Open Access
Issue
EPJ Web Conf.
Volume 332, 2025
The 8th International Conference on Physics, Mathematics and Statistics (ICPMS2025)
Article Number 01009
Number of page(s) 12
DOI https://doi.org/10.1051/epjconf/202533201009
Published online 09 July 2025
  1. Zhang Lihe, Bai Yanping, Xu Deping, et al. Numerical simulation analysis of pressurized gasification process of crushed coal slag [J]. Journal of Mining Science and Technology, 9(05):797-806(2024) https://doi.org/10.19606/j.cnki.jmst.2024.05.014 [Google Scholar]
  2. MATAMBA T, IGLAUER S, KESHAVARZ A. A progress insight of the formation of hydrogen rich syngas from coal gasification [J]. Journal of the Energy Institute, 105(81-102 (2022) https://doi.org/10.1016/j.joei.2022.08.001 [Google Scholar]
  3. Chen Yin. Analysis of entrained - flow bed gasification technology [J]. Chemical Engineering Design Communications,47(07):36-38(2021). [Google Scholar]
  4. Chen Feiguo, Ge Wei. Simulation of gas-solid two-phase flow by coupling coarse- grained discrete particle method and multiphase material point method [J]. The Chinese Journal of Process Engineering,19(04):651-660(2019). [Google Scholar]
  5. Yan Wenbiao. Selection and Application Instructions of Three Multiphase Flow Models Based on FLUENT [J]. Yunnan Chemical Industry,47(04):43-45(2020). [Google Scholar]
  6. KUROWSKI M P, SPLIETHOFF H. Deposition and slagging in an entrained-flow gasifier with focus on heat transfer, reactor design and flow dynamics with SPH [J]. Fuel Process Technol, 152(147-55(2016) https://doi.org/10.1016/j.fuproc.2016.06.029 [Google Scholar]
  7. LI C, DAI Z, XU J, et al. Numerical study of the particle residence time and flow characters in an Opposed Multi-Burner gasifier [J]. Powder Technology, 286(64-72(2015). [Google Scholar]
  8. YU X, SHEN Y. Transient State modeling of Industry-scale ironmaking blast furnaces [J]. Chemical Engineering Science, 248:117185(2022) https://doi.org/10.1016/j.ces.2021.117185. [CrossRef] [Google Scholar]
  9. Wang Shuai. Euler-Lagrange Numerical Simulation Study on Dense Gas-Solid Two- Phase Reaction Flow in Fluidized Bed [D]. Zhejiang University, (2019) https://doi.org/10.27461/d.cnki.gzjdx.001896. [Google Scholar]
  10. OUYANG B, ZHU L-T, SU Y-H, et al. A hybrid mesoscale closure combining CFD and deep learning for coarse-grid prediction of gas-particle flow dynamics [J]. Chemical Engineering Science, 248:117268(2022) https://doi.org/10.1016/j.ces.2021.117268. [CrossRef] [Google Scholar]
  11. He Jingfeng. Numerical Simulation of Multiphase Fluid Dynamics in Air Heavy Medium Fluidized Bed Based on Euler-Euler Model [D].China University of Mining and Technology,(2012). [Google Scholar]
  12. Wang Xiaofang, Jin Baosheng, Zhong Wenqi. Three-dimensional numerical simulation of fluidized bed gasification process based on Eulerian multiphase flow model [J]. Journal of Southeast University (Natural Science Edition), 03: 454-460(2008). [Google Scholar]
  13. Wu Xiaoping, Chen Jing, Liu Jie. Discussion on Wall Overheating of Multi-Nozzle Opposed Gasifier Caused by Gas Crossflow[J]. China Chemical Trade,(28):91-91,93(2014) https://doi.org/10.3969/j.issn.1674-5167.2014.28.078. [Google Scholar]
  14. Yu Hailong, Zhao Xiang, Zhou Zhijun, et al. Numerical Simulation of the Influence of Coal Slurry Concentration on Coal Water Slurry Gasification [J]. Power Engineering, (02): 217-220+238(2005). [Google Scholar]
  15. Cao Yongjie. Reconstruction of Pulverized Coal Combustion Process Based on CFD and Machine Learning [D]. North China Electric Power University (2023). [Google Scholar]

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