Fluvial Hydrosystems

Author:   G.E. Petts ,  C. Amoros
Publisher:   Springer
Edition:   Softcover reprint of the original 1st ed. 1996
ISBN:  

9789401071666


Pages:   322
Publication Date:   20 September 2011
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Fluvial Hydrosystems


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Overview

Fluvial Hydrosystems provides a unified approach to the study of running waters and aims to provide a scientific basis for sustainable management of rivers. It differs from traditional texts in viewing rivers as structured, four-dimensional systems and integrating ecological and geomorphological approaches to provide a holistic perspective on river dynamics. Advanced students of geomorphology, ecology, environmental science, land use and civil engineering will all benefit from this wide-ranging and stimulating textbook.

Full Product Details

Author:   G.E. Petts ,  C. Amoros
Publisher:   Springer
Imprint:   Springer
Edition:   Softcover reprint of the original 1st ed. 1996
Dimensions:   Width: 15.50cm , Height: 1.80cm , Length: 23.50cm
Weight:   0.517kg
ISBN:  

9789401071666


ISBN 10:   9401071667
Pages:   322
Publication Date:   20 September 2011
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

1 The fluvial hydrosystem.- 1.1 The background.- 1.2 Traditional approaches.- 1.3 The fluvial hydrosystem approach.- 2 A drainage basin perspective.- 2.1 The context.- 2.2 Source area characteristics.- 2.3 Large basins.- 2.4 Basin history.- 2.5 Biological responses.- 2.6 The fluvial hydrosystem approach.- 3 Hydrological and hydrochemical dynamics.- 3.1 Introduction.- 3.2 Headwater streams.- 3.3 Large rivers.- 3.4 Concluding remarks.- 4 Geomorphology of temperate rivers.- 4.1 Introduction.- 4.2 Fundamental principles.- 4.3 Channel adjustment.- 4.4 The longitudinal dimension.- 4.5 The vertical dimension.- 4.6 The transverse dimension.- 4.7 Valley fills and floodplain sedimentology.- 5 Hydrological and geomorphological structure of hydrostreams.- 5.1 Introduction.- 5.2 The main types of functional sector.- 5.3 Patchwork dynamics.- 6 Primary production and primary producers.- 6.1 Introduction.- 6.2 Adaptive strategies.- 6.3 Distribution and production.- 6.4 Conclusion.- 7 Aquatic invertebrates.- 7.1 Introduction.- 7.2 Longitudinal patterns: macroscale.- 7.3 Spatial variation within functional sectors: mesoscale.- 7.4 Spatial variation within each functional unit: microscale.- 7.5 Temporal dynamics.- 7.6 Conclusion.- 8 Fish populations in rivers.- 8.1 Introduction.- 8.2 The longitudinal zonation of watercourses.- 8.3 Use of floodplain biotopes by fish.- 8.4 The impacts of river management schemes.- 9 Interactions between units of the fluvial hydrosystem.- 9.1 Introduction.- 9.2 Nature and effect of exchanges and interactions.- 9.3 Topological effects.- 9.4 Connectivity and temporal variations.- 10 Ecological successions.- 10.1 Definitions and concepts.- 10.2 Modes and mechanisms.- 10.3 Stability and different spatial and temporal scales.- 11 Human impacts on fluvial hydrosystems.- 11.1 Catchment scale impacts.- 11.2 Direct impacts on river beds.- 11.3 The impact of dams on fluvial hydrosystems.- 11.4 Complex impacts on hydrosystems.- 12 Fluvial hydrosystems: a management perspective.- 12.1 Background.- 12.2 Rationale for river rehabilitation.- 12.3 The scientific basis.- 12.4 Options for managing fluvial hydrosystems.- 12.5 Catchment management.- 12.6 Conclusion.- References.

Reviews

`Students of environmental science, ecology, geomorphology and civil engineering will all benefit from this textbook.' Water Bulletin `After reading it, I pondered for a long time over what made it good and finally concluded that in this case it was the whole instead of the parts. The text is very well written, easy to read and comprehend, interesting in its presentation, practically void of mathematical equations, and contains an excellent reference listing of over 500 publications. in conclusion, I highly recommend this book for anyone working in the water resource field who esires a better understanding of large river systems. All of us can learn from this book, and it will become a valuable addition to one's library, used frequently, and will not sit gathering dust.' Journal of the American Water Resources Association, 34:3 (1998)


'Students of environmental science, ecology, geomorphology and civil engineering will all benefit from this textbook.' Water Bulletin 'After reading it, I pondered for a long time over what made it good and finally concluded that in this case it was the whole instead of the parts. The text is very well written, easy to read and comprehend, interesting in its presentation, practically void of mathematical equations, and contains an excellent reference listing of over 500 publications. in conclusion, I highly recommend this book for anyone working in the water resource field who esires a better understanding of large river systems. All of us can learn from this book, and it will become a valuable addition to one's library, used frequently, and will not sit gathering dust.' Journal of the American Water Resources Association, 34:3 (1998)


`Students of environmental science, ecology, geomorphology and civil engineering will all benefit from this textbook.' Water Bulletin `After reading it, I pondered for a long time over what made it good and finally concluded that in this case it was the whole instead of the parts. The text is very well written, easy to read and comprehend, interesting in its presentation, practically void of mathematical equations, and contains an excellent reference listing of over 500 publications. in conclusion, I highly recommend this book for anyone working in the water resource field who esires a better understanding of large river systems. All of us can learn from this book, and it will become a valuable addition to one's library, used frequently, and will not sit gathering dust.' Journal of the American Water Resources Association, 34:3 (1998)


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