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Entropy and Energy Dissipation in Water Resources

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Cover of 'Entropy and Energy Dissipation in Water Resources'

Table of Contents

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    Book Overview
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    Chapter 1 Entropy Optimization Principles and Their Applications
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    Chapter 2 A Historical Perspective of Entropy Applications in Water Resources
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    Chapter 3 Force, Energy, Entropy, and Energy Dissipation Rate
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    Chapter 4 Versatile Uses of the Entropy Concept in Water Resources
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    Chapter 5 Limits in Space-Time Knowledge of Hydrological Data
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    Chapter 6 Random Walk Between Order and Disorder
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    Chapter 7 On What Can Be Explained by the Entropy of a Channel Network
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    Chapter 8 Transfer of Information in Monthly Rainfall Series of San Jose, California
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    Chapter 9 Application of Some Entropic Measures in Hydrologic Data Infilling Procedures
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    Chapter 10 An Investigation of the Feasibility Space of Parameter Estimation Using Pome and Ml With Reference to the Tcev Distribution
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    Chapter 11 Probabilistic Analysis of the Availability of a Hydrological Forecasting System (HFS)
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    Chapter 12 Assessing the Reliability of Water Distribution Networks Using Entropy Based Measures of Network Redundancy
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    Chapter 13 Optimising Water Distribution Network Design Using Entropy Surrogates for Network Reliability
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    Chapter 14 The Role of the Entropy Concept in Design and Evaluation of Water Quality Monitoring Networks
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    Chapter 15 Application Of The Entropy Concept In Design Of Water Quality Monitoring Networks
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    Chapter 16 Maximum Entropy Techniques in Inverse and Environmental Problems
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    Chapter 17 Applications Of Probability And Entropy Concepts In Open Channel Hydraulics
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    Chapter 18 A New Energy-Based Approach To Local Bridge Scour
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    Chapter 19 First and Second Law Analisys of a Hydro Storage with Respect to the Environmental Impact of an Energy System
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    Chapter 20 Maximum Entropy Principle And Energy Dissipation Through Permeable Breakwaters
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    Chapter 21 On What is Explained by the Form of a Channel Network
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    Chapter 22 Analysis of Spatial Variability of River Network Morphology, Flow and Potential Energy
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    Chapter 23 Flow Resistance Induced by Overland Flow Morphology
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    Chapter 24 The Priming and Duration of Droughts
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    Chapter 25 The Role of Energy Dissipation in Fluid Flows and River Mechanics
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    Chapter 26 Energy Loss in Dividing Flow
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    Chapter 27 Wave Type Flow at Abrupt Drop: Flow Geometry and Energy Loss
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    Chapter 28 Some Considerations on Velocity Profiles in Unsteady Pipe Flows
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    Chapter 29 Analysis of the Seepage Process in Clay Slopes Intercepted by Trench Drains
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    Chapter 30 Dynamic and Variational Approaches to the River Regime Relation
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    Chapter 31 Are Extremal Hypotheses Not Consistent with Regime Alluvial Channels?
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    Chapter 32 Statistical Quantities Distribution in Turbulent Flows and the Use of the Entropy Concept
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    Chapter 33 Vortex Ring — Moving Sphere Chaotic Interaction
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Title
Entropy and Energy Dissipation in Water Resources
Published by
Springer Netherlands, December 2012
DOI 10.1007/978-94-011-2430-0
ISBNs
978-9-40-105072-2, 978-9-40-112430-0
Editors

Singh, V. P., Fiorentino, M.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 9 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 9 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 6 67%
Unspecified 2 22%
Student > Doctoral Student 1 11%
Other 1 11%
Readers by discipline Count As %
Engineering 3 33%
Environmental Science 2 22%
Unspecified 2 22%
Mathematics 1 11%
Energy 1 11%
Other 1 11%