Fr. 266.00

Coastal Engineering - Processes, Theory and Design Practice

English · Hardback

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Zusatztext "I found the book a useful instructional tool that covered the most relevant concepts that coastal engineering students at undergraduate and graduate level must learn. The book is well laid out and provides enough example work-throughs and case studies for students to test the knowledge and see the work in practice." -- Kristen Splinter! University of New South Wales! Australia"Overall! the book covers the most important material for coastal engineering at both undergraduate and postgraduate level." -- Dong-Sheng Jeng! Griffith University! Australia"? a comprehensive work! well-explained and at the same time advanced. It is a good book for both scholars and practitioners."-- Genserik Reniers! Delft University of Technology! Netherlands Informationen zum Autor Dominic Reeve is Professor in the College of Engineering at the University of Swansea, UK and a Chartered Mathematician. Andrew Chadwick is former Professor of Coastal Engineering at the University of the West Indies and Honorary Professor at Plymouth, UK. Chris Fleming is a former Group Director of Halcrow, UK. Klappentext For year 4 undergraduate and MSc students. Covers conceptual and detailed design; wave overtopping; calculation of extreme wave conditions; structural reliability and probabilistic design; tidal analysis and calculation of amplitudes and phases of harmonic constituents from water level time series; harmonic analysis; and climate change. Zusammenfassung For year 4 undergraduate and MSc students. Covers conceptual and detailed design; wave overtopping; calculation of extreme wave conditions; structural reliability and probabilistic design; tidal analysis and calculation of amplitudes and phases of harmonic constituents from water level time series; harmonic analysis; and climate change. Inhaltsverzeichnis Introduction. Wave theory. Design wave specification. Coastal water level variations. Coastal transport processes. Coastal morphology: analysis, modelling and prediction. Design, reliability and risk. Field measurements and physical models. Conceptual and detailed design. Appendices: Summary of statistical concepts and terminology; Maximum likelihood estimation; Harmonic analysis results; Normal distribution tables. ...

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