Heat transfer coefficient in a high pressure tubular reactor for ethylene polymerization

被引:18
作者
Lacunza, MH [1 ]
Ugrin, PE [1 ]
Brandolin, A [1 ]
Capiati, NJ [1 ]
机构
[1] Univ Nacl Sur, CONICET, Planta Piloto Ingn Quim, RA-8000 Bahia Blanca, Buenos Aires, Argentina
关键词
D O I
10.1002/pen.10267
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Heat transfer in tubular reactors for the high pressure polymerization of ethylene is very complex, since these tubular reactors are usually divided into several zones that exhibit different now patterns and critical fouling behavior. The correct estimation of the overall heat transfer coefficient along the reactor axial distance is a major issue when assessing the predictive capabilities of a mathematical model for the process. In general, previous models employed either constant heat transfer coefficients or the usual correlations for the Nusselt number. Neither of these two approaches is accurate enough to allow a correct prediction of the reactor behavior with respect to temperature profiles and product molecular properties. The present work performs a more comprehensive estimation of the heat transfer coefficient in these reactors. At a first stage the overall heat transfer coefficients were estimated by using appropriate energy balances and a good set of experimental data. Then, a predictive model was proposed for the overall heat transfer coefficient, All flow regimes, as well as fouling effects, were taken into account, and the parameter estimation was based on temperature profiles obtained from an industrial reactor. The temperature profiles, conversions, pressures and molecular properties calculated by means of the experimentally fitted heat transfer coefficients or with the predictive model showed good agreement with plant data.
引用
收藏
页码:992 / 1013
页数:22
相关论文
共 31 条
[1]   ANALYSIS OF HIGH-PRESSURE POLYETHYLENE TUBULAR REACTOR WITH AXIAL MIXING [J].
AGRAWAL, S ;
HAN, CD .
AICHE JOURNAL, 1975, 21 (03) :449-465
[2]  
BENZLER H, 1953, CHEM INGR TECH, V27, P71
[3]   High pressure polymerization of ethylene. An improved mathematical model for industrial tubular reactors [J].
Brandolin, A ;
Lacunza, MH ;
Ugrin, PE ;
Capiati, NJ .
POLYMER REACTION ENGINEERING, 1996, 4 (04) :193-241
[4]   MATHEMATICAL-MODEL FOR HIGH-PRESSURE TUBULAR REACTOR FOR ETHYLENE POLYMERIZATION [J].
BRANDOLIN, A ;
CAPIATI, NJ ;
FARBER, JN ;
VALLES, EM .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1988, 27 (05) :784-790
[5]   COMPUTER MODEL FOR TUBULAR HIGH-PRESSURE POLYETHYLENE REACTORS [J].
CHEN, CH ;
VERMEYCHUK, JG ;
HOWELL, JA ;
EHRLICH, P .
AICHE JOURNAL, 1976, 22 (03) :463-471
[6]  
COLLIER JG, 1981, HEAT EXCHANGERS THER, P999
[7]  
DEAZEVEDO PPF, 1988, CHEM ENG RES DES, V66, P128
[8]  
Dittus F.W., 1930, University of California Publications in Engineering, V2, P443, DOI [10.1016/0735-1933(85)90003-X, DOI 10.1016/0735-1933(85)90003-X]
[9]  
DONATI G, 1981, ACS SYM SER, V196, P579
[10]  
EPSTEIN N, 1978, 6TH P INT HEAT TRANS, V6, P235