation SAE Technical Paper 770124 1977 10.4271/770124
  12. Watson , N. Transient Performance Simulation and Analysis of Turbocharged Diesel Engines SAE Technical Paper 810338 1981 10.4271/810338
  13. Watson , N. and Marzouk , M. A Non-Linear Digital Simulation of Turbocharged Diesel Engines Under Transient Conditions SAE Technical Paper 770123 1977 10.4271/770123
  14. Kao , M. and Moskwa , J. Nonlinear Cylinder and Intake Manifold Pressure Observers for Engine Control and Diagnostics SAE Technical Paper 940375 1994 10.4271/940375
  15. Zweiri Y.H. , Winterbone J.F. , and Seneviratne L.D. Detailed Analytical Model of a Single-Cylinder Diesel Engine in the Crank-Angle Domain Proceedings of the Institution of Mechanical Engineers Part D: Journal of Automobile Engineering 215 1197 1216 2001
  16. Eriksson L. Modeling and Control of Turbocharged SI and DI Engines Oil & Gas Science and Technology - Revue IFP 62 4 523 538 2007
  17. Guzzella L. and Onder C.H. Introduction to Modeling and Control of Internal Combustion Engine Systems Springer-Verlag Berlin Heidelberg 970-3-642-10774-0 2010
  18. Jankovic M. , Jankovik M. , and Kolmanovsky I. Constructive Lyapunov Control Design for Turbocharged Diesel Engines IEEE Transactions on Control Systems Technology 8 2 288 299 2000
  19. Hendricks , E. The Analysis of Mean value Engine Models SAE Technical Paper 890563 1989 10.4271/890563
  20. Hendricks , E. , Chevalier , A. , Jensen , M. , Sorenson , S. et al. Modelling of the Intake Manifold Filling Dynamics SAE Technical Paper 960037 1996 10.4271/960037
  21. Jensen , J. , Kristensen , A. , Sorenson , S. , Houbak , N. et al. Mean Value Modeling of a Small Turbocharged Diesel Engine SAE Technical Paper 910070 1991 10.4271/910070
  22. He , Y. and Lin , C. Development and Validation of a Mean Value Engine Model for Integrated Engine and Control System Simulation SAE Technical Paper 2007-01-1304 2007 10.4271/2007-01-1304
  23. He Y. and Rutland C.J. Application of Artificial Neural Networks in Engine Modeling International of Engine Research 5 4 281 296 2004
  24. He Y. and Rutland C. Application of Artificial Neural Networks for Integration of Advanced Engine Simulation Methods ASME ICE Division Fall 2000 Technical Meeting Peoria, Illinois 2000
  25. Pischinger , S. , Schernus , C. , Lütkemeyer , G. , Theuerkauf , H. et al. Investigation of Predictive Models for Application in Engine Cold-Start Behavior SAE Technical Paper 2004-01-0994 2004 10.4271/2004-01-0994
  26. Hountalas , D. , Kouremenos , D. , Mavropoulos , G. , Binder , K. et al. Multi-Zone Combustion Modeling as a Tool for DI Diesel Engine Development - Application for the Effect of Injection Pressure SAE Technical Paper 2004-01-0115 2004 10.4271/2004-01-0115
  27. Arrègle , J. , López , J. , Martín , J. , and Mocholí , E. Development of a Mixing and Combustion Zero-Dimensional Model for Diesel Engines SAE Technical Paper 2006-01-1382 2006 10.4271/2006-01-1382
  28. Torregrosa A.J. , Galindo J. , Guardiola C. , and Varnier O. Combined Experimental and Modeling Methodology for Intake Line Evaluation in Turbocharged Diesel Engines International Journal of Automotive Technology 12 3 359 367 2011
  29. Park J. , Lee K.S. , Song S. , and Chun K.M. Numerical Study of a Light-Duty Diesel Engine with a Dual-Loop EGR System Under Frequent Engine Operating Conditions Using the DOE Method International Journal of Automotive Technology 11 5 616 623 2010
  30. Payri F. , Molina S. , Martin J. , and Armas O. influence of Measurement Errors and Estimated Parameters on Combustion Diagnostic Applied Thermal Engineering 26 226 236 2006
  31. Torregrosa A. , Olmeda P. , Degraeuwe B. , and Reyes M. A Concise Wall Temperature Model for DI Diesel Engines Applied Thermal Engineering 26 1320 1327 2006
  32. Woschni , G. A Universally Applicable Equation for the Instantaneous Heat Transfer Coefficient in the Internal Combustion Engine SAE Technical Paper 670931 1967 10.4271/670931
  33. Payri , F. , Margot , X. , Gil , A. , and Martin , J. Computational Study of Heat Transfer to the Walls of a DI Diesel Engine SAE Technical Paper 2005-01-0210 2005 10.4271/2005-01-0210
  34. Payri F. , Margot X. , Gil A. , and Martin J. Prediction of Heat Transfer to the Walls in DI Diesel Engines Proceedings of the 2nd EACC International European Automotive CFD Conference Frankfurt 2005
  35. Benajes J. , Reyes E. , and Lujan J.M. Modelling Study of the Scavenging Process in a Turbocharged Diesel Engine with Modified Valve Operation Proceedings of the Institution of Mechanical Engineers Part C: Journal of Mechanical Engineering Science 210 383 393 1996 10.1243/PIME_PROC_1996_210_210_02
  36. JANAF Thermodynamical Tables DOW Chemical Company 1962 1966
  37. Kee R.J. , Rupley F.M. , and Miller J.A. The Chemkin Thermodynamic Data Base Sandia Report, SAND87-8215B 1991
  38. Arregle J. , Lopez J.J. , Garcia J.M. , and Fenollosa C. Development of a Zero-Dimensional Diesel Combustion Model - Part 1 Analysis of the Quasi-Steady Diffusion Combustion Phase Applied Thermal Engineering 23 1301 1317 2003 10.1016/S1359-4311(03)00079-6
  39. Arregle J. , Lopez J.J. , Garcia J.M. , and Fenollosa C. Development of a Zero-Dimensional Diesel Combustion Model - Part 2 Analysis of the Transient Initial and Final Diffusion Combustion Phases Applied Thermal Engineering 23 1319 1331 2003 10.1016/S1359-4311(03)00080-2
  40. Dec , J. A Conceptual Model of DI Diesel Combustion Based on Laser-Sheet Imaging* SAE Technical Paper 970873 1997 10.4271/970873
  41. Hiroyasu H. , Kadota T. , and Arai M. Development and Use of a Spray Combustion Modeling to Predict Diesel Engine Efficiency and Pollutant Emissions - Part 1 Combustion Modeling Bulletin of the Japan Society Mechanical Engineering 26 569 575 1983
  42. Wiebe I. Halbempirische Formel fur die Verbrennungs-Geschwindigkeit Verlag der Akadimie der Wissenschaften der Vd SSR Moscow 1956
  43. Serrano J.R. , Climent H. , Guardiola C. , and Piqueras P. Methodology for Characterisation and Simulation of Turbocharged Diesel Engines Combustion During Transient Operation - Part 2: Phenomenological Combustion Simu-lation Applied Thermal Engineering 29 150 158 2009
  44. Galindo J. , Lujan J.M. , Serrano J.R. , Dolz V. , and Guilain S. Description of a Heat Transfer Model Suitable to Calculate Transient Processes of Turbocharged Diesel Engines with One-Dimensional Gas-Dynamic Codes Applied Thermal Engineering 26 66 76 2006
  45. Depcik , C. and Assanis , D. A Universal Heat Transfer Correlation for Intake and Exhaust Flows in an Spark-Ignition Internal Combustion Engine SAE Technical Paper 2002-01-0372 2002 10.4271/2002-01-0372
  46. Caton J.A. and Heywood J.B. An Experimental and Analytical Study of Heat Transfer in an Engine Exhaust Port International Journal of Heat and Mass Transfer 24 581 895 1981
  47. Reyes M. Modelo de Transferencia de Calor Para Colectores de Escape de Motores Alternativos PhD Thesis Universidad Politecnica de Valencia Valencia 1994
  48. Kays W.M. and London A.L. Compact Heat Exchangers McGraw Hill Book Company Second New York 1964
  49. Martin , G. , Talon , V. , Higelin , P. , Charlet , A. et al. Implementing Turbomachinery Physics into Data Map-Based Turbocharger Models SAE Int. J. Engines 2 1 211 229 2009 10.4271/2009-01-0310
  50. Boger T. and Heibel A.K. Heat Transfer in Conductive Monolith Structures Chemical Engineering Science 60 1823 1835 2005 10.1016/j.ces.2004.11.031
  51. Kladopoulou , E. , Yang , S. , Johnson , J. , Parker , G. et al. A Study Describing the Performance of Diesel Particulate Filters During Loading and Regeneration - A Lumped Parameter Model for Control Applications SAE Technical Paper 2003-01-0842 2003 10.4271/2003-01-0842
  52. Konstandopoulos , A. , Kostoglou , M. , Skaperdas , E. , Papaioannou , E. et al. Fundamental Studies of Diesel Particulate Filters: Transient Loading, Regeneration and Aging SAE Technical Paper 2000-01-1016 2000 10.4271/2000-01-1016
  53. Hilpert R. Experimental Study of Heat Dissipation of Heated Wire and Pipe in Air Current Forschungsarbeiten auf dem Gebiete des Ingenieur - Wesens - Ausgabe A 4 5 215 224 1933
  54. Konstantinidis P.A. , Koltsakis G.C. , and Stamatelos A.M. Transient Heat Transfer Modelling in Automotive Exhaust Systems Proceedings of the Institution of Mechanical Engineers Part C: Journal of Mechanical Engineering Science 211 1 1 15 1997
  55. Chapman A.J. Heat Transfer Macmillan Publishing Company New York 1960
  56. Tancrez M. , Galindo J. , Guardiola C. , Varnier O. , Fajardo P. Adapted Turbine Maps for Turbocharger Engine Matching Experimental Thermal and Fluid Science 35 1 146 153 2011 10.1016/j.expthermflusci.2010.07.018
  57. Lapuerta M. , Armas O. , and Hernandez J.J. Diagnostic of D.I. Diesel Combustion from In-Cylinder Pressure Signal by Estimation of Mean Thermodynamic Properties of the Gas Applied Thermal Engineering 19 513 529 1999

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