Introduction to Tsallis entropy theory in water engineering
著者
書誌事項
Introduction to Tsallis entropy theory in water engineering
CRC Press, 2017, c2016
- : pbk.
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注記
Includes bibliographical references and index
"First issued in paperback 2017" -- T.p. verso
内容説明・目次
内容説明
Focuses On an Emerging Field in Water Engineering
A broad treatment of the Tsallis entropy theory presented from a water resources engineering point of view, Introduction to Tsallis Entropy Theory in Water Engineering fills a growing need for material on this theory and its relevant applications in the area of water engineering. This self-contained text includes several solved examples, and requires only a basic knowledge of mathematics and probability theory. Divided into four parts, the book begins with a detailed discussion of Tsallis entropy, moves on to hydraulics, expounds on the subject of hydrology, and ends with broad coverage on a wide variety of areas in water engineering.
The author addresses:
The Tsallis entropy theory for both discrete and continuous variables
The procedure for deriving probability distributions
One-dimensional velocity distributions
Two-dimensional velocity distributions
Methods for determining sediment concentration
Sediment discharge
Stage-discharge rating curve
Precipitation variability
Infiltration and the derivation of infiltration equations
An introduction to soil moisture, soil moisture profiles, and their estimation
Flow duration curves
The eco-index and indicators of hydrologic alteration (IHA)
Measures of redundancy for water distribution networks, and more
Introduction to Tsallis Entropy Theory in Water Engineering
examines the basic concepts of the Tsallis entropy theory, and considers its current applications and potential for future use. This book advances further research on water engineering, hydrologic sciences, environmental sciences, and water resources engineering as they relate to the Tsallis entropy theory.
目次
PRELIMINARIES. Introduction to Tsallis Entropy Theory. Probability Distributions. HYDRAULIC ENGINEERING. One-Dimensional Velocity Distributions. Two-Dimensional Velocity Distributions. Suspended Sediment Concentration. Suspended Sediment Discharge. Sediment Concentration in Debris Flow. Stage-Discharge Relation. HYDROLOGY. Precipitation Variability. Infiltration. Movement of Soil Moisture. Flow Duration Curve. WATER RESOURCES ENGINEERING. Eco-Index. Redundancy Measures for Water Distribution Networks.
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