A mathematical model is developed to simulate the transport and deposition of virus-sized colloids in a cylindrical pore throat considering various processes such as advection, diffusion, colloid-collector surface interactions and hydrodynamic wall effects. The pore space is divided into three different regions, namely, bulk, diffusion and potential regions, based on the dominant processes acting in each of these regions. In the bulk region, colloid transport is governed by advection and diffusion whereas in the diffusion region, colloid mobility due to diffusion is retarded by hydrodynamic wall effects. Colloid-collector interaction forces dominate the transport in the potential region where colloid deposition occurs. The governing equatio...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
Model is developed to simulate transport of colloids in a chemically heterogeneous porous media by c...
International audienceNatural porous media such as soils or aquifers, contain colloidal particles. D...
Transport and deposition of nanoparticles in porous media is a multi-scale problem governed by sever...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Natural porous media such as soils or aquifers, contain colloidal particles. Depending on geochemica...
Natural porous media such as soils or aquifers, contain colloidal particles. Depending on geochemica...
Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes ...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes ...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
A mathematical model is developed to simulate the transport and deposition of virus-sized colloids i...
Model is developed to simulate transport of colloids in a chemically heterogeneous porous media by c...
International audienceNatural porous media such as soils or aquifers, contain colloidal particles. D...
Transport and deposition of nanoparticles in porous media is a multi-scale problem governed by sever...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Natural porous media such as soils or aquifers, contain colloidal particles. Depending on geochemica...
Natural porous media such as soils or aquifers, contain colloidal particles. Depending on geochemica...
Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes ...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Nanoparticle deposition behavior observed at the Darcy scale represents an average of the processes ...
A mathematical model is developed to simulate the co-transport of viruses and colloids in unsaturate...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...