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Water Wave Kinematics

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Cover of 'Water Wave Kinematics'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 Report from Working Group on Deep Water Wave Kinematics
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    Chapter 2 Report from Working Group on Shallow Water Wave Kinematics
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    Chapter 3 Report from the Working Group on Breaking and Freak Waves
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    Chapter 4 Report from the Working Group on Measurement of Wave Kinematics
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    Chapter 5 Report from the Working Group on Forces
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    Chapter 6 Stochastic Description of Offshore Environment
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    Chapter 7 Deep Water Wave Kinematics Models for Deterministic and Stochastic Analysis of Drag Dominated Structures
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    Chapter 8 Theory versus Measurement
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    Chapter 9 Effects of Water Wave Kinematics Uncertainty on Design Criteria for Offshore Structures
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    Chapter 10 Slow Modulation of Weakly Nonlinear Waves
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    Chapter 11 Near Surface Irregular Wave Kinematics
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    Chapter 12 Practical Wave Modelling
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    Chapter 13 Wave Theory Predictions of Crest Kinematics
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    Chapter 14 Revision to the UK DEn Guidance Notes
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    Chapter 15 Conditional Simulation of Ocean Wave Kinematics and Comparisons with Storm Field Measurements
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    Chapter 16 Some Aspects of the Kinematics of Short Waves Over Longer Gravity Waves on Deep Water
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    Chapter 17 Irregular Water Wave Kinematics
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    Chapter 18 Computational Modelling of Velocities and Accelerations in Steep Waves
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    Chapter 19 A Viscous Modification to the Oscillatory Motion Beneath a Series of Progressive Gravity Waves
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    Chapter 20 Application of Gaussian Wave Packets for Seakeeping Tests of Offshore Structures
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    Chapter 21 Determination of the Surface Elevation Probability Distribution of Wind Waves Using Maximum Entropy Principle
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    Chapter 22 Mathematical Modelling of Short Waves in Surf Zone
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    Chapter 23 Free and Forced Cross-Shore Long Waves
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    Chapter 24 Computation of Nonlinear Wave Kinematics During Propagation and Runup on a Slope
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    Chapter 25 Field Observations of Wave-Current Interaction at the Sea Bed
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    Chapter 26 Computation of Steep Waves on a Current with Strong Shear Near to the Surface
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    Chapter 27 Kinematics of Flow on Steep Slopes
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    Chapter 28 Measurement of the Velocity and Turbulent Fields Generated by the Swell in the Vicinity of Walls or Obstacles
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    Chapter 29 Breaking Waves
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    Chapter 30 Computations of Breaking Waves
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    Chapter 31 A Comparison of Time-Stepping Numerical Predictions with Whole-Field Flow Measurement in Breaking Waves
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    Chapter 32 Transformation Characteristics of Breaking Water Waves
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    Chapter 33 Turbulence Generation in a Bore
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    Chapter 34 Freak Wave Kinematics
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    Chapter 35 Microcomputer Capabilities — Numerical Simulation of a Breaking Wave
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    Chapter 36 Frequency Down-Shift Through Self Modulation and Breaking
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    Chapter 37 Extreme Waves in laboratory Generated Irregular Wave Trains
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    Chapter 38 Advances in Impulsively Generated Water Waves
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    Chapter 39 Freak Waves: a Possible Explanation
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    Chapter 40 Current-Wave Interactions Observed in the Labrador Sea Extreme Waves Experiment
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    Chapter 41 Discussion on Session 5: Breaking and Freak Waves
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    Chapter 42 Flow Visualization by Vibrating Camera
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    Chapter 43 Measurements of Wave Kinematics in the Wadic Project
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    Chapter 44 Measuring the Long Wave Kinematics in the Po-Waves Project
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    Chapter 45 Experimental Facility for Progressive Edge Waves
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    Chapter 46 Morison Type Nave Loading
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    Chapter 47 The Loading on a Vertical Cylinder in Random Waves at High Reynolds Numbers
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    Chapter 48 Laboratory Waves and Associated Forces
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    Chapter 49 A Laboratory Study of the Kinetics and Forcing due to Five Similar Large Waves
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    Chapter 50 Drag and Inertia Loads on Cylinders
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    Chapter 51 The Variation of The Wave Reducing Efficiency of Prismatic Fixed Surface Obstacles With Respect to Its Dimensions
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    Chapter 52 Discussion on Session 4: Forcing
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    Chapter 53 Water Wave kinetics: State of the Art and Future Research Needs
Overall attention for this book and its chapters
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Title
Water Wave Kinematics
Published by
Springer Netherlands, December 2012
DOI 10.1007/978-94-009-0531-3
ISBNs
978-9-40-106725-6, 978-9-40-090531-3
Editors

Tørum, A., Gudmestad, O. T.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 32 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United Kingdom 2 6%
Malaysia 1 3%
Unknown 29 91%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 9 28%
Researcher 6 19%
Student > Doctoral Student 2 6%
Professor 2 6%
Other 2 6%
Other 7 22%
Unknown 4 13%
Readers by discipline Count As %
Engineering 15 47%
Earth and Planetary Sciences 3 9%
Physics and Astronomy 2 6%
Energy 2 6%
Social Sciences 1 3%
Other 1 3%
Unknown 8 25%