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In this study, a simplified tritium transport model was developed.
The contaminant transport model was coupled with the consolidation model.
A MCNP transport model was used to test some improvement hypotheses regarding collimation and scintillating crystal.
In order to investigate this phenomenon, a mathematical transport model was developed using FEMLAB.
Furthermore, a three-dimensional computational fluid dynamic transport model was also developed and validated.
Further, a 2D reactive transport model was developed and validated based on the experimental data.
The transient groundwater flow and solute-heat transport model was built using SEAWAT.
A reactive transport model was used for the delineation of the treated zone.
A biogeochemical reactive transport model was developed for uranium remediation by immobile-region-resident DMRB in two-region porous media.
Furthermore, a mass transport model was developed to accurately describe the kinetics of cell release results for each capsule.
A previously developed emulsion transport model was used to simulate emulsion transport and retention using independently estimated model parameters.
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