The application of a multivariable predictive controller to the mixing process for the production of a non-Newtonian fluid is discussed in this work. A data-driven model has been developed to describe the dynamic behaviour of the rheological properties of the fluid as a function of the operating conditions using experimental data collected in a pilot plant. The developed model provides a realistic process representation and it is used to test and verify the multivariable controller, which has been designed to maintain viscosity curves of the non-Newtonian fluid within a given region of the viscosity-vs-shear rate plane in presence of process disturbances occurring in the mixing process.

Multivariable real-time control of viscosity curve for a continuous production process of a non-Newtonian fluid

Mei, Roberto
Primo
;
Grosso, Massimiliano
Secondo
;
Baratti, Roberto
Penultimo
;
Tronci, Stefania
Ultimo
2018-01-01

Abstract

The application of a multivariable predictive controller to the mixing process for the production of a non-Newtonian fluid is discussed in this work. A data-driven model has been developed to describe the dynamic behaviour of the rheological properties of the fluid as a function of the operating conditions using experimental data collected in a pilot plant. The developed model provides a realistic process representation and it is used to test and verify the multivariable controller, which has been designed to maintain viscosity curves of the non-Newtonian fluid within a given region of the viscosity-vs-shear rate plane in presence of process disturbances occurring in the mixing process.
2018
Multivariable control system; Non-Newtonian fluid; Viscosity curve; Chemical Engineering (miscellaneous); Bioengineering; Process Chemistry and Technology
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/238067
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