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This book offers an interdisciplinary approach to define and solve coupled problems in hydrogeology. It gives many computation examples and case studies drawn from field investigations and features new solutions for analysis of contaminant transport processes.
The book addresses the development of the basic knowledge of the subsurface solute transfer with a particular emphasis on field data collection and analysis coupled with modeling (analytical and numerical) tool application. The relevant theoretical developments are concerned mainly with the formulation and solution of deterministic mass-transport equations for a wide range of engineering issues in groundwater quality assessment and forecasting.
The book gives many computational examples and case studies drawn from the conducted field investigations. The analyzed problems are as follows:
Thus, the book, along with theoretical findings, contains field information, which will facilitate the understanding of subsurface solute transport and the development of a methodology for practical applications to groundwater hydrology.
Interdisciplinary approach to define and solve coupled problems in hydrogeology Availability of unique field data showing spatial variability of parameters and behavior of contaminant plumes Development of new solutions for analysis of contaminant transport processes Broad range of analyzed types of ground water contamination sources and hydrogeological conditions Includes supplementary material: sn.pub/extras
Contenu
Preface. 1. Advection and dispersion in saturated porous and fractured media.- 2. Flow and solute transport in unsaturated porous media.- 3. One-dimensional solute transport models for regional flow systems under areal recharge condition. Hydrodynamic models for isotope data interpretation.- 4. Profile (two-dimensional in vertical cross-section) models for solute transport in regional flow systems.- 5. Models for assessment of interlayer mass transfer by diffusion and vertical convection in stratified systems.- 6. Mass-transport models for fractured-porous reservoirs.- 7. Simplified reservoir models for flow and solute balance in coupled surface-water/ groundwater systems.- 8. Models for well tracer test analysis and interpretation.- 9. Models for prediction of effects of pumping on ground water quality at well-fields.- 10. Dynamic equilibrium between two liquids of different density.- 11. Formation of movable interface between two liquids of different density.- 12. Brine migration studies by means of numerical modeling.- 13. Modeling investigations of ground water contamination by industrial and environmental brines.- 14. Fundamentals of adsorption interactions and overview of experimental data.- 15. Radionuclide ground water contamination study and adsorption parameters estimation at "Radon" radioactive waste disposal site, Sosnovyi Bor, Leningrad region, Russia.- 16. Complex approach to study of Cambrian and Vendian clay formations as media for isolation of the radioactive waste (North-West region of Russia).- 17. Experimental and model investigations of adsorption-desorption processes (in application to radionuclide migration at sites of their deep injection disposal and near-surface storage).- 18. Colloid systems and adsorption equilibrium in them.- 19. Investigation of radionuclide colloidal transport at radioactive waste disposal site of the Siberian Chemical Combine.- 20. Migration models of adsorption type.- 21. Migration of the radionuclides onto colloids in multi-component solutions.- Conclusions.- References.- Index <p