This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Towards the Use of Eulerian Field PDF Methods for Combustion Modeling in IC Engines

Journal Article
2014-01-1144
ISSN: 1946-3936, e-ISSN: 1946-3944
Published April 01, 2014 by SAE International in United States
Towards the Use of Eulerian Field PDF Methods for Combustion Modeling in IC Engines
Sector:
Citation: Lucchini, T., D'Errico, G., Contino, F., and Jangi, M., "Towards the Use of Eulerian Field PDF Methods for Combustion Modeling in IC Engines," SAE Int. J. Engines 7(1):286-296, 2014, https://doi.org/10.4271/2014-01-1144.
Language: English

References

  1. Sjöberg , M. and Dec , J. Smoothing HCCI Heat-Release Rates Using Partial Fuel Stratification with Two-Stage Ignition Fuels SAE Technical Paper 2006-01-0629 2006 10.4271/2006-01-0629
  2. Zhao , H. , Peng , Z. , Williams , J. , and Ladommatos , N. Understanding the Effects of Recycled Burnt Gases on the Controlled Autoignition (CAI) Combustion in Four-Stroke Gasoline Engines SAE Technical Paper 2001-01-3607 2001 10.4271/2001-01-3607
  3. Persson , H. , Hultqvist , A. , Johansson , B. , and Remón , A. Investigation of the Early Flame Development in Spark Assisted HCCI Combustion Using High Speed Chemiluminescence Imaging SAE Technical Paper 2007-01-0212 2007 10.4271/2007-01-0212
  4. Atzler , F. , Kastner , O. , Rotondi , R. , and Weigand , A. Multiple injection and rate shaping Part 1: Emissions reduction in passenger car Diesel engines SAE Technical Paper 2009-24-0004 2009 10.4271/2009-24-0004
  5. Stan , C. , Guenther , S. , Martorano , L. , and Tarantino , C. Aspects of Mixture Formation and Combustion in GDI Engines SAE Technical Paper 2000-01-0648 2000 10.4271/2000-01-0648
  6. Han , Z. , Weaver , C. , Wooldridge , S. , Alger , T. et al. Development of a New Light Stratified-Charge DISI Combustion System for a Family of Engines With Upfront CFD Coupling With Thermal and Optical Engine Experiments SAE Technical Paper 2004-01-0545 2004 10.4271/2004-01-0545
  7. Kulzer , A. , Hathout , J. , Sauer , C. , Karrelmeyer , R. et al. Multi-Mode Combustion Strategies with CAI for a GDI Engine SAE Technical Paper 2007-01-0214 2007 10.4271/2007-01-0214
  8. Mittal V. , Cook D. J. , and Pitsch D. An extended multi-regime flamelet model for {IC} engines Combustion and Flame 159 8 2767 2776 2012
  9. Senecal , P. , Richards , K. , Pomraning , E. , Yang , T. et al. A New Parallel Cut-Cell Cartesian CFD Code for Rapid Grid Generation Applied to In-Cylinder Diesel Engine Simulations SAE Technical Paper 2007-01-0159 2007 10.4271/2007-01-0159
  10. Singh , S. , Reitz , R. , and Musculus , M. Comparison of the Characteristic Time (CTC), Representative Interactive Flamelet (RIF), and Direct Integration with Detailed Chemistry Combustion Models against Optical Diagnostic Data for Multi-Mode Combustion in a Heavy-Duty DI Diesel Engine SAE Technical Paper 2006-01-0055 2006 10.4271/2006-01-0055
  11. Lucchini , T. , D'Errico , G. , Ettorre , D. , and Ferrari , G. Numerical Investigation of Non-Reacting and Reacting Diesel Sprays in Constant-Volume Vessels SAE Int. J. Fuels Lubr. 2 1 966 975 2009 10.4271/2009-01-1971
  12. Som S. and Aggarwal S.K. Effects of primary breakup modeling on spray and combustion characteristics of compression ignition engines Combustion and Flame 157 6 1179 1193 2010
  13. Barths H. , Hasse C. , and Peters N. Computational fluid dynamics modelling of non-premixed combustion in direct injection diesel engines International Journal of Engine Research 1 3 249 267 2000
  14. Lehtiniemi , H. , Zhang , Y. , Rawat , R. , and Mauss , F. Efficient 3-D CFD Combustion Modeling with Transient Flamelet Models SAE Technical Paper 2008-01-0957 2008 10.4271/2008-01-0957
  15. Wright , Y. , Boulouchos , K. , De Paola , G. , and Mastorakos , E. Multi-dimensional Conditional Moment Closure Modelling Applied to a Heavy-duty Common-rail Diesel Engine SAE Int. J. Engines 2 1 714 726 2009 10.4271/2009-01-0717
  16. Wright YM , De Paola G , Boulouchos K , and Mastorakos E Simulations of spray autoignition and flame establishment with two-dimensional cmc Combustion and flame 143 4 402 419 2005
  17. Farrace , D. , Bolla , M. , Wright , Y. , and Boulouchos , K. Predicting In-Cylinder Soot in a Heavy-Duty Diesel Engine for Variations in SOI and TDC Temperature Using the Conditional Moment Closure Model SAE Int. J. Engines 6 3 1580 1593 2013 10.4271/2013-24-0016
  18. Pope S. B. PDF methods for turbulent reactive flows Progress in Energy and Combustion Science 11 119 192 1985
  19. Pope S. B. Turbulent Flows Cambridge University Press 2000
  20. Fox R. O. Computational Models for Turbulent Reacting Flows Cambridge University Press 2003
  21. Haworth D. C. Progress in probability density function methods for turbulent reacting flows Progress in Energy and Combustion Science 36 168259 2010
  22. Haworth D.C. and Pope S.B. Transported probability density function methods for Reynolds-averaged and large-eddy simulations Turbulent Combustion Modeling: Advances, New Trends and Perspectives Echekki T. and Mastorakos E. Springer 2011
  23. Kung , E. and Haworth , D. Transported Probability Density Function (tPDF) Modeling for Direct-Injection Internal Combustion Engines SAE Int. J. Engines 1 1 591 606 2009 10.4271/2008-01-0969
  24. Taut C. , Correa C. , Deutschmann O. , Warnatz J. , Einecke S. , Schulz C. , and Wolfrum J. Three-Dimensional Modeling With Monte CarloProbability Density Function Methods And Laser Diagnostics Of The Combustion In A Two-Stroke Engine Proceedings of the Combustion Institute 28 1153 1159 2000
  25. Vali no L. A field Monte Carlo formulation for calculating the probability density function of a single scalar in a turbulent flow Flow, Turbul. Combust. 60 157 172 1998
  26. Bhattacharjee S. , Jaishree J. , Raj Mohan V. , Zhang H. , and Haworth D.C. PDF-based simulations of turbulent spray combustion in a constant-volume chamber under diesel-engine-like conditions Proceedings of the International Multidimensional Engine Modeling Users Group Meeting 2012
  27. Prasad Vinayaka N. , Masri Assaad R. , Navarro-Martinez Salvador , and Luo Kai H. Investigation of auto-ignition in turbulent methanol spray flames using large eddy simulation Combustion and Flame 160 12 2941 2954 2013
  28. Jaishree J. and Haworth D.C. Comparisons of Lagrangian and Eulerian PDF methods in simulations of non-premixed turbulent jet flames with moderate-to-strong turbulence-chemistry interactions Combustion Theory and Modelling 16 435 463 2012
  29. Jones W.P. and Prasad V.N. Les-pdf simulation of a spark ignited turbulent methane jet Proceedings of the Combustion Institute 33 1 1355 1363 2011
  30. Contino F. , Jeanmart H. , Lucchini T. , and DErrico G. Coupling of in situ adaptive tabulation and dynamic adaptive chemistry: An effective method for solving combustion in engine simulations Proceedings of the Combustion Institute 33 2 3057 3064 2011
  31. Jangi M. , Yu R. , and Bai X. S. A multi-zone chemistry mapping approach for direct numerical simulation of auto-ignition and flame propagation in a constant volume enclosure Combustion Theory and Modelling 16 2 221 249 2012
  32. Contino , F. , Lucchini , T. , D'Errico , G. , Duynslaegher , C. et al. Simulations of Advanced Combustion Modes Using Detailed Chemistry Combined with Tabulation and Mechanism Reduction Techniques SAE Int. J. Engines 5 2 185 196 2012 10.4271/2012-01-0145
  33. Villermaux J. and Devillon J.C. Representation de la coalescence et de la redispersion des domaines de segregation dans un fluide par un modele dinteraction phenomenologique in Proceedings of Second International Symposium on Chemical Reaction Engineering 1 13 1972
  34. Wallesten J. Micromixing effects in atmospheric reacting flows Phd thesis University of Cambridge 2007
  35. Stoer J. and Bulirsch F. Introduction to Numerical Analysis Springer-Verlag 1980
  36. Bekdemir C. , Somers L.M.T. , and de Goey L.P.H. Modeling diesel engine combustion using pressure dependent flamelet generated manifolds Proceedings of the Combustion Institute 33 2 2887 2894 2011
  37. Tap F. and Veynante D. Simulation of Flame Lift-off on a Diesel Jet Using a Generalized Flame Surface Density Approach Proceedings of the Combustion Institute 30 919 926 2005
  38. Nguyen Phuc-Danh , Vervisch Luc , Subramanian Vallinayagam , and Domingo Pascale Multidimensional flamelet-generated manifolds for partially premixed combustion Combustion and Flame 157 1 43 61 2010
  39. Aglave R. , Riedel U. , and Warnatz J. Turbulence-Chemistry Interactions in CFD Modelling of Diesel Engines Combustion Theory and Modelling 12 2 305 328 2008
  40. Schmidt , D. , Nouar , I. , Senecal , P. , Rutland , C. et al. Pressure-Swirl Atomization in the Near Field SAE Technical Paper 1999-01-0496 1999 10.4271/1999-01-0496
  41. Singer M.A. and Pope S.B. Exploiting ISAT to solve the equations of reacting flow Combustion Theory and Modelling 8 361 383 2004
  42. Stein O. T. , Olenik G. , Kronenburg A. , Marincola F. Cavallo , Franchetti B. M. , Kempf A. M. , Ghiani M. , Vascellari M. , and Hasse C. Towards comprehensive coal combustion modelling for les Flow, Turbulence and Combustion 90 4 859 884 2013
  43. Pope S. B. Computationally Efficient Implementation of Combustion Chemistry Using In-Situ Adaptive Tabulation Combustion Theory and Modelling 1 14 63 1997
  44. Liang Long , Stevens John G. , Raman Sumathy , and Farrell John T. The use of dynamic adaptive chemistry in combustion simulation of gasoline surrogate fuels Combustion and Flame 156 7 1493 1502 2009
  45. Jangi Mehdi , Lucchini Tommaso , DErrico Gianluca , and Bai Xue-Song Effects of egr on the structure and emissions of diesel combustion Proceedings of the Combustion Institute 34 2 3091 3098 2013
  46. Raju , M. , Wang , M. , Dai , M. , Piggott , W. et al. Acceleration of Detailed Chemical Kinetics Using Multizone Modeling for CFD in Internal Combustion Engine Simulations SAE Technical Paper 2012-01-0135 2012 10.4271/2012-01-0135
  47. Babajimopoulos A. , Assanis D. N. , Flowers D. L. , Aceves S. M. , and Hessel R. P. A fully coupled computational fluid dynamics and multizone model with detailed chemical kinetics for the simulation of premixed charge compression ignition engines International Journal of Engine Research 6 497 512 2005
  48. Shi Y. , Liang L. , Ge H.-W. , and Reitz R. D. Acceleration of the chemistry solver for modeling di engine combustion using dynamic adaptive chemistry (dac) schemes Combustion Theory and Modelling 14 1 69 89 2010
  49. Meijer M. , Somers B. , Johnson J. , Naber J. , Lee S.-Y. , Malbec L. M. , Bruneaux G. , Pickett L. M. , Bardi M. , Payri R. , and Bazyn T. Engine combustion network (ecn): Characterization and comparison of boundary conditions for different combustion vessels Atomization and Sprays 22 9 777 806 2012
  50. Lucchini T. , D'Errico G. , and Ettorre D. Numerical investigation of the spraymeshturbulence interactions for high-pressure, evaporating sprays at engine conditions International Journal of Heat and Fluid Flow 32 1 285 297 2011
  51. Huh K. Y. and Gosman A. D. A Phenomenological Model of Diesel Spray Atomization Proceedings of the International Conference on Multiphase Flows Tsukuba, Japan 1991
  52. Pitsch , H. , Barths , H. , and Peters , N. Three-Dimensional Modeling of NOx and Soot Formation in DI-Diesel Engines Using Detailed Chemistry Based on the Interactive Flamelet Approach SAE Technical Paper 962057 1996 10.4271/962057
  53. Hasse C. A Two-Dimensional Flamelet Model for Multiple Injections in Diesel Engines PhD thesis Technischen Hochschule Aachen 2004
  54. Rveillon J. and Vervisch L. Spray vaporization in nonpremixed turbulent combustion modeling: a single droplet model Combustion and Flame 121 12 75 90 2000
  55. Som S. , Longman D.E. , Luo Z. , Plomer M. , and Lu T. Three Dimensional simulations of diesel sprays using n-dodecane as a surrogate Eastern States Section of the Combustion Institute Fall Technical Meeting 2011
  56. D'Errico , G. , Lucchini , T. , Stagni , A. , Frassoldati , A. et al. Reduced Kinetic Mechanisms for Diesel Spray Combustion Simulations SAE Technical Paper 2013-24-0014 2013 10.4271/2013-24-0014
  57. D'Errico G. , Lucchini T. , Contino F. , Jangi M. , and Bai X-S. Comparison of well-mixed and multiple representative interactive flamelet approaches for Diesel spray combustion modelling Combustion Theory and Modelling 2014

Cited By