Numerical Simulation of an Industrial Fluid Catalytic Cracking Regenerator

被引:5
|
作者
Tang, Guangwu [1 ]
Silaen, Armin K. [1 ]
Wu, Bin [1 ]
Zhou, Chenn Q. [1 ]
Agnello-Dean, Dwight [2 ]
Wilson, Joseph [3 ]
Meng, Qingjun [3 ]
Khanna, Samir [3 ]
机构
[1] Purdue Univ Calumet, CIVS, Hammond, IN 46323 USA
[2] BP Refining & Logist Technol, Naperville, IL 60563 USA
[3] BP Refining & Logist Technol, Naperville, IL 60563 USA
关键词
regenerator; CFD; Eulerian; kinetic theory; drag model; hydrodynamics; combustion; GAS-SOLID FLOW; DISCRETE PARTICLE; CARBONACEOUS DEPOSITS; KINETIC-THEORY; BED; VALIDATION; CFD; HYDRODYNAMICS; COMBUSTION; BEHAVIOR;
D O I
10.1115/1.4029209
中图分类号
O414.1 [热力学];
学科分类号
摘要
Fluid catalytic cracking (FCC) is one of the most important conversion processes in petroleum refineries, and the FCC regenerator is a key part of an FCC unit utilized in the recovery of solid catalyst reactivity by burning off the deposited coke on the catalyst surface. A three-dimensional multiphase, multispecies reacting flow computational fluid dynamics (CFD) model was established to simulate the flow and reactions inside an FCC regenerator. The Euler-Euler approach, where the two phases (gas and solid) are considered to be continuous and fully interpenetrating, is employed. The model includes gas-solid momentum exchange, gas-solid heat exchange, gas-solid mass exchange, and chemical reactions. Chemical reactions incorporated into the model simulate the combustion of coke which is present on the catalyst surface. The simulation results were validated by plant data.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Fluid catalytic cracking: Modelling of an industrial riser
    Genie Catalytique Reacteurs R., ELF-CNRS, Centre de Recherches Elf Solaize, B.P. 22, F69360 Solaize, France
    不详
    Appl Catal A Gen, 2 (381-405):
  • [22] Numerical simulation of chemical stripping process in resid fluid catalytic cracking stripper
    Liu, Yingjie
    Yang, Jihe
    Lan, Xingying
    Gao, Jinsen
    International Journal of Chemical Reactor Engineering, 2014, 12 (01) : 525 - 537
  • [23] Robust regulation of temperature in reactor-regenerator fluid catalytic cracking units
    AlvarezRamirez, J
    Aguilar, R
    LopezIsunza, F
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1996, 35 (05) : 1652 - 1659
  • [24] Robust regulation of temperature in reactor-regenerator fluid catalytic cracking units
    Alvarez-Ramirez, Jose
    Aguilar, Ricardo
    Lopez-Isunza, Felipe
    Industrial and Engineering Chemistry Research, 1996, 35 (05): : 1652 - 1659
  • [25] A practical countercurrent fluid catalytic cracking regenerator model for in situ operation optimization
    Zhang, Yongmin
    Lu, Chunxi
    Li, Tingwen
    AICHE JOURNAL, 2012, 58 (09) : 2770 - 2784
  • [26] Seventeen-lump model for the simulation of an industrial fluid catalytic cracking unit (FCCU)
    Singh, Binay
    Sahu, Srishti
    Dimri, N.
    Dasila, Prabha K.
    Parekh, Amit A.
    Gupta, Santosh K.
    Das, A. K.
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2017, 42 (11): : 1965 - 1978
  • [27] DIGITAL-SIMULATION OF INDUSTRIAL FLUID CATALYTIC CRACKING UNITS - BIFURCATION AND ITS IMPLICATIONS
    ELSHISHINI, SS
    ELNASHAIE, SSEH
    CHEMICAL ENGINEERING SCIENCE, 1990, 45 (02) : 553 - 559
  • [28] Seventeen-lump model for the simulation of an industrial fluid catalytic cracking unit (FCCU)
    BINAY SINGH
    SRISHTI SAHU
    N DIMRI
    PRABHA K DASILA
    AMIT A PAREKH
    SANTOSH K GUPTA
    A K DAS
    Sādhanā, 2017, 42 : 1965 - 1978
  • [29] Modeling and simulation of fluid catalytic cracking unit
    Gupta, R
    Kumar, V
    Srivastava, VK
    REVIEWS IN CHEMICAL ENGINEERING, 2005, 21 (02) : 95 - 131
  • [30] A MICROSCALE SIMULATION TEST FOR FLUID CATALYTIC CRACKING
    OCONNOR, P
    HARTKAMP, MB
    ACS SYMPOSIUM SERIES, 1989, 411 : 135 - 147