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Climate change: a strategic opportunity for water managers? / Kathy Jacobs and Paul Fleming -- The delta : resolving California's water conundrum / Pat Mulroy -- The San Diego strategy : a sea change in western water / Maureen A. Stapleton -- The Colorado River story / Jim Lochhead and Pat Mulroy -- Why examine Nebraska's water governance framework? / Ann Bleed -- Harnessing hydrogeological analysis to improve groundwater management across the American West / Burke W. Griggs and James J. Butler Jr -- Southeast Florida : ground zero for sea level rise / Doug Yoder -- Finding the balance : developing resilient, sustainable water and wastewater systems in New York City / Alan Cohn, Angela Licata, and Emily Lloyd
As water becomes ever more important in a rapidly growing United States challenged by lessening firm-yield water reliability, the public needs to understand the myriads of quite different state-by-state water policies. States share surface water and groundwater sources that relate to each other conjunctively. Texans for example, should understand New Mexico water ownership and state policies because they share surface water and groundwater sources. Californians should understand Nevada’s water policies for the same reasons. Above all else, the people of the United States must realize that a water policy in one state can drastically impact water availability in neighboring states. Although the federal government has supra-legal authority over some state water policies and acts as the ultimate arbiter of interstate disputes, no one current book exists that explains the complicated relationships between state water policies with an analysis of federal water policies. Water Rights in the United States : A Guide through the Maze is a one-stop resource providing a state-by-state analysis of water ownership, regulatory agencies, and water polices. It explains the complicated relationships between state water policies and provides an analysis of federal water polices. How we manage these policies is of utmost importance to all Americans.
Data on water quality and other environmental issues are being collected at an ever-increasing rate. In the past, however, the techniques used by scientists to interpret this data have not progressed as quickly. This is a book of modern statistical methods for analysis of practical problems in water quality and water resources. The last fifteen years have seen major advances in the fields of exploratory data analysis (EDA) and robust statistical methods. The 'real-life' characteristics of environmental data tend to drive analysis towards the use of these methods. These advances are presented in a practical and relevant format. Alternate methods are compared, highlighting the strengths and weaknesses of each as applied to environmental data. Techniques for trend analysis and dealing with water below the detection limit are topics covered, which are of great interest to consultants in water-quality and hydrology, scientists in state, provincial and federal water resources, and geological survey agencies. The practising water resources scientist will find the worked examples using actual field data from case studies of environmental problems, of real value. Exercises at the end of each chapter enable the mechanics of the methodological process to be fully understood, with data sets included on diskette for easy use. The result is a book that is both up-to-date and immediately relevant to ongoing work in the environmental and water sciences.
This report is a technical analysis of the Water Resources Council prepared to determine the degree to which the water resources of the United States will be able to accommodate potential increases in energy production. The study considers the competition of energy-related water requirements with existing or anticipated future water uses for other purposes; accommodation of energy-related water requirements with other competing uses; the magnitude and extent of any water supply shortages, water quality, institutional and other water supply problems (environmental, capital investment, manpower, inter-basin transfer) that may restrict or prevent selected future condition energy development scenarios from being implemented; water-related Federal actions required to overcome problems and constraints of the nature described above; the requirements which need to be placed on hydroelectric power generation capability to assist in meeting the Nation's energy needs.
Across the United States, the practices for collecting water use data vary significantly from state to state and vary also from one water use category to another, in response to the laws regulating water use and interest in water use data as an input for water management. However, many rich bodies of water use data exist at the state level, and an outstanding opportunity exists for assembling and statistically analyzing these data at the national level. This would lead to better techniques for water use estimation and to a greater capacity to link water use with its impact on water resources. This report is a product of the Committee on Water Resources Research, which provides consensus advice to the Water Resources Division (WRD) of the USGS on scientific, research, and programmatic issues. The committee works under the auspices of the Water Science and Technology Board of the National Research Council (NRC). The committee considers a variety of topics that are important scientifically and programmatically to the USGS and the nation and issues reports when appropriate. This report concerns the National Water-Use Information Program (NWUIP).