MODELING OF SLURRY REACTORS - A FUNDAMENTAL APPROACH

被引:125
作者
TORVIK, R
SVENDSEN, HF
机构
[1] Laboratory of Chemical Engineering, The Norwegian Institute of Technology
关键词
bubble-column; fluid-dynamics; modelling; simulation; Slurry-reactor;
D O I
10.1016/0009-2509(90)80112-R
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Multiphase reactors in the form of bubble columns and stirred tank reactors are being used in large numbers throughout the petrochemical and biochemical industry today, and steadily for more complicated reaction systems. It has become increasingly more important to develop good, and theoretically sound models for scaling up and design of the reactors. The most common models used today rely heavily upon empirical information obtainable only from pilot size experiments and this makes "a priori" design from small scale data difficult. The model presented is based on a "first principles" approach where the parameters are fundamental in nature and as far as possible, obtainable from general fluid dynamics literature. It is a dynamic two phase model incorporating a k-ε turbulence model, compressible gas phase and axisymmetry. The equations are discretisized using a finite volume technique with an upwind or hybrid differencing scheme and solved using a variation of the SIMPLE (Semi Implicit Method for Pressure Linked Equations) method. The results from simulations of a two-phase bubble column are compared with measured radial distributions of gas hold-up, liquid velocity and turbulent kinetic energy using air and desalinated water as media. As chemical reaction, the production of methanol from synthesis gas is implemented. Simulation results using a pseudohomogenous 3-phase slurry model are compared with data from literature. © 1990.
引用
收藏
页码:2325 / 2332
页数:8
相关论文
共 19 条
[1]  
BERTY JM, 1984, I CHEM ENG S SER, V87, P455
[2]  
Boussinesq J, 1903, THEORIE ANAL CHALEUR, V2
[3]  
BOYSAN F, 1985, REFINING ALLOYING LI, P267
[4]   DEVELOPMENT OF A DIRECTIONALLY CHARACTERISTIC MEASURING TECHNIQUE FOR DETERMINATION OF THE TURBULENT-FLOW STRUCTURE IN MULTIPHASE FLOW [J].
BUCHHOLZ, R ;
FRANZ, K ;
ONKEN, U .
CHEMIE INGENIEUR TECHNIK, 1982, 54 (06) :608-609
[5]  
Carver M.B., 1983, AECL8066 CHALK RIV N
[6]   3-DIMENSIONAL NUMERICAL MODELING OF PHASE DISTRIBUTION OF 2-FLUID FLOW IN ELBOWS AND RETURN BENDS [J].
CARVER, MB ;
SALCUDEAN, M .
NUMERICAL HEAT TRANSFER, 1986, 10 (03) :229-251
[7]   A METHOD OF LIMITING INTERMEDIATE VALUES OF VOLUME FRACTION IN ITERATIVE 2-FLUID COMPUTATIONS [J].
CARVER, MB .
JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 1982, 24 (04) :221-224
[8]   APPLICABILITY OF AXIAL-DISPERSION MODEL TO ANALYZE MASS-TRANSFER MEASUREMENTS IN BUBBLE-COLUMNS [J].
DECKWER, WD ;
NGUYENTIEN, K ;
KELKAR, BG ;
SHAH, YT .
AICHE JOURNAL, 1983, 29 (06) :915-922
[9]  
Doormaal J. P. V., 1984, NUMERICAL HEAT TRANS, V7, P147
[10]  
DREW DA, 1979, INT J MULTIPHASE FLO, V5, P223