The HPx software for multicomponent reactive transport during variably-saturated flow: Recent developments and applications

Author:

Jacques Diederik1,Šimůnek Jiří2,Mallants Dirk3,van Genuchten Martinus Th.45

Affiliation:

1. Engineered and Geosystems Analysis Unit, Belgian Nuclear Research Centre , 2400 Mol, Belgium .

2. Department of Environmental Sciences , University of California Riverside , Riverside , CA 92521 , USA .

3. CSIRO , Urrbrae , SA 5064 , Australia .

4. Center for Environmental Studies, CEA , São Paulo State University , Rio Claro , SP 13506-900 , Brazil .

5. Department of Nuclear Engineering , Federal University of Rio de Janeiro , Rio de Janeiro, RJ , 21945-970 , Brazil .

Abstract

Abstract HPx is a multicomponent reactive transport model which uses HYDRUS as the flow and transport solver and PHREEQC-3 as the biogeochemical solver. Some recent adaptations have significantly increased the flexibility of the software for different environmental and engineering applications. This paper gives an overview of the most significant changes of HPx, such as coupling transport properties to geochemical state variables, gas diffusion, and transport in two and three dimensions. OpenMP allows for parallel computing using shared memory. Enhancements for scripting may eventually simplify input definitions and create possibilities for defining templates for generic (sub)problems. We included a discussion of root solute uptake and colloid-affected solute transport to show that most or all of the comprehensive features of HYDRUS can be extended with geochemical information. Finally, an example is used to demonstrate how HPx, and similar reactive transport models, can be helpful in implementing different factors relevant for soil organic matter dynamics in soils. HPx offers a unique framework to couple spatial-temporal variations in water contents, temperatures, and water fluxes, with dissolved organic matter and CO2 transport, as well as bioturbation processes.

Publisher

Walter de Gruyter GmbH

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Water Science and Technology

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