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Coastal engineering / Dominic Reeve, Andrew Chadwick, and Christopher Fleming.

By: Contributor(s): Material type: TextTextPublisher: Boca Raton : Taylor & Francis, CRC Press, 2018Edition: Third editionDescription: xxx, 512 pagesContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9781138060425 (hardback)
  • 9781138060432 (pbk.)
Subject(s): DDC classification:
  • 627/.58 23
LOC classification:
  • TC 205  R44 2018
Contents:
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.
Summary: Coastal engineering and management for final year undergraduate and MSc students. With coverage of 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.
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Holdings
Item type Current library Shelving location Call number Status Date due Barcode
Book Book TUP Manila Library General Circulation Section-GF TC 205 R44 2018 (Browse shelf(Opens below)) Available P00033762

Includes bibliographical references and index.

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.

Coastal engineering and management for final year undergraduate and MSc students. With coverage of 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.

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