A population balance model for a particulate suspension transport with size exclusion capture of particles by porous rock is derived. The model accounts for particle flux reduction and pore space accessibility due to restriction for large particles to move through smaller pores – a particle is captured by a smaller pore and passes through a larger pore. Analytical solutions are obtained for a uniform pore size medium, and also for a medium with small pore size variation. For both cases, the equations for averaged concentrations significantly differ from the classical deep bed filtration model.A. Santos, P. Bedrikovetsk
A new stochastic model for suspension/colloidal transport in porous media is developed accounting fo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
We develop a stochastic theory for filtration of suspensions in porous media. The theory takes into ...
A pore scale population balance model is formulated for deep bed filtration of stable particulate su...
The original publication can be found at www.springerlink.comA population balance model for particul...
An analytical model for deep bed filtration of suspension in porous media and straining under size e...
SPE paper no. 82230Injectivity decline during sea/produced water flooding is a wide spread phenomeno...
Abstract Particle transport in suspension flow with pore plugging and particle captur...
Suspension, colloidal, and emulsion flow in rocks with particle size-exclusion may have a strong eff...
© Springer The definitive version can be found at www.springerlink.comMicro scale population balance...
A pore scale population balance model is formulated for deep bed filtration of stable particulate su...
A new analytical model for deep bed filtration of colloidal/suspension transport under size exclusio...
Document ID: 152026-MSAbstract A new stochastic model for suspension/colloidal transp...
Colloidal-suspension flow in porous media is modelled simultaneously by the large scale population b...
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...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
We develop a stochastic theory for filtration of suspensions in porous media. The theory takes into ...
A pore scale population balance model is formulated for deep bed filtration of stable particulate su...
The original publication can be found at www.springerlink.comA population balance model for particul...
An analytical model for deep bed filtration of suspension in porous media and straining under size e...
SPE paper no. 82230Injectivity decline during sea/produced water flooding is a wide spread phenomeno...
Abstract Particle transport in suspension flow with pore plugging and particle captur...
Suspension, colloidal, and emulsion flow in rocks with particle size-exclusion may have a strong eff...
© Springer The definitive version can be found at www.springerlink.comMicro scale population balance...
A pore scale population balance model is formulated for deep bed filtration of stable particulate su...
A new analytical model for deep bed filtration of colloidal/suspension transport under size exclusio...
Document ID: 152026-MSAbstract A new stochastic model for suspension/colloidal transp...
Colloidal-suspension flow in porous media is modelled simultaneously by the large scale population b...
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...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
We develop a stochastic theory for filtration of suspensions in porous media. The theory takes into ...