A local cluster-structure-dependent drag model for Eulerian simulation of gas-solid flow in CFB risers

被引:17
|
作者
Du, Shaohua [1 ]
Liu, Lijun [1 ]
机构
[1] Xi An Jiao Tong Univ, Minist Educ, Sch Energy & Power Engn, Key Lab Thermofluid Sci & Engn, Xian 710049, Shaanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Gas-solid flow; Drag model; Hydrodynamics; Numerical simulation; Meso-scale structure; LATTICE BOLTZMANN SIMULATIONS; FLUIDIZED-BEDS; EMMS MODEL; NUMBER; HYDRODYNAMICS; ARRAYS;
D O I
10.1016/j.cej.2019.03.009
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Numerical simulating of gas-solid fluidization is crucial to the development of circulating fluidized beds. Accurate simulation entails a structure-dependent drag model based on the sub-grid scale. In this work, a local cluster-structure-dependent drag model is proposed based on the scale resolution of local grid cells, which are resolved into three subsystems to take the effect of heterogeneous flow structure into consideration. The accurate drag correlation based on direct numerical simulation, instead of the Wen & Yu drag correlation, is coupled with the novel drag model to calculate the drag coefficient when the flow structure turns to be homogeneous. In addition, the effect of local solid concentration gradient on the interphase drag force at low voidage is also considered. Then the novel drag model is solved by a genetic algorithm and the obtained drag coefficient is incorporated into the two-fluid model to simulate the gas-solid flow in circulating fluidized bed risers with Geldart A and B particles to validate its accuracy. The results show that the proposed drag model is feasible to capture the heterogeneous flow structure and provide more accurate prediction of solid fluxes and solid concentrations than Gidaspow drag model. In addition, taking the effect of solid concentration gradient into consideration improves the accuracy of prediction, especially in the simulation of CFB risers with Geldart B particles.
引用
收藏
页码:687 / 699
页数:13
相关论文
共 50 条
  • [31] Coarse grid simulation of heterogeneous gas-solid flow in a CFB riser with polydisperse particles
    Wang, J. (jwwang@home.ipe.ac.cn), 1600, Elsevier B.V., Netherlands (234):
  • [32] Coarse grid simulation of heterogeneous gas-solid flow in a CFB riser with polydisperse particles
    Chen, Xizhong
    Wang, Junwu
    Li, Jinghai
    CHEMICAL ENGINEERING JOURNAL, 2013, 234 : 173 - 183
  • [34] Clusters intermittent simulations using dynamic cluster structure-dependent drag model in gas-particles risers
    Jiang, Xiaoxue
    Li, Dan
    Wang, Shuyan
    Cai, Wenjian
    Hassan, M.
    Lu, Huilin
    CHEMICAL ENGINEERING SCIENCE, 2020, 221
  • [35] Meso-scale drag model designed for coarse-grid Eulerian-Lagrangian simulation of gas-solid flows
    Yu, Yaxiong
    Li, Yu
    Jiang, Ming
    Zhou, Qiang
    CHEMICAL ENGINEERING SCIENCE, 2020, 223
  • [36] Cluster-based drag coefficient model for simulating gas-solid flow in a fast-fluidized bed
    Zou, L. M.
    Guo, Y. C.
    Chan, C. K.
    CHEMICAL ENGINEERING SCIENCE, 2008, 63 (04) : 1052 - 1061
  • [37] Numerical investigations on gas–solid flow in circulating fluidized bed risers using a new cluster-based drag model
    Sun, Zeneng
    Zhang, Chao
    Zhu, Jesse
    Particuology, 2022, 63 : 9 - 23
  • [38] 3D Eulerian simulation of a gas-solid bubbling fluidized bed: assessment of drag coefficient correlations
    Esmaili, E.
    Mahinpey, N.
    COMPUTATIONAL METHODS IN MULTIPHASE FLOW V, 2009, : 3 - 13
  • [39] Improvement of EMMS drag model for heterogeneous gas-solid flows based on cluster modeling
    Chen, Cheng
    Dai, Qunte
    Qi, Haiying
    CHEMICAL ENGINEERING SCIENCE, 2016, 141 : 8 - 16
  • [40] Modeling of drag with the Eulerian approach and EMMS theory for heterogeneous dense gas-solid two-phase flow
    Qi, Haiying
    Li, Fei
    Xi, Bing
    You, Changfu
    CHEMICAL ENGINEERING SCIENCE, 2007, 62 (06) : 1670 - 1681