Dominant variables for partial control.: 1.: A thermodynamic method for their identification

被引:33
作者
Tyréus, BD [1 ]
机构
[1] Dupont Co, Cent Res & Dev, Expt Stn, Wilmington, DE 19880 USA
关键词
D O I
10.1021/ie980619y
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Partial control is a decentralized control strategy whereby a number of economic operating objectives are controlled either at their setpoints or within a specified range by feedback control of a few dominant variables. In many processes that have been studied the economic variables are related to the flow and production rates in the process. These rates also determine the magnitude of the energy exchange between the plant's different energy carriers. Thus, a thermodynamic process description can be used to identify the dominant variables affecting the rate of energy exchange within the plant. This approach to dominant variable identification is very efficient in that it focuses on a single expression containing all the dominant variables for each process unit and it ignores all irrelevant process states. In this first part the method is demonstrated on simple units as well as on the more complicated fluidized catalytic cracker. In part 2, the method is applied to the Tennessee Eastman challenge process.
引用
收藏
页码:1432 / 1443
页数:12
相关论文
共 14 条
[1]   STANDARD CHEMICAL THERMODYNAMIC PROPERTIES OF ALKENE ISOMER GROUPS [J].
ALBERTY, RA ;
GEHRIG, CA .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 1985, 14 (03) :803-820
[2]   Dynamics and control of fluidized catalytic crackers .3. Designing the control system: Choice of manipulated and measured variables for partial control [J].
Arbel, A ;
Rinard, IH ;
Shinnar, R .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1996, 35 (07) :2215-2233
[3]   DYNAMIC AND CONTROL OF FLUIDIZED CATALYTIC CRACKERS .1. MODELING OF THE CURRENT GENERATION OF FCCS [J].
ARBEL, A ;
HUANG, ZP ;
RINARD, IH ;
SHINNAR, R ;
SAPRE, AV .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1995, 34 (04) :1228-1243
[4]   Dynamics and control of fluidized catalytic crackers .4. The impact of design on partial control [J].
Arbel, A ;
Rinard, IH ;
Shinnar, R .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1997, 36 (03) :747-759
[5]   SYSTEM PHYSICS - A UNIFORM APPROACH TO THE BRANCHES OF CLASSICAL PHYSICS [J].
BURKHARDT, H .
AMERICAN JOURNAL OF PHYSICS, 1987, 55 (04) :344-350
[6]   A PLANT-WIDE INDUSTRIAL-PROCESS CONTROL PROBLEM [J].
DOWNS, JJ ;
VOGEL, EF .
COMPUTERS & CHEMICAL ENGINEERING, 1993, 17 (03) :245-255
[7]   ENERGY FORMS OR ENERGY CARRIERS [J].
FALK, G ;
HERRMANN, F ;
SCHMID, GB .
AMERICAN JOURNAL OF PHYSICS, 1983, 51 (12) :1074-1077
[8]  
Fuchs H. U., 1996, DYNAMICS HEAT
[9]   ON THE USE OF EXTENSIVE VARIABLES IN PROCESS DYNAMICS AND CONTROL [J].
GEORGAKIS, C .
CHEMICAL ENGINEERING SCIENCE, 1986, 41 (06) :1471-1484
[10]  
KOTHARE MV, 1998, P ACC PHIL PA