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许可形式单机和网络版
原产地捷克
介质下载
适用平台windows
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The HYDRUS software has been developed by leading (award winning) scientists in the field of vadose zone hydrology (Rien Genuchten and Jirka Simunek). Note that both of them are Fellows of AGU (American Geophysical Union), AAAS (American Association for Advancement of Science, SSSA (Soil Science Society of America) and ASA (American Society of Agronomy), which are the highest awards given by these respective societies. Both these scientists are one of the most widely cited researchers in their field of science, having an h-index of 66 and 56 (in 2018), respectively, and tens of thousands of citations (both according to Web of Knowledge). Always at the cutting edge of the most recent developments in vadose zone hydrology.
The transport models also account for convection and dispersion in the liquid phase, as well as diffusion in the gas phase, thus permitting the model to simulate solute transport simultaneously in both the liquid and gaseous phases.
At present, HYDRUS considers up to fifteen solutes, which can either be coupled in a unidirectional chain or move independently of each other. Physical nonequilibrium solute transport can be accounted for by assuming a two-region, dual porosity type formulation, which partitions the liquid phase into mobile and immobile regions. Attachment/detachment theory, including the filtration theory, is included to simulate transport of viruses, colloids, and/or bacteria.
New Features:
The new ObsNodCh.out output file with EC and SAR at observation nodes of the UnsatChem
computational module.
Export to Paraview: new array “Geo_Numbers” added to “PointData”. This array contains
number of corresponding geometric nodes (or “0” if the mesh node does not have a
corresponding geometric node”)
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