More Water for Arid Lands

More Water for Arid Lands

Author: National Academy of Sciences

Publisher: The Minerva Group, Inc.

Published: 2001-08

Total Pages: 166

ISBN-13: 0898755298

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Water supply: rainwater harvesting, runoff agriculture, irrigation with saline water, reuse of water, wells, other sources of water; Water conservation: Reducing evaporation from water surfaces, reducing seepage losses, reducing evaporation from soil surfaces, trickle irrigation, other innovative irrigation methods, reducing cropland percolation losses, reducing transpiration, selecting and managing crops to use water more efficiently, controlled-environment agriculture; other promising water-conservation technoiques.


Agricultural Utilization of Sewage Effluent and Sludge; an Annotated Bibliography

Agricultural Utilization of Sewage Effluent and Sludge; an Annotated Bibliography

Author: James P. Law

Publisher:

Published: 1968

Total Pages: 104

ISBN-13:

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The effluent and sewage sludge from municipal and industrial treatment plants is a source of water and nutrients for agricultural uses. Considering its potential, only a few instances of agricultural uses of waste water in crop production have been recorded. Most of the literature on this subject is by scientists in the sewage disposal field. This report brings together about 300 annotated references on the agricultural uses of sewage effluents and sludge. Such uses aid crop production, but also make use of water that would have been wasted, decrease the pollutant load on the receiving streams, and preserve the normal stream flow for downstream uses.


Modeling Groundwater Flow and Contaminant Transport

Modeling Groundwater Flow and Contaminant Transport

Author: Jacob Bear

Publisher: Springer Science & Business Media

Published: 2010-01-18

Total Pages: 851

ISBN-13: 1402066821

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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.