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Hydrology and Hydroclimatology: Principles and Applications

Autor M. Karamouz, S. Nazif, M. Falahi
en Limba Engleză Hardback – 27 noi 2012
This book presents a systematic approach to understanding and applying the principles of hydrology and hydroclimatology, examining the interactions among different components of the water cycle. It takes a fresh look at the fundamentals and challenges in hydrologic and hydroclimatic systems as well as climate change. The author describes the application of nontraditional data sets and new investigation techniques to water-related problems. He also examines long lead forecasting and simulation, time series analysis, and risk and uncertainty in hydrologic design.
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Specificații

ISBN-13: 9781466512191
ISBN-10: 1466512199
Pagini: 740
Ilustrații: 322 b/w images, 234 tables and Approx. 900 to 925 equations
Dimensiuni: 178 x 254 x 40 mm
Greutate: 1.47 kg
Ediția:New.
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States

Public țintă

Water resource engineers in public and private sectors; environmental and meteorological organizations, such as NOAA and NASA; senior undergraduate and graduate students in applied hydrology.

Cuprins

Introduction. Hydroclimatic Systems. Hydrological Cycle. Watershed. Surface Water. Hydrogeology. Water Balance Models. Hydroclimate Processes. Climate Change and Models. Risk and Uncertainty in Hydrologic Design. Time Series Analysis and Modeling. Hydrologic Simulation. Droughts. Floods. Appendices.

Notă biografică

M. Karamouz, S. Nazif, M. Falahi

Descriere

This book presents a systematic approach to understanding and applying the principles of hydrology and hydroclimatology, examining the interactions among different components of the water cycle. It takes a fresh look at the fundamentals and challenges in hydrologic and hydroclimatic systems as well as climate change. The author describes the application of nontraditional data sets and new investigation techniques to water-related problems. He also examines long lead forecasting and simulation, time series analysis, and risk and uncertainty in hydrologic design.