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SIMULINK MODULE ARCHIVE

The following table contains several simulink modules that I have either developed myself or collected from the web. They are useful to cary out steady and dynamic simulations and test different control algorithms.  Click on the Model name to downlaod the simulink module along with it associated files.

Simulink Module

Snap shot

FCCU

 

Model source: Amoco corporation

 

Simulink module developed by Dr. Emad Ali

 

Further reading:

McFarlane, R. C., Reineman, R.C., Bartee, J., Georgakis, C., Dynamic Simulator for a Model IV Fluid Catalytic Cracking Unit, Comp Chem. Eng., 1993, 17, 275

 

 

FCCU

 

Model source: Prof. Wayne Bequette web site

 

Simulink module developed by Prof. W. Bequette

 

 

Tow CSTRs

 

Model source: Paper below

 

Simulink module developed by Dr. Emad Ali

 

Furher reading:

Y. Cao, and D. Biss, An Extension of Singular Value Analysis for Assessing Manipulated Variable Constraints, J. Process control, 6, 34, 1996.

 

 

CSTRSep

 

Model source: Papers below

 

Simulink module developed by: Dr. Emad Ali

 

Further reading:

A. Sagal and S. Pushpavanam, A   Comparison of Control Structure for A nonlinear Reactor Separator Network Sustaining an Autocatalytic Isothermal Reaction, Ind . Eng. Chem. Res. 41, 2005, 2002.

 

S. Gadewar M.Malone,M. Doherty, AIChE, 48, 800, 2002,

 

C. Farschman, K. Viswanath, E. Ydstie, Process Systems and /inventory Control, AIChE, 44, 1841, 1998

 

 

Digester

 

Model source: Prof. Wayne Bequette web site

 

Simulink Module developed by: Prof. W. Bequette

 

 

Distillation

 

Model source: Prof. S Skogestad web site

 

Simulink Module developed by:  Prof. Skogestad

 

 

Dimerization Reactor

 

Model Source: Dr. K. Alhumaizi

 

Simulink Module developed by: Dr. Emad Ali

 

Further reading:

Alhumaizi, K. I. Stability Analysis of the Ethylene Dimerization Reactor for the Selective Production of Butene-1, IChemE, 78, 492-498 (2000).

 

Ali, E. and K. Alhumaizi, Temperature Control of Ethylene to Butene-1 Dimerization Reactor, Ind. Eng. Chem. Res., 39, 1320-1329 (2000)

.

 

Polyethylene Reactor

 

Model source: Dr. K McAuley's group

 

Simulink Module developed by: Dr. Emad Ali

 

Further reading:

McAuley, K.B.; McDonald, D.A.; Mclellan, P.J. Effects of Operating Conditions on Stability of Gas-phase Polyethylene Reactors, AIChE J. 1995, 41, 868-879.

 

Emad Ali, Khalid Al-Humaizi and A. Ajbar, Multivariable Control of a Simulated Industrial Gas-Phase Polyethylene Reactor, Ind. Eng. Chem. Res., 42, 2349-2364, 2003.

 

Evaporator

 

Model source: book below

 

Simulink developed by: Dr. Emad Ali

 

Newell, R. B. and P. L. Lee, Applied Process Control - A Case Study, Prentice-Hall, Sydney, 1989

 

 

Rotary Kiln

 

Model source: Prof. Wayne Bequette web site

 

Simulink module developed by: Prof. W. Bequette

 

 

MSF

 

Model source: Dr. Emad Ali

 

Simulink developed by: Dr. Emad Ali

 

Further reading:

Emad Ali Understanding Industrial MSF Operation I: Stability and Steady State Analysis, Desalination, 143, No. 1, 53-72, 2002

 

 

Open Evaporator

 

Model & Simulink Source: Prof.  Anders Granfors and Prof. Bernt Nilsson

 

Further reading:

Introduction, Model, Process

 

 

pH

 

Model Source: Dr. Emad Ali

 

Simulink Module developed by: Dr. Emad Ali

 

Further reading:

Emad Ali, pH Control Using PI Control Algorithms with Automatic Tuning Method , IchemE, 79(5A), 611-620, 2001

 

 

Tennessee Eastman

 

Simulink Module source: Prof. L Ricker web site

 

 

 

Tennessee Eastman

 

Simulink Module source: Prof. B. Joseph group

 

 

Tow Effects

 

Model source: Papers below

 

Simulink Module developed by: Dr. Emad Ali

 

Frther reading:

P. Daoutidis and A. Kumar Structural Analysis and Output Feedback Control of Nonlinear Multivariable Processes, AIChE, 40, 647, 1994.

 

R. Newell, and G. Fisher, Model Development, Reduction, and Experiment Evaluation for an Evaporator, Ind. Eng. Chem. Proc. Des. Develop. 11, 213, 1972.

 

 

Tow Phase Reactor

 

Model source: Paper below

 

Simulink Module developed by: Dr. Emad Ali

 

Further reading:

A. Kumar and P. Daoutidis, Feedback Regularization and Control of Nonlinear Differential-Algebraic-Equation Systems, AIChE, 42, 2175, 1996. 

 

 

Waste Water Treatment

 

Model source: Papers below

 

Simulink Module developed by: Dr. Emad Ali

 

Further reading:

Emad. Ali, Optimal Operation of a Wastewater Treatment unit Using Advanced Control Strategy, Fifth Saudi Engineering Conference, Makkah Almakarramah, vol. 4, 187-197, March 1999.

 

Andrews, J. F. Dynamic Models and Control Strategies for Wastewater Treatment  Processes, Water Res.,8, 1974, pp. 261-289.

 

Y. Zhao, and S. Skogestad, Comparison of Various Control Configurations for Continuous bioreactor, Ind. Eng. Chem.  Res., 36, 1997, pp.697-705.

 

 

Naptha Cracker, Shell Fractiontor, heat exchanger, Temperature & level, Pressure & Level

 

Prof. B. Joseph Web site

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