Wang, J., Meng, H., Yang, J., & Xie, Z. (2023). Multi-GPU accelerated cellular automaton model for simulating the solidification structure of continuous casting bloom. The Journal of Supercomputing: An International Journal of High-Performance Computer Design, Analysis, and Use, 79(5), 4870-4894. https://doi.org/10.1007/s11227-022-04839-z
ISO-690 (author-date, English)WANG, Jingjing, MENG, Hongji, YANG, Jian and XIE, Zhi, 2023. Multi-GPU accelerated cellular automaton model for simulating the solidification structure of continuous casting bloom. The Journal of Supercomputing: An International Journal of High-Performance Computer Design, Analysis, and Use. 1 March 2023. Vol. 79, no. 5, p. 4870-4894. DOI 10.1007/s11227-022-04839-z.
Modern Language Association 9th editionWang, J., H. Meng, J. Yang, and Z. Xie. “Multi-GPU Accelerated Cellular Automaton Model for Simulating the Solidification Structure of Continuous Casting Bloom”. The Journal of Supercomputing: An International Journal of High-Performance Computer Design, Analysis, and Use, vol. 79, no. 5, Mar. 2023, pp. 4870-94, https://doi.org/10.1007/s11227-022-04839-z.
Mohr Siebeck - Recht (Deutsch - Österreich)Wang, Jingjing/Meng, Hongji/Yang, Jian/Xie, Zhi: Multi-GPU accelerated cellular automaton model for simulating the solidification structure of continuous casting bloom, The Journal of Supercomputing: An International Journal of High-Performance Computer Design, Analysis, and Use 2023, 4870-4894.
Emerald - HarvardWang, J., Meng, H., Yang, J. and Xie, Z. (2023), “Multi-GPU accelerated cellular automaton model for simulating the solidification structure of continuous casting bloom”, The Journal of Supercomputing: An International Journal of High-Performance Computer Design, Analysis, and Use, Vol. 79 No. 5, pp. 4870-4894.