A study on efficiency of semi-implicit, density-based solver for simulation of evaporating particle-laden flow
Author:
Affiliation:
1. Graduate School of Engineering, Hokkaido University
2. RIKEN Center for Computational Science (R-CCS)
3. Graduate School of System Informatics, Kobe University
4. Faculty of Engineering, Hokkaido University
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/mel/7/0/7_21-00136/_pdf
Reference15 articles.
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2. Apte, S. V., Mahesh, K. and Moin, P., Large-eddy simulation of evaporating spray in a coaxial combustor, Proceedings of the Combustion Institute, Vol.32, No.2 (2009), pp. 2247-2256.
3. Bale, R., Wang, W. H., Li, C. G., Onishi, K., Uchida, K., Fujimoto, H., Kurose, R. and Tsubokura, M., A scalable framework for numerical simulation of combustion in internal combustion engines, Proceedings of the Platform for Advanced Scientific Computing Conference (2020), pp. 1-10.
4. Gottlieb, S., Shu, C. W. and Tadmor, E., Strong stability-preserving high-order time discretization methods, SIAM Review, Vol.43, No.1 (2001), pp. 89-112.
5. Jansson, N., Bale, R., Onishi, K. and Tsubokura, M., CUBE: A scalable framework for large-scale industrial simulations, The International Journal of High Performance Computing Applications, Vol.33, No.4 (2019), pp. 678-698.
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