Colloidal-suspension flow in porous media is modelled simultaneously by the large scale population balance equations and by the microscale network model. The phenomenological parameter of the correlation length in the population balance model is determined from the network modelling. It is found out that the correlation length in the population balance model depends on the particle size. This dependency calculated by two-dimensional network has the same tendency as that obtained from the laboratory tests in engineered porous media. © 2013 Elsevier B.V.Hao Yuan, Zhenjiang You, Alexander Shapiro, Pavel Bedrikovetsk
© Springer The definitive version can be found at www.springerlink.comMicro scale population balance...
An analytical model for deep bed filtration of suspension in porous media and straining under siz...
The colloidal transport and deposition are phenomena involved in different engineering problems. In ...
Colloidal-suspension flow in porous media is modelled simultaneously by the large scale population b...
An analytical model for deep bed filtration of suspension in porous media and straining under size e...
A population balance model for a particulate suspension transport with size exclusion capture of par...
Document ID: 152026-MSAbstract A new stochastic model for suspension/colloidal transp...
Document ID: 152025-MSAbstract A new analytical model for deep bed filtration of coll...
The article investigates one‐dimensional (1‐D) suspension‐colloidal transport of size‐distributed pa...
A new stochastic model for suspension/colloidal transport in porous media is developed accounting fo...
The original publication can be found at www.springerlink.comA population balance model for particul...
A network model has been developed to simulate the flow of emulsions and solid particles through por...
AbstractProblems of deep bed filtration of the suspension in a porous soil are important for the des...
A pore scale population balance model is formulated for deep bed filtration of stable particulate su...
Abstract Particle transport in suspension flow with pore plugging and particle captur...
© Springer The definitive version can be found at www.springerlink.comMicro scale population balance...
An analytical model for deep bed filtration of suspension in porous media and straining under siz...
The colloidal transport and deposition are phenomena involved in different engineering problems. In ...
Colloidal-suspension flow in porous media is modelled simultaneously by the large scale population b...
An analytical model for deep bed filtration of suspension in porous media and straining under size e...
A population balance model for a particulate suspension transport with size exclusion capture of par...
Document ID: 152026-MSAbstract A new stochastic model for suspension/colloidal transp...
Document ID: 152025-MSAbstract A new analytical model for deep bed filtration of coll...
The article investigates one‐dimensional (1‐D) suspension‐colloidal transport of size‐distributed pa...
A new stochastic model for suspension/colloidal transport in porous media is developed accounting fo...
The original publication can be found at www.springerlink.comA population balance model for particul...
A network model has been developed to simulate the flow of emulsions and solid particles through por...
AbstractProblems of deep bed filtration of the suspension in a porous soil are important for the des...
A pore scale population balance model is formulated for deep bed filtration of stable particulate su...
Abstract Particle transport in suspension flow with pore plugging and particle captur...
© Springer The definitive version can be found at www.springerlink.comMicro scale population balance...
An analytical model for deep bed filtration of suspension in porous media and straining under siz...
The colloidal transport and deposition are phenomena involved in different engineering problems. In ...