This book covers modeling, simulation, and adaptive control of a multi-stage flash (MSF) seawater desalination plant. It outlines the principles of MSF desalination and highlights the importance of the various control systems for large MSF plants. Topics include a satisfactory dynamical model of the plant, an optimal method of approximating the model to the standard first-order-plus-dead-time (FODT) form, a dependable method of simulation and optimization that can handle the original unreduced model, and an optimal controller tuning based on integral criteria.
This book covers modeling, simulation, and adaptive control of a multi-stage flash (MSF) seawater desalination plant. It outlines the principles of MSF desalination and highlights the importance of the various control systems for large MSF plants. Topics include a satisfactory dynamical model of the plant, an optimal method of approximating the model to the standard first-order-plus-dead-time (FODT) form, a dependable method of simulation and optimization that can handle the original unreduced model, and an optimal controller tuning based on integral criteria.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Abraha Woldai received his PhD from the University of Bath, UK in 1997. From 1985 to 1999, he worked in the Water and Electricity Department, Government of Abu Dhabi, in various areas. From 1989 to 1999, he participated in the development of the modeling, simulation, and validation of data for MSF desalination plants on behalf of the Directorate of Power and Desalination Plants, Water and Electricity Department, Government of Abu Dhabi, and the International Foundation for Water Science and Technology in the field of desalination plant control. In addition, Dr. Woldai has authored/coauthored several research papers on power and desalination.
Inhaltsangabe
Introduction. Operation and Control of Multi-Stage Flash Desalination Plants. Dynamic Model for an MSF Plant. Data Reconciliation and Model Validation with Experimental Data. Analysis of the Dynamic Model for Control. Optimal Reduction of the MSF Plant Model to First or Second Order with Delay Forms. Optimal PID Controller Tuning in Large MSF Plants for Seawater Desalination. An Adaptive Scheme with Optimally Tuned PID Controller. Conclusions and Discussion. Programs. Glossary. Bibliography.
Introduction. Operation and Control of Multi-Stage Flash Desalination Plants. Dynamic Model for an MSF Plant. Data Reconciliation and Model Validation with Experimental Data. Analysis of the Dynamic Model for Control. Optimal Reduction of the MSF Plant Model to First or Second Order with Delay Forms. Optimal PID Controller Tuning in Large MSF Plants for Seawater Desalination. An Adaptive Scheme with Optimally Tuned PID Controller. Conclusions and Discussion. Programs. Glossary. Bibliography.
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