2013).Įxamples demonstrating the use of the new root water and solute uptake term (which includes both compensated and uncompensated root water and solute uptake, and both passive and active root solute uptake (Šimůnek and Hopmans, 2009)Īn example demonstrating a comparison of calculations carried out using either CXTFIT or HYDRUS programs. For more details see the article published in the VZJ Special Issue on Vadose Zone Modeling (2MB)Įxamples demonstrating application of HYDRUS-1D to evaluate transport or two strains of bacteria in porous media (Gargiulo et al., 2007, 2008)Įxamples demonstrating the use of HYDRUS-1D to simulate transport and retention of functionalized multi-walled carbon nanotubes in saturated quartz sand (from Kasel et al. CSIRO HYDRUS-1D Tutorial Book (Rassam et al., 2018)Ĭlick on a Project Group name to get list of projects in the group and other details: GroupĮxamples demonstrating atmospheric boundary conditions with surface ponding or surface runoffĮxamples demonstrating the use of HYDRUS-1D to simulate infiltration from ponding and rainfall and issues associated with this process.Įxamples demonstrating new options for atmospheric boundary conditionsĮxamples from Šimůnek and van Genuchten (2008) with emphasis on nonequilbrium solute transport.Examples from the Book Exercises in Soil Physics (Lazarovitch & Warrick, Catena).Non-standard HYDRUS-1D Modules (e.g., Centrif).Non-standard HYDRUS-1D Modules, standard in Version 5 of HYDRUS (e.g., C-Ride).Standard HYDRUS-1D Modules (e.g., HP1, UnsatChem, DualPerm).Public Library of the Hydrus-1D Projects.
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