Coastal Engineering (eBook)

Processes, Theory and Design Practice
Artikelnummer: 978-1-351-16551-8
Einband: PDF
Verfügbarkeit: Download, sofort verfügbar (Link per E-Mail)
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Effective coastal engineering is expensive, but it is not as costly as neglect or ineffective intervention. Good practice needs to be based on sound principles, but theoretical work and modelling also need to be well grounded in practice, which is continuously evolving. Conceptual and detailed design has been advanced by new industry publications since the publication of the second edition.

This third edition provides a number of updates: the sections on wave overtopping have been updated to reflect changes brought in with the recently issued EurOtop II manual; a detailed worked example is given of the calculation of extreme wave conditions for design; additional examples have been included on the reliability of structures and probabilistic design; the method for tidal analysis and calculation of amplitudes and phases of harmonic constituents from water level time series has been introduced in a new appendix together with a worked example of harmonic analysis; and a real-life example is included of a design adapting to climate change.

This book is especially useful as an information source for undergraduates and engineering MSc students specializing in coastal engineering and management. Readers require a good grounding in basic fluid mechanics or engineering hydraulics, and some familiarity with elementary statistical concepts.

Effective coastal engineering is expensive, but it is not as costly as neglect or ineffective intervention. Good practice needs to be based on sound principles, but theoretical work and modelling also need to be well grounded in practice, which is continuously evolving. Conceptual and detailed design has been advanced by new industry publications since the publication of the second edition.

This third edition provides a number of updates: the sections on wave overtopping have been updated to reflect changes brought in with the recently issued EurOtop II manual; a detailed worked example is given of the calculation of extreme wave conditions for design; additional examples have been included on the reliability of structures and probabilistic design; the method for tidal analysis and calculation of amplitudes and phases of harmonic constituents from water level time series has been introduced in a new appendix together with a worked example of harmonic analysis; and a real-life example is included of a design adapting to climate change.

This book is especially useful as an information source for undergraduates and engineering MSc students specializing in coastal engineering and management. Readers require a good grounding in basic fluid mechanics or engineering hydraulics, and some familiarity with elementary statistical concepts.

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VerlagTaylor & Francis Ebooks
EinbandPDF
Erscheinungsjahr2018
Seitenangabe542 S.
AusgabekennzeichenEnglisch
Abbildungen234 schwarz-weiße Abbildungen, 49 schwarz-weiße Fotos, 185 schwarz-weiße Zeichnungen, 81 schwarz-weiße Tabellen
Masse21'820 KB
Auflage18003 A. 3. Auflage
PlattformPDF
AutorReeve, Dominic / Chadwick, Andrew / Fleming, Christopher

Über den Autor Dominic Reeve

Dominic Reeve is a Professor of Coastal Engineering, at Swansea University, UK. He is the author of Risk & Reliability: Coastal and Hydraulic Engineering, and co au-thor of Coastal Engineering: Processes, Theory and Design Practice, and of Hydraulic Modelling - An Introduction: Principles, Methods and Applications also published by CRC Press.Harshinie Karunarathna is a Professor of Coastal and Estuarine Engineering at Swansea University, UK.Antonios Valsamidis is a Visiting Research Fellow at Swansea University, UK and MD of Aktomechanics, Thessaloniki, Greece.Andrew Whitley is a Professor of Physics at San Jacinto College, Texas, United States.Hans Hanson is a Professor of Coastal Engineering at Lund University, Sweden and a key contributor to the GenCade model developed by the US Army Corps of Engineers.Magnus Larson is a Professor of Water Resources Engineering at Lund University, Sweden.Ben Williams is a a researcher at the Oceans Institute in the University of Western Australia.

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