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OpenGeoSys Tutorial - Computational Hydrology III: OGS#IPhreeqc Coupled Reactive Transport Modeling (Paperback, 1st ed. 2018):... OpenGeoSys Tutorial - Computational Hydrology III: OGS#IPhreeqc Coupled Reactive Transport Modeling (Paperback, 1st ed. 2018)
Eunseon Jang, Johannes Boog, Wenkui He, Thomas Kalbacher
R1,677 Discovery Miles 16 770 Ships in 18 - 22 working days

This tutorial provides the application of the coupling interface OGS#IPhreeqc (open-source scientific software) to model reactive mass transport processes in environmental subsurface systems. It contains general information regarding reactive transport modeling and step-by-step model set-up with OGS#IPhreeqc and related components such as GINA and ParaView. Benchmark examples (1D to 2D) are presented in detail. The book is intended primarily for graduate students and applied scientists who deal with reactive transport modeling. It also gives valuable information to the professional geoscientists wishing to advance their knowledge in numerical simulation, with the focus on the fate and transport of nitrate. It is the third volume in a series that represents the further application of computational modeling in hydrological science.

OpenGeoSys-Tutorial - Computational Hydrology I: Groundwater Flow Modeling (Paperback, 2015 ed.): Agnes Sachse, Karsten Rink,... OpenGeoSys-Tutorial - Computational Hydrology I: Groundwater Flow Modeling (Paperback, 2015 ed.)
Agnes Sachse, Karsten Rink, Wenkui He, Olaf Kolditz
R1,698 Discovery Miles 16 980 Ships in 18 - 22 working days

This tutorial on the application of the open-source software OpenGeoSys (OGS) in computational hydrology is based on a one-week training course at the Helmholtz Centre for Environmental Research in Leipzig, Germany. It provides general information regarding hydrological and groundwater flow modeling and the pre-processing and step-by-step model setups of a case study with OGS and related components such as the OGS Data Explorer. The tutorial also illustrates the application of pre- and post-processing tools such as ArcGIS and ParaView. This book is intended primarily for graduate students and applied scientists who deal with hydrological-system analysis and hydrological modeling. It is also a valuable source of information for practicing hydrologists wishing to further their understanding of the numerical modeling of coupled hydrological-hydrogeological systems. This tutorial is the first in a series that will present further OGS applications in environmental sciences.

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