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Numerical Methodology for Optimization of Compression-Ignited Engines Considering Combustion Noise Control

Journal Article
2018-01-0193
ISSN: 1946-3936, e-ISSN: 1946-3944
Published April 03, 2018 by SAE International in United States
Numerical Methodology for Optimization of Compression-Ignited Engines Considering Combustion Noise Control
Sector:
Citation: Broatch, A., Novella, R., Gomez-Soriano, J., Pal, P. et al., "Numerical Methodology for Optimization of Compression-Ignited Engines Considering Combustion Noise Control," SAE Int. J. Engines 11(6):625-642, 2018, https://doi.org/10.4271/2018-01-0193.
Language: English

References

  1. Kampa , M. and Castanas , E. Human Health Effects of Air Pollution 4th International Workshop on Biomonitoring of Atmospheric Pollution 151 2 362 367 2008 10.1016/j.envpol.2007.06.012
  2. Carbon Disclosure Project 2015
  3. Hasegawa , R. and Yanagihara , H. HCCI Combustion in DI Diesel Engine SAE Technical Paper 2003-01-0745 2003 10.4271/2003-01-0745
  4. Hardy , W.L. and Reitz , R.D. A Study of the Effects of High EGR, High Equivalence Ratio, and Mixing Time on Emissions Levels in a Heavy-Duty Diesel Engine for PCCI Combustion SAE Technical Paper 2006-01-0026 2006 10.4271/2006-01-0026
  5. Dec , J.E. Advanced Compression-Ignition Engines-Understanding the in-Cylinder Processes Proceedings of the Combustion Institute 32 2 2727 2742 2009 10.1016/j.proci.2008.08.008
  6. Hanson , R. , Splitter , D. , and Reitz , R.D. Operating a Heavy-Duty Direct-Injection Compression-Ignition Engine with Gasoline for Low Emissions SAE Technical Paper 2009-01-1442 2009 10.4271/2009-01-1442
  7. Manente , V. , Johansson , B. , Tunestal , P. , and Cannella , W. Effects of Different Type of Gasoline Fuels on Heavy Duty Partially Premixed Combustion SAE Int. J. Engines 2 2 71 88 2010 10.4271/2009-01-2668
  8. Masterton , B. , Heffner , H. , and Ravizza , R. The Evolution of Human Hearing The Journal of the Acoustical Society of America 45 4 966 985 1969 10.1121/1.1911574
  9. Schwarz , A. and Janicka , J. Combustion Noise Berlin Springer-Verlag 2009
  10. Strahle , W.C. Combustion noise Progress in Energy and Combustion Science 4 3 157 176 1978 10.1016/0360-1285(78)90002-3
  11. Flemming , F. , Sadiki , A. , and Janicka , J. Investigation of Combustion Noise Using a LES/CAA Hybrid Approach Proceedings of the Combustion Institute 31 2 3189 3196 2007 10.1016/j.proci.2006.07.060
  12. Ren , Y. , Randall , R.B. , and Milton , B.E. Influence of the Resonant Frequency on the Control of Knock in Diesel Engines Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 213 2 127 133 1999 10.1243/0954407991526748
  13. Torregrosa , A.J. , Broatch , A. , Martín , J. , and Monelletta , L. Combustion Noise Level Assessment in Direct Injection Diesel Engines by Means of in-Cylinder Pressure Components Measurement Science and Technology 18 7 21 31 2007 10.1088/0957-0233/18/7/045
  14. Payri , F. , Broatch , A. , Margot , X. , and Monelletta , L. Sound Quality Assessment of Diesel Combustion Noise Using in-Cylinder Pressure Components Measurement Science and Technology 20 1 01 12 2009 10.1088/0957-0233/20/1/015107
  15. Payri , F. , Torregrosa , A.J. , Broatch , A. , and Monelletta , L. Assessment of Diesel Combustion Noise Overall Level in Transient Operation International Journal of Automotive Technology 10 6 761 2009 10.1007/s12239-009-0089-y
  16. Stanković , L. and Böhme , J.F. Time-Frequency Analysis of Multiple Resonances in Combustion Engine Signals Signal Processing 79 1 15 28 1999 10.1016/S0165-1684(99)00077-8
  17. Singh , O.P. , Sreenivasulu , T. , and Kannan , M. The Effect of Rubber Dampers on engine’s NVH and Thermal Performance Applied Acoustics 75 17 26 2014 10.1016/j.apacoust.2013.07.007
  18. Anderton , D. Relation between Combustion System and Engine Noise SAE Technical Paper 790270 1979 10.4271/790270
  19. Liu , H. , Zhang , J. , Guo , P. , Bi , F. et al. Sound Quality Prediction for Engine-Radiated Noise Mechanical Systems and Signal Processing 56 277 287 2015 10.1016/j.ymssp.2014.10.005
  20. Vressner , A. , Lundin , A. , Christensen , M. , Tunestål , P. et al. Pressure Oscillations during Rapid HCCI Combustion SAE Technical Paper 2003-01-3217 2003 10.4271/2003-01-3217
  21. Hickling , R.F.D.A. and Sung , S.H. Knock-Induced Cavity Resonances in Open Chamber Diesel Engines Acoustic Society of America 65 5 1474 1479 1979 10.1121/1.382910
  22. Broatch , A. , Margot , X. , Novella , R. , and Gomez-Soriano , J. Combustion Noise Analysis of Partially Premixed Combustion Concept Using Gasoline Fuel in a 2-Stroke Engine Energy 107 612 624 2016 10.1016/j.energy.2016.04.045
  23. Broatch , A. , Margot , X. , Novella , R. , and Gomez-Soriano , J. Impact of the Injector Design on the Combustion Noise of Gasoline Partially Premixed Combustion in a 2-Stroke Engine Applied Thermal Engineering 119 530 540 2017 10.1016/j.applthermaleng.2017.03.081
  24. Torregrosa , A.J. , Broatch , A. , Margot , X. , and Marant , V. Combustion Chamber Resonances in Direct Injection Automotive Diesel Engines: A Numerical Approach International Journal of Engine Research 5 1 83 91 2003 10.1243/146808704772914264
  25. Benajes , J. , Novella , R. , Pastor , J.M. , Hernández-López , A. et al. Optimization of the Combustion System of a Medium Duty Direct Injection Diesel Engine by Combining CFD Modeling with Experimental Validation Energy Conversion and Management 110 212 229 2016 10.1016/j.enconman.2015.12.010
  26. Hiroyasu , H. , Miao , H. , Hiroyasu , T. , Miki , M. et al. Genetic Algorithms Optimization of Diesel Engine Emissions and Fuel Efficiency with Air Swirl, EGR, Injection Timing and Multiple Injections SAE Technical Paper 2003-01-1853 2003 10.4271/2003-01-1853
  27. Costa , M. , Bianchi , G.M. , Forte , C. , and Cazzoli , G. A Numerical Methodology for the Multi-Objective Optimization of the DI Diesel Engine Combustion Energy Procedia 45 711 720 2014 10.1016/j.egypro.2014.01.076
  28. Park , S.W. Optimization of Combustion Chamber Geometry for Stoichiometric Diesel Combustion Using a Micro Genetic Algorithm Fuel Processing Technology 91 11 1742 1752 2010 10.1016/j.fuproc.2010.07.015
  29. Wickman , D. , Yun , H. , and Reitz , R. Split-Spray Piston Geometry Optimized for HSDI Diesel Engine Combustion SAE Technical Paper 2003-01-0348 2003 10.4271/2003-01-0348
  30. Senecal , P. and Reitz , R. Simultaneous Reduction of Engine Emissions and Fuel Consumption Using Genetic Algorithms and Multi-Dimensional Spray and Combustion Modeling SAE Technical Paper 2000-01-1890 2000 10.4271/2000-01-1890
  31. Sun , Y. , Wang , T. , Lu , Z. , Cui , L. et al. The Optimization of Intake Port Using Genetic Algorithm and Artificial Neural Network for Gasoline Engines SAE Technical Paper 2015-01-1353 2015 10.4271/2015-01-1353
  32. Payri , F. , Olmeda , P. , Martín , J. , and García , A. A Complete 0D Thermodynamic Predictive Model for Direct Injection Diesel Engines Applied Energy 88 12 4632 4641 2011 10.1016/j.apenergy.2011.06.005
  33. CONVERGENT SCIENCE Inc. 2015
  34. Ihlenburg , F. The Medium-Frequency Range in Computational Acoustics: Practical and Numerical Aspects Journal of Computational Acoustics 11 02 175 193 2003 10.1142/S0218396X03001900
  35. Yakhot , V. and Orszag , S. Renormalization Group Analysis of Turbulence Journal of Scientific Computing 1 1 3 51 1986 10.1007/BF01061452
  36. Angelberger , C. , Poinsot , T. , and Delhay , B. Improving Near-Wall Combustion and Wall Heat Transfer Modeling in SI Engine Computations SAE Technical Paper 972881 1997 10.4271/972881
  37. Redlich , O. and Kwong , J.N. On the Thermodynamics of Solutions. V. an Equation of State. Fugacities of Gaseous Solutions Chemical Reviews 44 1 233 244 1949 10.1021/cr60137a013
  38. Issa , R. Solution of the Implicitly Discretised Fluid Flow Equations by Operator-Splitting Journal of Computational Physics 62 40 65 1986 10.1016/0021-9991(86)90099-9
  39. Dukowicz , J.K. A Particle-Fluid Numerical Model for Liquid Sprays Journal of Computational Physics 35 2 229 253 1980 10.1016/0021-9991(80)90087-X
  40. Reitz , R.D. and Beale , J.C. Modeling Spray Atomization with the Kelvin-Helmholtz/Rayleigh-Taylor Hybrid Model Atomization and Sprays 9 6 623 650 1999 10.1615/AtomizSpr.v9.i6.40
  41. O’Rourke , P.J. 1981
  42. Amsden , A.A. , O’Rourke , P.J. , and Butler , T.D. 1989
  43. Liu , A.B. , Mather , D.K. , and Reitz , R.D. Modeling the Effects of Drop Drag and Breakup on Fuel Sprays SAE Technical Paper 930072 1993 10.4271/930072
  44. Brakora , J. and Reitz , R. A Comprehensive Combustion Model for Biodiesel-Fueled Engine Simulations SAE Technical Paper 2013-01-1099 2013 10.4271/2013-01-1099
  45. Hiroyasu , H. and Kadota , T. Models for Combustion and Formation of Nitric Oxide and Soot in Direct Injection Diesel Engines SAE Technical Paper 760129 1976 10.4271/760129
  46. Heywood , J.B. Internal Combustion Engine Fundamentals McGraw-Hill Inc. 1998
  47. Senecal , P. , Pomraning , E. , Richards , K. , Briggs , T. et al. Multi-Dimensional Modeling of Direct-Injection Diesel Spray Liquid Length and Flame Lift-Off Length Using CFD and Parallel Detailed Chemistry SAE Technical Paper 2003-01-1043 2003 10.4271/2003-01-1043
  48. Babajimopoulos , A. , Assanis , D.N. , Flowers , D.L. , Aceves , S.M. et al. A Fully Coupled Computational Fluid Dynamics and Multi-Zone Model with Detailed Chemical Kinetics for the Simulation of Premixed Charge Compression Ignition Engines International Journal of Engine Research 6 5 497 512 2005 10.1243/146808705X30503
  49. Pal , P. , Keum , S. , and Im , H.G. Assessment of Flamelet Versus Multi-Zone Combustion Modeling Approaches for Stratified-Charge Compression Ignition Engines International Journal of Engine Research 17 3 280 290 2016 10.1177/1468087415571006
  50. Pal , P. Computational Modeling and Analysis of Low Temperature Combustion Regimes for Advanced Engine Applications 2016 http://hdl.handle.net/2027.42/120735
  51. Pickett , L. , Bruneaux , G. , and Payri , R. 2014
  52. Pal , P. , Probst , D. , Pei , Y. , Zhang , Y. et al. Numerical Investigation of a Gasoline-Like Fuel in a Heavy-Duty Compression Ignition Engine Using Global Sensitivity Analysis SAE Int. J. Fuels Lubr. 10 1 2017 10.4271/2017-01-0578
  53. Torregrosa , A.J. , Olmeda , O. , Degraeuwe , B. , and Reyes , M. A Concise Wall Temperature Model for DI Diesel Engines Applied Thermal Engineering 26 11 12 1320 1327 2006 10.1016/j.applthermaleng.2005.10.021
  54. Navid , A. , Khalilarya , S. , and Taghavifar , H. Comparing Multi-Objective Non-evolutionary NLPQL and Evolutionary Genetic Algorithm Optimization of a DI Diesel Engine: DoE Estimation and Creating Surrogate Model Energy Conversion and Management 126 385 399 2016 10.1016/j.enconman.2016.08.014
  55. Griffiths , A.J. , Miller , J.H. , Suzuki , D.T. , Lewontin , R.C. et al. 2000
  56. Torregrosa , A.J. , Broatch , A. , Margot , X. , and Gomez-Soriano , J. Towards a Predictive CFD Approach for Assessing Noise in Diesel Compression Ignition Engines. Impact of the Combustion Strategies International Conference on Modeling and Diagnostics for Advanced Engine Systems: The 9th COMODIA Okayama, Japan 2017
  57. Torregrosa , A.J. , Broatch , A. , Novella , R. , Gomez-Soriano , J. et al. Impact of Gasoline and Diesel Blends on Combustion Noise and Pollutant Emissions in Premixed Charge Compression Ignition Engines Energy 137 58 68 2017 10.1016/j.energy.2017.07.010
  58. Desantes , J. , Torregrosa , A. , and Broatch , A. Wavelet Transform Applied to Combustion Noise Analysis in Highspeed DI Diesel Engines SAE Technical Paper 2001-01-1545 2001 10.4271/2001-01-1545
  59. Kostka , S. , Lynch , A.C. , Huelskamp , B.C. , Kiel , B.V. et al. Characterization of Flame-Shedding Behavior behind a Bluff-Body Using Proper Orthogonal Decomposition Combustion and Flame 159 9 2872 2882 2012 10.1016/j.combustflame.2012.03.021
  60. Liang , Y.C. , Lee , H.P. , Lim , S.P. , Lin , W.Z. et al. Proper Orthogonal Decomposition and its Applications-Part I: Theory Journal of Sound and Vibration 252 3 527 544 2002 10.1006/jsvi.2001.4041
  61. Bizon , K. , Continillo , G. , Mancaruso , E. , Merola , S.S. et al. POD-Based Analysis of Combustion Images in Optically Accessible Engines Combustion and Flame 157 4 632 640 2010 10.1016/j.combustflame.2009.12.013
  62. Chen , H. , Hung , D.L. , Xu , M. , Zhuang , H. et al. Proper Orthogonal Decomposition Analysis of Fuel Spray Structure Variation in a Spark-Ignition Direct-Injection Optical Engine Experiments in Fluids 55 4 1703 2014 10.1007/s00348-014-1703-y
  63. Chen , H. , Reuss , D.L. , and Sick , V. Analysis of Misfires in a Direct Injection Engine Using Proper Orthogonal Decomposition Experiments in Fluids 51 4 1139 2011 10.1007/s00348-011-1133-z
  64. Danby , S.J. and Echekki , T. Proper Orthogonal Decomposition Analysis of Autoignition Simulation Data of Nonhomogeneous Hydrogen-Air Mixtures Combustion and Flame 144 1 126 138 2006 10.1016/j.combustflame.2005.06.014
  65. Torregrosa , A.J. , Broatch , A. , García-Tíscar , J. , and Gomez-Soriano , J. Combustion and Flame 2017 10.1016/j.combustflame.2017.10.007
  66. Pal , P. , Wu , Y. , Lu , T. , Som , S. et al. Multi-Dimensional CFD Simulations of Knocking Combustion in a CFR Engine Proceedings of the ASME 2017 Internal Combustion Engine Fall Technical Conference, ICEF2017-3599: V002T06A017 2017 10.1115/ICEF2017-3599
  67. Pal , P. , Kolodziej , C. , Choi , S. , Broatch , A. et al. Development of a Virtual CFR Engine Model for Knocking Combustion Analysis SAE Technical Paper 2018-01-0187 2018 10.4271/2018-01-0187
  68. Payri , F. , Broatch , A. , Tormos , B. , and Marant , V. New Methodology for in-Cylinder Pressure Analysis in Direct Injection Diesel Engines-Application to Combustion Noise Measurement Science and Technology 16 2 540 2005 10.1088/0957-0233/16/2/029
  69. Monelletta , L. 2010

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