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Hydrology Australian Introduction Ebook Readers



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Table of Contents

Introduction

General

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Fuzziness in Hydrology

Why Use Fuzzy Logic in Water Sciences?

References

Problems

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Linguistic Variables and Logic

General

Words

Linguistic Variables

Scientific Sentences

Fuzzy Scales

Fuzzy Logic Thinking Stages

Approximate Reasoning

References

Problems

Fuzzy Sets, Membership Functions, and Operations

General

Crisp and Fuzzy Sets in Hydrology

Formal Fuzzy Sets

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Membership Functions

Membership Function Allocation

Hedges (Adjectivized Words)

Logical Operations on Fuzzy Sets

References

Problems

Fuzzy Numbers and Arithmetics

General

Fuzzy Numbers

Fuzzy Addition

Fuzzy Subtraction

Fuzzy Multiplication

Fuzzy Division

Extremes of Fuzzy Numbers

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References

Problems

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General

Crisp to Fuzzy Relationships

Logical Relationships

Fuzzy Logic Relations

Fuzzy Compositions

Logical Categorization

Fuzzy Clustering Algorithms

References

Problems

Fuzzy Logical Rules

General

Fuzzification

“IF . . . THEN . . .” Rules

Fuzzy Proposition

Input Rule Base Establishment

Complete Rule Base

References

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FIS

General

Fuzzy Inference Systems (FIS)

Mamdani FIS

Defuzzification

Hydrology Australian Introduction Ebook Readers

Sugeno FIS

Tsukamoto FIS

S¸ en FIS

FIS Training

Triple Variable Fuzzy Systems

Adaptive-Network-Based FIS (ANFIS)

References

Problems

Fuzzy Modeling of Hydrological Cycle Elements

General

Simple Evaporation Modeling

Infiltration Rate Model

Rainfall Amount Prediction

Rainfall–Runoff Relationship

Rainfall–Groundwater Recharge

Fuzzy Aquifer Classification Chart

River Traffic Model

References

Fuzzy Water Resources Operation

General

Fuzzy Water Budget

Drinking Water Consumption Prediction

Fuzzy Volume Change in Reservoir Storage

Crisp and Fuzzy Dynamic Programming

Multiple Reservoir Operation Rule

Lake Level Estimation

Triple Diagrams Rule Base

Logical-Conceptual Models

References

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Description

Book

Estuarine Ecohydrology focuses on the principal components of an estuary. The book demonstrates how one can quantify an estuarine ecosystem's ability to cope with human stresses. The theories, models, and real-world solutions covered will serve as a toolkit for designing a management plan for the ecologically sustainable development of an estuary.

This book is organized into seven chapters dealing with topics such as estuarine water circulation; estuarine sediment dynamics; tidal wetlands; estuarine food webs; and ecohydrology models and solutions. Although each chapter contains rigorous specialist knowledge, it is presented in an accessible way that encourages multi-disciplinary collaboration between such fields as hydrology, ecology and mathematical modeling.

Dawn of the dragon cheats. Estuarine Ecohydrology is appropriate for use as a textbook and as a reference for researchers; advanced undergraduate and graduate students in marine biology, oceanography, coastal management, and coastal engineering; coastal developers; resources managers, shipping operators; and those involved in estuarine fisheries and sustainable development communities.

  • Appropriate for use as a textbook and as a reference
  • Focuses on the principal components of an estuary
  • Presents theories, models, and real-world solutions to serve as a toolkit for designing a management plan for the ecologically sustainable development of an estuary

Readership

Researchers and advanced undergraduate and graduate students in marine biology, oceanography, coastal management, and coastal engineering, as well as estuarine fisheries, coastal developers, resources managers, sustainable development communities, and shipping operators.

1. Introduction
1.1. What is an estuary?
1.2. Humanity and estuaries
1.2.1. Sedimentation from sediment eroded from cleared land in the hinterland
1.2.2. Overfishing and trawling
1.2.3. Destruction of wetlands
1.2.4. Eutrophication
1.2.5. Pollution
1.2.6. Dams.
1.2.7. Dykes for flood protection.
1.2.8. Human health risks.
1.3. The future of estuaries and the quality of life of the human population living on its shores
1.4. The solution
1.5. Ecohydrology science: the structure of this book.
2. Estuarine water circulation
2.1. The average residence time
2.2. The age of water
2.3. Exposure time vs. residence time
2.4. Vertical mixing and stratification
2.5. Lateral stratification, trapping, and shear
2.6. The importance of the bathymetry on flushing
2.7. The importance of flows near the river mouth on flushing
2.8 The special case of lagoons
3. Estuarine sediment dynamics
3.1. Geomorphological time scales
3.2. Sediment dynamics
3.2.1. The distinction between mud, silt and sand
3.2.2. Sand dynamics
3.2.3. Mud dynamics
3.2.4. Engineering implications
3.2.5. Biological implications
3.3. Net sediment budgets
3.3.1. The age of estuaries
3.3.2. Net erosion or progradation
3.3.3. Formation of mud flats
3.3.4. Formation of tidal wetlands by the vegetation colonizing bare intertidal areas
3.4. The size of the mouth
4. Tidal wetlands
4.1. Description
4.2. Hydrodynamics
4.3. Wave attenuation by wetland vegetation
4.4. Ecological processes within a tidal wetland
4.4.1. Mangroves
4.4.2. Saltmarshes
4.4.3. Supratidal mud flats
4.5. Enhancement of estuarine fisheries productivity by ouwelling from tidal wetlands
4.6. Groundwater
4.6.1. Mangroves
4.6.2. Saltmarshes
4.7. Physics-biology links
5. Estuarine food webs
5.1. Simple food webs in clear waters
5.1.1. Definitions
5.1.2. Clear waters
5.2. The key role of detritus
5.3. The role of groundwater
5.4. Link to pelagic food web (fisheries)
5.5. Estuarine ecology
5.6. Over-stressed ecosystems
5.7. Seagrass and coral reefs
6. Ecohydrology models
6.1. Engineering models
6.2. Ecosystem models
6.2.1. Predator-prey relationship
6.2.2. Estuarine ecosystem models
6.2.3. An estuarine ecohydrology model
6.3. Coral reef ecohydrology model
7. Ecohydrology solutions
7.1. Freshwater
7.2. Estuaries
7.3. Coastal waters
7.4. Managing human health threats
7.5. Habitat creation
7.5.1. Saltmarshes
7.5.2. Mangroves
7.5.3. Seagrass
7.5.4. Coral reefs
7.5.5. Sediment capping
7.6. Protection against natural hazards
7.7. A future for estuaries and coastal waters?
8. References
9. Index

Details

No. of pages:
168
Language:
English
Copyright:
© Elsevier Science 2007
Published:
1st August 2007
Imprint:
Elsevier Science
Hardcover ISBN:
9780444530660
eBook ISBN:
9780080550350

Eric Wolanski

Professor Eric Wolanski is an estuarine oceanographer at James Cook University and the Australian Institute of Marine Science. His research interests range from the oceanography of coral reefs, mangroves, and muddy estuaries, to the interaction between physical and biological processes determining ecosystem health in tropical waters. He has 370 publications and reports. Eric is a fellow of the Australian Academy of Technological Sciences and Engineering, the Institution of Engineers Australia (ret.), and l’Acade´mie Royale des Sciences d’Outre-Mer. He was awarded an Australian Centenary medal, a Doctorate Honoris Causa by the Catholic University of Louvain and a Lifetime Achievement Award by the Estuarine & Coastal Sciences Association. Eric is an editor-in-chief of Estuarine, Coastal and Shelf Science, Wetlands Ecology and Management, and the Treatise on Estuarine and Coastal Science.

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Eric is a member of the editorial board of Journal of Coastal Research, Journal of Marine Systems, Ecohydrology and Hydrobiology, and Continental Shelf Research. He is a member of the Scientific and Policy Committee of the Japan-based International Center for Environmental Management of Enclosed Coastal Seas, a Visiting Professor at the Chinese Academy of Sciences, and a member of the College of Experts of the Australian Research Council.

James Cook University & Australian Institute of Marine Science, Townsville, Queensland, Australia

Eric Wolanski

Professor Eric Wolanski is an estuarine oceanographer at James Cook University and the Australian Institute of Marine Science. His research interests range from the oceanography of coral reefs, mangroves, and muddy estuaries, to the interaction between physical and biological processes determining ecosystem health in tropical waters. He has 370 publications and reports. Eric is a fellow of the Australian Academy of Technological Sciences and Engineering, the Institution of Engineers Australia (ret.), and l’Acade´mie Royale des Sciences d’Outre-Mer. He was awarded an Australian Centenary medal, a Doctorate Honoris Causa by the Catholic University of Louvain and a Lifetime Achievement Award by the Estuarine & Coastal Sciences Association. Eric is an editor-in-chief of Estuarine, Coastal and Shelf Science, Wetlands Ecology and Management, and the Treatise on Estuarine and Coastal Science.

Eric is a member of the editorial board of Journal of Coastal Research, Journal of Marine Systems, Ecohydrology and Hydrobiology, and Continental Shelf Research. He is a member of the Scientific and Policy Committee of the Japan-based International Center for Environmental Management of Enclosed Coastal Seas, a Visiting Professor at the Chinese Academy of Sciences, and a member of the College of Experts of the Australian Research Council.

Autodesk viewer download for mac. James Cook University & Australian Institute of Marine Science, Townsville, Queensland, Australia

Reviews

'.a brilliant synthesis of the state of the art in estuarine ecohydrology . it opens the perspective for new solutions toward achieving restoration and sustainable development of habitats most intensively used by humanity.'
--Maciej Zalewski, Director, UNESCO's European Regional Centre for Ecohydrology
'Wolanski brings vast experience in estuarine and coastal seas research in Oceania and its neighboring regions. The book makes a most valuable contribution to our international activities for coastal seas environments.'
--Masahiko Inatsugi, Adviser on External Relations, International Center for the Environmental Management of Enclosed Coastal Seas
'This book provides a deep understanding of the dynamical processes through an ecohydrological approach acting on estuaries.'
--Dr. Gerardo M. E. Perillo, Co-Chair SCOR-LOICZ Working Group 122
'LOICZ, at the beginning of its second decade with the mandate to look at coastal change in a truly interdisciplinary fashion strongly endorses the work reflected in 'Estuarine Ecohydrology'. The author provides a substantial contribution to the LOICZ objective, to: provide the knowledge, understanding and prediction needed to allow coastal communities to assess, anticipate and respond to the interaction of global change and local pressure which determine coastal change. It is particularly valuable because its perspectives are truly global in nature, encompassing different views from the developed world as well as from developing economies.'
--Dr. Hartwig Kremer, CEO LOICZ IPO.
'This book is particularly timely and highly relevant to the needs of many coastal nations. The author clearly achieves his aim to 'provide clear, specialist knowledge to enable an interaction between aquatic, marine and wetlands biologists, geologists, geomorphologists, chemists, modellers and ecologists'. It is really an interesting book on a very relevant topic.'
--Joe Baker, FTSE

'Indeed, Eric Wolanski has brought together a disparate set of disciplines in a way that makes remarkable good sense: ecohydrology. . . His book will remain close by on my desk!' -Brian R. Allanson, Rhodes University, South Africa in Journal of Coastal Research

Estuarine Ecohydrology focuses on the principal components of an estuary. The book demonstrates how one can quantify an estuarine ecosystem's ability to cope with human stresses. The theories, models, and real-world solutions covered will serve as a toolkit for designing a management plan for the ecologically sustainable development of an estuary.

This book is organized into seven chapters dealing with topics such as estuarine water circulation; estuarine sediment dynamics; tidal wetlands; estuarine food webs; and ecohydrology models and solutions. Although each chapter contains rigorous specialist knowledge, it is presented in an accessible way that encourages multi-disciplinary collaboration between such fields as hydrology, ecology and mathematical modeling.

Estuarine Ecohydrology is appropriate for use as a textbook and as a reference for researchers; advanced undergraduate and graduate students in marine biology, oceanography, coastal management, and coastal engineering; coastal developers; resources managers, shipping operators; and those involved in estuarine fisheries and sustainable development communities.

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