EVALUATION OF OPERATING PROCEDURES BASED ON STATIONARY-STATE STABILITY

被引:3
作者
AELION, V
KALAGNANAM, J
POWERS, GJ
机构
[1] CARNEGIE MELLON UNIV,DEPT CHEM ENGN,PITTSBURGH,PA 15213
[2] CARNEGIE MELLON UNIV,DEPT ENGN & PUBL POLICY,PITTSBURGH,PA 15213
关键词
D O I
10.1021/ie00011a018
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The safe and reliable operation of chemical plants depends on high-integrity operating procedures. Such procedures often involve process transition through stationary states. The stability of these states is an important part of the integrity evaluation. The methodology presented in this paper qualitatively identifies families of inherently stable chemical operations and establishes design rules for the synthesis of stable stationary states. These rules have been developed using the Routh-Hurwitz conditions for three qualitative levels of dynamic system models. These levels represent the gains of the dynamic system by the signs of the gains (+, 0, -), the signs and their equality (+, 0, -, =), and finally the gains represented by their order of magnitude values (+, 0, -, =, <, <<, >, >>). Example design rules have been developed during the synthesis of operating procedures for a series of vessels with composition control and temperature control of an exothermic chemical reaction. The most robust design rules apply to systems that can be proven stable by the sign level of gain representation. Less robust rules with a wider range of applicability to dynamic systems have been developed using the equality and order of magnitude representations.
引用
收藏
页码:2532 / 2538
页数:7
相关论文
共 21 条
[11]  
Kharitonov V. L., 1979, FF EQ, V14, P1483
[12]   QUALITATIVE REASONING - MODELING AND SIMULATION WITH INCOMPLETE KNOWLEDGE [J].
KUIPERS, B .
AUTOMATICA, 1989, 25 (04) :571-585
[13]   COMMONSENSE REASONING ABOUT CAUSALITY - DERIVING BEHAVIOR FROM STRUCTURE [J].
KUIPERS, B .
ARTIFICIAL INTELLIGENCE, 1984, 24 (1-3) :169-203
[14]   SYNTHESIS OF OPERATING PROCEDURES FOR COMPLETE CHEMICAL-PLANTS .1. HIERARCHICAL, STRUCTURED MODELING FOR NONLINEAR PLANNING [J].
LAKSHMANAN, R ;
STEPHANOPOULOS, G .
COMPUTERS & CHEMICAL ENGINEERING, 1988, 12 (9-10) :985-1002
[15]   SYNTHESIS OF OPERATING PROCEDURES FOR COMPLETE CHEMICAL-PLANTS .3. PLANNING IN THE PRESENCE OF QUALITATIVE, MIXING CONSTRAINTS [J].
LAKSHMANAN, R ;
STEPHANOPOULOS, G .
COMPUTERS & CHEMICAL ENGINEERING, 1990, 14 (03) :301-317
[16]   SYNTHESIS OF OPERATING PROCEDURES FOR COMPLETE CHEMICAL-PLANTS .2. A NONLINEAR PLANNING METHODOLOGY [J].
LAKSHMANAN, R ;
STEPHANOPOULOS, G .
COMPUTERS & CHEMICAL ENGINEERING, 1988, 12 (9-10) :1003-1021
[17]   FORMAL ORDER-OF-MAGNITUDE REASONING IN PROCESS ENGINEERING [J].
MAVROVOUNIOTIS, ML ;
STEPHANOPOULOS, G .
COMPUTERS & CHEMICAL ENGINEERING, 1988, 12 (9-10) :867-880
[18]  
Quirk J., 1968, INT ECON REV, V9, P294
[19]  
Raiman O., 1986, Proceedings AAAI-86: Fifth National Conference on Artificial Intelligence, P100
[20]  
SAMUELSON PA, 1983, F EC ANAL