Published November 1996 | Version v1
Journal article

Efficient modeling of reactive transport phenomena by a multispecies random walk coupled to chemical equilibrium

Creators

  • 1. Paul Scherrer Inst., Villigen-PSI (Switzerland). Waste Management Lab.

Description

Safety assessments for radioactive waste repositories require a detailed knowledge of physical, chemical, hydrological, and geological processes for long time spans. In the past, individual models for hydraulics, transport, or geochemical processes were developed more or less separately to great sophistication for the individual processes. Such processes are especially important in the near field of a waste repository. Attempts have been made to couple at least two individual processes to get a more adequate description of geochemical systems. These models are called coupled codes; they couple predominantly a multicomponent transport model with a chemical reaction model. Here reactive transport is modeled by the sequentially coupled code MCOTAC that couples one-dimensional advective, dispersive, and diffusive transport with chemical equilibrium complexation and precipitation/dissolution reactions in a porous medium. Transport, described by a random walk of multispecies particles, and chemical equilibrium calculations are solved separately, coupled only by an exchange term. The modular-structured code was applied to incongruent dissolution of hydrated silicate gels, to movement of multiple solid front systems, and to an artificial, numerically difficult heterogeneous redox problem. These applications show promising features with respect to applicability to relevant problems and possibilities of extensions

Additional details

Publishing Information

Journal Title
Nuclear Technology
Journal Volume
116
Journal Issue
2
Journal Page Range
p. 208-221.
ISSN
0029-5450
CODEN
NUTYBB