Combustion Theory and Modelling, 1364-7830

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  2. A priori analysis of sub-grid variance of a reactive scalar using DNS data of high Ka flames

    Thommie Nilsson, Ivan Langella, Nguyen Anh Khoa Doan, Nedunchezhian Swaminathan, Rixin Yu & Xue Song Bai, 2019, In: Combustion Theory and Modelling. 23, 5, p. 885-906

    Research output: Contribution to journalArticle

  3. Diesel flame lift-off stabilization in the presence of laser-ignition: a numerical study

    Cheng Gong, Mehdi Jangi & Xue-Song Bai, 2015, In: Combustion Theory and Modelling. 19, 6, p. 696-713

    Research output: Contribution to journalArticle

  4. Comparison of well-mixed and multiple representative interactive flamelet approaches for diesel spray combustion modelling

    G. D'Errico, T. Lucchini, F. Contino, Mehdi Jangi & Xue-Song Bai, 2014, In: Combustion Theory and Modelling. 18, 1, p. 65-88

    Research output: Contribution to journalArticle

  5. Large Eddy Simulation of flame stabilisation dynamics and vortex control in a lifted H2/N2 jet flame

    Christophe Duwig, 2011, In: Combustion Theory and Modelling. 15, 3, p. 325-346

    Research output: Contribution to journalArticle

  6. Large Eddy Simulations of a piloted lean premix jet flame using finite-rate chemistry

    Christophe Duwig, Karl-Johan Nogenmyr, Cheong-ki Chan & Matthew J. Dunn, 2011, In: Combustion Theory and Modelling. 15, 4, p. 537-568

    Research output: Contribution to journalArticle

  7. Phase optimized skeletal mechanisms for engine simulations

    Edward Blurock, Martin Tunér & Fabian Mauss, 2010, In: Combustion Theory and Modelling. 14, 3, p. 295-313

    Research output: Contribution to journalArticle

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