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1996, ISBN 9789810229092, xiv, 403
Book
Coastal Engineering, ISSN 0378-3839, 2006, Volume 53, Issue 7, pp. 573 - 588
Using shoreline water-level time series collected during 10 dynamically diverse field experiments, an empirical parameterization for extreme runup, defined by... 
Swash | Wave runup | Wave setup | Remote sensing | ENGINEERING, CIVIL | ENGINEERING, OCEAN | wave runup | wave setup | remote sensing | FIELD OBSERVATIONS | OSCILLATIONS | MOTIONS | swash | NATURAL BEACH | ENERGY SATURATION | Analysis | Topographical drawing
Journal Article
2008, ISBN 9812700129, xix, 322
Book
Journal of Geophysical Research: Oceans, ISSN 0148-0227, 07/2011, Volume 116, Issue C7, p. n/a
Video measurements of wave runup were collected during extreme storm conditions characterized by energetic long swells (peak period of 16.4 s and offshore... 
saturation | swash zone | dissipative beach | wave runup | nearshore | infragravity | SEDIMENT TRANSPORT | SWASH ZONE | FIELD | OCEANOGRAPHY | MOTIONS | SLOPING BEACH | NATURAL BEACH | SETUP | Physical oceanography
Journal Article
1981, Coastal engineering technical aid, Volume 81-17., 26
The results of several laboratory studies have been used to develop a method to estimate the wave runup and rundown on plane, smooth slopes cuased by irregular... 
wave runup | water waves
Book
1978, Coastal engineering technical aid, Volume 78-2., 35
Results of previous tests of monochromatic wave runup on smooth structure slopes were reanalyzed. Runup results for both breaking and nonbreaking waves are... 
breakwaters | coastal structures | wave runup | coastal engineering
Book
Geophysical Research Letters, ISSN 0094-8276, 06/2013, Volume 40, Issue 12, pp. 3138 - 3143
Journal Article
Ocean Engineering, ISSN 0029-8018, 01/2016, Volume 112, pp. 76 - 81
In recent years, soft computing schemes have received increasing attention for solving coastal engineering problems and knowledge extraction from the existing... 
Nearshore hydrodynamics | M5′ algorithm | Wave runup | Model tree | ENGINEERING, CIVIL | NEURAL-NETWORKS | ENGINEERING, MARINE | ENGINEERING, OCEAN | OCEANOGRAPHY | SMOOTH | M5 ' algorithm | SLOPES | Models | Algorithms | Permeability | Analysis | Trees | Similarity | Flux | Ocean engineering | Mathematical models | Soft computing | Decision trees
Journal Article
Coastal Engineering, ISSN 0378-3839, 01/2015, Volume 95, pp. 171 - 180
We present a high resolution analysis of the interaction of irregular waves with natural and urban structures leading to extreme wave runup. Horizontal runup... 
Coastal flooding | Small scale ocean wave process | Storm events | Wave runup | Coastal hazards | UNSTEADY | SWASH | MODEL | EROSION | ENGINEERING, CIVIL | ENGINEERING, OCEAN | SHELF | SOUTH | Analysis | Models | Optical radar | High resolution | Computer simulation | Methodology | Brazil | Mathematical models | Beaches | Flooding | Empirical analysis
Journal Article
1975, Miscellaneous paper (Coastal Engineering Research Center (U.S.)), Volume 12-75., 25
This study compares the runup caused by monochromatic and simple irregular waves on a smooth 1 on 10 slope. Wave runup was measured by use of a modified... 
waves | coastal structures | wave gauges | wave runup
Book
1988, Technical report CERC, Volume 88-5., 1 v.
This report describes methods to calculate the approximate upper limit of runup on riprap revetments caused by irregular wave action. A formula to predict the... 
prediction | riprap | wave runup | irregular waves
Book
1978, Technical paper (Coastal Engineering Research Center (U.S.)), Volume 78-2., 131
Published results of tests of monochromatic wave runup were reanalyzed for both smooth and rough structure surfaces. Wave runup theort is discussed briefly and... 
coastal structures | riprap | wave runup | coastal engineering
Book
Coastal Engineering, ISSN 0378-3839, 11/2016, Volume 117, pp. 176 - 190
Video derived runup statistics from ten separate deployments at six field sites have been used to develop a new parameterisation for the prediction of runup of... 
XBeach | XBeach-G | Barriers | Video | Parameterisation | Gravel | Beaches | Runup | STORM RESPONSE | SWASH | HYDRODYNAMICS | ADJUSTMENT | NATURAL BEACH | WAVE RUNUP | ENGINEERING, CIVIL | ENGINEERING, OCEAN | DYNAMICS | MORPHOLOGICAL CHANGE | Analysis | Marine sciences | Grain size | Parameters | Mathematical analysis | Mathematical models | Spectra | Statistics
Journal Article
Journal of Fluid Mechanics, ISSN 0022-1120, 8/2005, Volume 536, pp. 107 - 144
To study the waves and runup/rundown generated by a sliding mass, a numerical simulation model, based on the large-eddy-simulation (LES) approach, was... 
SUBMARINE SLIDE | WATER-WAVES | MECHANICS | LARGE-EDDY SIMULATION | LANDSLIDE | FLUID | PHYSICS, FLUIDS & PLASMAS | VOLUME | TSUNAMI | SLUMP | MODEL | EARTHQUAKE
Journal Article
1994, Research report, ISBN 0867765771, Volume no. CE148., 44
Book
Geophysical Research Letters, ISSN 0094-8276, 06/2012, Volume 39, Issue 11, p. n/a
Wave breaking across the surf zone elevates the mean water level at the shoreline (setup), and drives fluctuations about the mean (runup). Runup often is... 
erosion | coastal flooding | runup | GEOSCIENCES, MULTIDISCIPLINARY | NEARSHORE | SWASH | EQUATIONS | GENERATION | PROPAGATION | NATURAL BEACH | Physical oceanography | Parametrization | Peak frequency | Coastal | Incident waves | Spreads | Mathematical models | Flooding | Erosion
Journal Article
Physics of Fluids, ISSN 1070-6631, 01/2013, Volume 25, Issue 1, p. 12102
The present study is devoted to discrepancies between experimental and theoretical runup heights on an inclined plane, which have occasionally been reported in... 
BREAKING | SURF | MECHANICS | MOTION | SOLITARY WAVES | PHYSICS, FLUIDS & PLASMAS | STABILITY | SWASH | SIMULATION | FLOW | SLOPES | COHERENT STRUCTURES | Turbulence | Turbulent flow | Computational fluid dynamics | Computation | Fluid flow | Mathematical models | Beaches | Boundary layer
Journal Article
Coastal Engineering, ISSN 0378-3839, 2002, Volume 46, Issue 2, pp. 89 - 107
In this paper, a moving boundary technique is developed to investigate wave runup and rundown with depth-integrated equations. Highly nonlinear and weakly... 
Wave runup | Breaking waves | Boussinesq equations | BREAKING | ENGINEERING, CIVIL | ENGINEERING, OCEAN | SOLITARY WAVES | NONBREAKING | wave runup | FORM | breaking waves
Journal Article
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