A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

D Barrasso, R Ramachandran - Chemical engineering science, 2012 - Elsevier
Three-dimensional (3-D) population balance equations are often used to model wet
granulation processes, simulating distributions in particle size, liquid binder content, and …

A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

D Barrasso, R Ramachandran - Chemical Engineering …, 2012 - researchwithrutgers.com
Abstract Three-dimensional (3-D) population balance equations are often used to model wet
granulation processes, simulating distributions in particle size, liquid binder content, and …

[引用][C] A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

D BARRASSO… - Chemical engineering …, 2012 - pascal-francis.inist.fr
A comparison of model order reduction techniques for a four-dimensional population balance
model describing multi-component wet granulation processes CNRS Inist Pascal-Francis CNRS …

A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

D Barrasso, R Ramachandran - Chemical Engineering …, 2012 - ui.adsabs.harvard.edu
Abstract Three-dimensional (3-D) population balance equations are often used to model wet
granulation processes, simulating distributions in particle size, liquid binder content, and …

A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

D Barrasso, R Ramachandran - Chemical Engineering Science, 2012 - infona.pl
Three-dimensional (3-D) population balance equations are often used to model wet
granulation processes, simulating distributions in particle size, liquid binder content, and …

[引用][C] A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

D BARRASSO, R RAMACHANDRAN - Chemical engineering science, 2012 - Elsevier