Explore a thorough and up to date overview of the current knowledge, developments and outstanding challenges in turbulent combustion and application. Covering combustion of gaseous, liquid and solid fuels in subsonic and supersonic flows, this is a perfect resource for graduate students, researchers and practitioners in the field.
Explore a thorough and up to date overview of the current knowledge, developments and outstanding challenges in turbulent combustion and application. Covering combustion of gaseous, liquid and solid fuels in subsonic and supersonic flows, this is a perfect resource for graduate students, researchers and practitioners in the field.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
1. Introduction N. Swaminathan X.-S. Bai G. Brethouwer and N. E. L. Haugen; 2. Turbulent flame structure and dynamics - combustion regimes: 2.1 Historical and physical perspective of turbulent combustion V. Sabelnikov A. Lipatnikov X.-S. Bai and N. Swaminathan; 2.2 Direct numerical simulation perspective H. Im J. H. Chen and A. Aspden; 2.3 Experimental perspective and challenges B. Zhou J. H. Frank B. Coriton Z. Li M. Alden and X.-S. Bai; 3. Premixed combustion modelling C. Dopazo N. Swaminathan L. Cifuentes and X.-S. Bai; 4. Non-premixed and partially premixed combustion modelling C. Fureby and X.-S. Bai; 5. Chemical kinetics E. J. K. Nilsson C. Fureby and A. Aspden; 6. MILD combustion Y. Minamoto N. A. K. Doan and N. Swaminathan; 7. Supersonic combustion A. Mura and V. Sabelnikov; 8. Liquid fuel combustion Z. Bouali A. Mura and J. Reveillon; 9. Solid fuel combustion N. E. L. Haugen K. Umeki M. Liberman I. Rogachevskii and F. Picano; 10. Challenges in practical combustion: 10.1 Stationary gas turbine combustion challenges D. Lorstad; 10.2 Aero-engine combustor design methods: approach and challenges M. Zedda; 10.3 Internal combustion engines D. Norling and X.-S. Bai; 11. Closing remarks X.-S. Bai N. E. L. Haugen C. Fureby G. Brethouwer and N. Swaminathan.
1. Introduction N. Swaminathan X.-S. Bai G. Brethouwer and N. E. L. Haugen; 2. Turbulent flame structure and dynamics - combustion regimes: 2.1 Historical and physical perspective of turbulent combustion V. Sabelnikov A. Lipatnikov X.-S. Bai and N. Swaminathan; 2.2 Direct numerical simulation perspective H. Im J. H. Chen and A. Aspden; 2.3 Experimental perspective and challenges B. Zhou J. H. Frank B. Coriton Z. Li M. Alden and X.-S. Bai; 3. Premixed combustion modelling C. Dopazo N. Swaminathan L. Cifuentes and X.-S. Bai; 4. Non-premixed and partially premixed combustion modelling C. Fureby and X.-S. Bai; 5. Chemical kinetics E. J. K. Nilsson C. Fureby and A. Aspden; 6. MILD combustion Y. Minamoto N. A. K. Doan and N. Swaminathan; 7. Supersonic combustion A. Mura and V. Sabelnikov; 8. Liquid fuel combustion Z. Bouali A. Mura and J. Reveillon; 9. Solid fuel combustion N. E. L. Haugen K. Umeki M. Liberman I. Rogachevskii and F. Picano; 10. Challenges in practical combustion: 10.1 Stationary gas turbine combustion challenges D. Lorstad; 10.2 Aero-engine combustor design methods: approach and challenges M. Zedda; 10.3 Internal combustion engines D. Norling and X.-S. Bai; 11. Closing remarks X.-S. Bai N. E. L. Haugen C. Fureby G. Brethouwer and N. Swaminathan.
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