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Book Chapters

Browse more than 5,500 book chapters authored by our scientists over the past 100+ year history of the USGS and refine search by topic, location, year, and advanced search.

Filter Total Items: 6071

When worlds collide: challenges and opportunities for conservation of biodiversity in the Hawaiian Islands

This chapter identifies four key challenges and opportunities for long-term conservation of biodiversity in the Hawaii's Islands. Following are the challenges that need to be resolved for remaining species of native forest birds to survive into the next century: invasive species, landscape processes, social factors, and climate change. These challenges are also relevant to other threatened terrest
Authors
Carter T. Atkinson, Thane K. Pratt, Paul C. Banko, James D. Jacobi, Bethany L. Woodworth

Ecosystem services: developing sustainable management paradigms based on wetland functions and processes

In the late nineteenth century and twentieth century, there was considerable interest and activity to develop the United States for agricultural, mining, and many other purposes to improve the quality of human life standards and prosperity. Most of the work to support this development was focused along disciplinary lines with little attention focused on ecosystem service trade-offs or synergisms,
Authors
Ned H. Euliss, David M. Mushet, Loren M. Smith, William H. Conner, Virginia R. Burkett, Douglas A. Wilcox, Mark W. Hester, Haochi Zheng

Natural ecosystems

Natural Ecosystems analyzes the association of observed changes in climate with changes in the geographic distributions and phenology (the timing of blossoms or migrations of birds) for Southwestern ecosystems and their species, portraying ecosystem disturbances—such as wildfires and outbreaks of forest pathogens—and carbon storage and release, in relation to climate change.
Authors
Erica Fleishman, Jayne Belnap, Neil Cobb, Carolyn A.F. Enquist, Karl Ford, Glen MacDonald, Mike Pellant, Tania Schoennagel, Lara M. Schmit, Mark Schwartz, Suzanne van Drunick, Anthony LeRoy Westerling, Alisa Keyser, Ryan Lucas

Characterization and conceptualization of groundwater flow systems

This chapter discusses some of the fundamental concepts, data needs and approaches that aid in developing a general understanding of a groundwater system. Principles of the hydrological cycle are reviewed; the processes of recharge and discharge in aquifer systems; types of geological, hydrological and hydraulic data needed to describe the hydrogeological framework of an aquifer system; factors af
Authors
Niel Plummer, W. E. Sanford, P. D. Glynn

Defining groundwater age

This book investigates applications of selected chemical and isotopic substances that can be used to recognize and interpret age information pertaining to ‘old’ groundwater (defined as water that was recharged on a timescale from approximately 1000 to more than 1 000 000 a). However, as discussed below, only estimates of the ‘age’ of water extracted from wells can be inferred. These groundwater ag
Authors
T. Torgersen, R. Purtschert, F. M. Phillips, Niel Plummer, W. E. Sanford, A. Suckow

Numerical flow models and their calibration using tracer based ages

Any estimate of ‘age’ of a groundwater sample based on environmental tracers requires some form of geochemical model to interpret the tracer chemistry (chapter 3) and is, therefore, referred to in this chapter as a tracer model age. the tracer model age of a groundwater sample can be useful for obtaining information on the residence time and replenishment rate of an aquifer system, but that type o
Authors
W. Sanford

Radiocarbon dating in groundwater systems

The radioactive isotope of carbon, radiocarbon (14C), was first produced artificially in 1940 by Martin Kamen and Sam Ruben, who bombarded graphite in a cyclotron at the Radiation Laboratory at Berkeley, CA, in an attempt to produce a radioactive isotope of carbon that could be used as a tracer in biological systems (Kamen (1963) [101]; Ruben and Kamen (1941) [102]). Carbon-14 of cosmogenic origin
Authors
Niel Plummer, P. D. Glynn

Case study Middle Rio Grande Basin, New Mexico, USA

Chemical and isotopic patterns in groundwater can record characteristics of water sources, flow directions, and groundwater-age information. This hydrochemical information can be useful in refining conceptualization of groundwater flow, in calibration of numerical models of groundwater flow, and in estimation of paleo and modern recharge rates. This case study shows how chemical and isotopic dat
Authors
Niel Plummer, W. Sanford

Foreword

No abstract available.
Authors
Julio L. Betancourt

Global climate change impacts on coastal ecosystems in the Gulf of Mexico: Considerations for integrated coastal management

Global climate change is important in considerations of integrated coastal management in the Gulf of Mexico. This is true for a number of reasons. Climate in the Gulf spans the range from tropical to the lower part of the temperate zone. Thus, as climate warms, the tropical temperate interface, which is currently mostly offshore in the Gulf of Mexico, will increasingly move over the coastal zone o
Authors
John W. Day, Alejandro Yáñez-Arancibia, James H. Cowan, Richard H. Day, Robert R. Twilley, John R. Rybczyk

Integrated coastal management in the Mississippi Delta: System functioning as the basis of sustainable management

No abstract available
Authors
John W. Day, John Barras, G. Paul Kemp, Robert R. Lane, William J. Mitsch, P.H. Templet

Adaptive management of flows from dams: a win-win framework for water users

Alabama is blessed with more than 77,000 miles of rivers and streams that carve through the terrestrial landscape of the state. When you think about it, every road you drive on crosses a river and many of our major cities are located on the bank of a river. In fact, Alabama's capital cities - Cahawba (Dallas County; 1820-1826), Tuscaloosa (Tuscaloosa County; 1826-1846), and Montgomery County; 18
Authors
Elise R. Irwin