Age, Double Porosity, and Simple Reaction Modifications for the MOC3D Ground-water Transport Model
Author | : Daniel J. Goode |
Publisher | : |
Total Pages | : 44 |
Release | : 1999 |
Genre | : Groundwater flow |
ISBN | : |
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Author | : Daniel J. Goode |
Publisher | : |
Total Pages | : 44 |
Release | : 1999 |
Genre | : Groundwater flow |
ISBN | : |
Author | : U.S. Geological Survey Toxic Substances Hydrology Program. Technical Meeting |
Publisher | : |
Total Pages | : 868 |
Release | : 1999 |
Genre | : Water |
ISBN | : |
Author | : U.S. Geological Survey Toxic Substances Hydrology Program. Technical Meeting |
Publisher | : |
Total Pages | : 874 |
Release | : 1999 |
Genre | : Water |
ISBN | : |
Author | : David Keith Todd |
Publisher | : John Wiley & Sons |
Total Pages | : 663 |
Release | : 2004-08-06 |
Genre | : Technology & Engineering |
ISBN | : 0471059374 |
A thorough, up-to-date guide to groundwater science and technology Our understanding of the occurrence and movement of water under the Earth's surface is constantly advancing, with new models, improved drilling equipment, new research, and refined techniques for managing this vital resource. Responding to these tremendous changes, David Todd and new coauthor Larry Mays equip readers with a thorough and up-to-date grounding in the science and technology of groundwater hydrology. Groundwater Hydrology, Third Edition offers a unified presentation of the field, treating fundamental principles, methods, and problems as a whole. With this new edition, you'll be able to stay current with recent developments in groundwater hydrology, learn modern modeling methods, and apply what you've learned to realistic situations. Highlights of the Third Edition * New example problems and case studies, as well as problem sets at the end of each chapter. * A special focus on modern groundwater modeling methods, including a new chapter on modeling (Chapter 9), which describes the U. S. Geological Survey MODFLOW model. * Over 300 new figures and photos. * Both SI and U.S. customary units in the example problems. * Expanded coverage of groundwater contamination by chemicals. * New references at the end of each chapter, which provide sources for research and graduate study. Student and instructor resources for this text are available on the book's website at www.wiley.com/college/todd.
Author | : Geological Survey (U.S.) |
Publisher | : |
Total Pages | : 304 |
Release | : 2000 |
Genre | : Geology |
ISBN | : |
Author | : Jacob Bear |
Publisher | : Springer Science & Business Media |
Total Pages | : 851 |
Release | : 2010-01-18 |
Genre | : Science |
ISBN | : 1402066821 |
In many parts of the world, groundwater resources are under increasing threat from growing demands, wasteful use, and contamination. To face the challenge, good planning and management practices are needed. A key to the management of groundwater is the ability to model the movement of fluids and contaminants in the subsurface. The purpose of this book is to construct conceptual and mathematical models that can provide the information required for making decisions associated with the management of groundwater resources, and the remediation of contaminated aquifers. The basic approach of this book is to accurately describe the underlying physics of groundwater flow and solute transport in heterogeneous porous media, starting at the microscopic level, and to rigorously derive their mathematical representation at the macroscopic levels. The well-posed, macroscopic mathematical models are formulated for saturated, single phase flow, as well as for unsaturated and multiphase flow, and for the transport of single and multiple chemical species. Numerical models are presented and computer codes are reviewed, as tools for solving the models. The problem of seawater intrusion into coastal aquifers is examined and modeled. The issues of uncertainty in model input data and output are addressed. The book concludes with a chapter on the management of groundwater resources. Although one of the main objectives of this book is to construct mathematical models, the amount of mathematics required is kept minimal.