We have developed a pore-scale numerical reactive transport model, based on smoothed particle hydrodynamics (SPH), that incorporates heterogeneous precipitation/dissolution reactions. Lagrangian particle methods such as SPH have several advantages for modeling pore-scale flow and transport: i) in a Lagrangian framework there is no non-linear term in the momentum conservation equation, so that SPH allows accurate solution of momentum dominated flows; ii) complicated physical and chemical processes associated with realistic equations of state, changes in solid boundaries due to dissolution or precipitation and chemical reactions are easy to simulate. The SPH model was used to study the general effects of porosity, pore scale heteroge...
The study of the kinetics of heterogeneous solid-fluid reactions, such as dissolution- precipitation...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
The scale-dependence of geochemical reaction rates hinders their use in continuum scale models inten...
There is large evidence that accurate numerical simulations of reactive transport in natural porous ...
Reactive transport is of great importance in chemical science, hydrogeological and environmental app...
Mineral precipitation affects the pore structure and thus transport properties of porous media. In t...
Reactive transport modeling has become an important tool to study and understand the transport and f...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous rea...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous reac...
[1] We apply the lattice-Boltzmann method to simulate fluid flow and dissolution and precipitation i...
Reactive transport in porous media is commonly encountered in chemical engineering (e.g. packed beds...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
Dissolution and precipitation processes control fundamental properties of porous media in the subsur...
Management of groundwater resources and remediation of groundwater pollution require reliable quanti...
The study of the kinetics of heterogeneous solid-fluid reactions, such as dissolution- precipitation...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
The scale-dependence of geochemical reaction rates hinders their use in continuum scale models inten...
There is large evidence that accurate numerical simulations of reactive transport in natural porous ...
Reactive transport is of great importance in chemical science, hydrogeological and environmental app...
Mineral precipitation affects the pore structure and thus transport properties of porous media. In t...
Reactive transport modeling has become an important tool to study and understand the transport and f...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous rea...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous reac...
[1] We apply the lattice-Boltzmann method to simulate fluid flow and dissolution and precipitation i...
Reactive transport in porous media is commonly encountered in chemical engineering (e.g. packed beds...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
Dissolution and precipitation processes control fundamental properties of porous media in the subsur...
Management of groundwater resources and remediation of groundwater pollution require reliable quanti...
The study of the kinetics of heterogeneous solid-fluid reactions, such as dissolution- precipitation...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...
In interface coupled dissolution-precipitation systems, the dynamics of the mineral-fluid interface ...