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Wave Damping through Woody Vegetation
S.A. Kalloe
Coastal Engineering
Research output
:
Thesis
›
Dissertation (TU Delft)
20
Downloads (Pure)
Overview
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Dive into the research topics of 'Wave Damping through Woody Vegetation'. Together they form a unique fingerprint.
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Keyphrases
Dike
100%
Woody Plants
100%
Wave Damping
100%
Scaling Test
88%
Real-scale Test
77%
Riparian Forest
44%
Willow Tree
33%
Frontal Surface Area
33%
Flume Experiment
22%
Netherlands
22%
Real-scale
22%
Conical Shape
22%
Water Level
22%
Force Reduction
22%
Deflection
22%
Reynolds number
11%
Wave Height
11%
Trunk
11%
Wave-vegetation Interaction
11%
Vegetated Surface
11%
Numerical Model
11%
Manual Measurement
11%
Significant Wave Height
11%
Water Waves
11%
Assessment Methodology
11%
Reinforcement Measures
11%
Higher Order Mode
11%
Flood Risk
11%
Sway
11%
Scale Effect
11%
Key Design Parameters
11%
Wave Climate
11%
Bulk Drag Coefficient
11%
Wave Conditions
11%
Design Methodology
11%
Measuring Method
11%
Terrestrial Laser Scanning
11%
High Water Level
11%
Effective Length
11%
Willow
11%
Vegetation Model
11%
Probabilistic Study
11%
Viscous Damping
11%
Dimensionless Parameters
11%
Europe
11%
Seagrass
11%
Small-scale Test
11%
Tree Trunk
11%
Levee
11%
Riverbank
11%
Grass
11%
Innovation Sources
11%
Salt Marsh
11%
First Mode
11%
Damping Model
11%
Tree Model
11%
Attenuation Prediction
11%
Grassy Vegetation
11%
Branching Order
11%
Wave Impact
11%
Forest Canopy
11%
Wave Attenuation
11%
Overall Cost
11%
Surface Area Measurement
11%
Tree Allometry
11%
INIS
damping
100%
vegetation
100%
forests
100%
dikes
81%
design
45%
height
36%
willows
36%
flexibility
27%
levels
27%
mimic
27%
surface area
27%
comparative evaluations
27%
cones
27%
water
27%
distribution
18%
reduction
18%
erosion
18%
shape
18%
netherlands
18%
assessments
18%
data
18%
length
18%
prediction
9%
failures
9%
surfaces
9%
marshes
9%
lasers
9%
applications
9%
accounting
9%
risks
9%
salts
9%
meters
9%
grass
9%
calibration
9%
drag coefficient
9%
canopies
9%
attenuation
9%
variations
9%
measuring methods
9%
scaling
9%
interactions
9%
reliability
9%
monitoring
9%
europe
9%
foundations
9%
reynolds number
9%
guidelines
9%
investigations
9%
maintenance
9%
cost
9%
solutions
9%
probabilistic estimation
9%
experimental data
9%
validation
9%
climates
9%
Earth and Planetary Sciences
Wave Damping
100%
Vegetation
100%
Dyke (Water management)
81%
Investigation
72%
Forest
63%
Wave
36%
Riparian Forest
36%
Water Level
27%
Surface Area
27%
Flexibility
27%
Model
27%
Cone
27%
Order
18%
Evaluation
18%
Deflection
18%
Netherlands
18%
Erosion
18%
Need
18%
Deviation
9%
Impact
9%
Effectiveness
9%
Calibration
9%
Innovation
9%
Slope
9%
Coefficient
9%
Scale Effect
9%
Measuring Method
9%
Leaf
9%
Position (Location)
9%
Viscous Damping
9%
Salt Marsh
9%
Proving
9%
Analytical Method
9%
Prediction
9%
Numerical Model
9%
Risk
9%
Allometry
9%
Canopies
9%
Wave Climate
9%
Reliability
9%
Drag
9%
Utilization
9%
Europe
9%
Significant Wave Height
9%
Sea Grasses
9%
Variation
9%
Amount
9%
Input
9%
Terrestrial Laser Scanning
9%
Addition
9%
Wave Height
9%
Tapering
9%
Foundation
9%
Flood
9%
Accounting
9%
Water Wave
9%
Wave Attenuation
9%
Reynolds Number
9%
Research
9%
Grass
9%
Measuring Instrument
9%
Damping
9%
Engineering
Scale Test
100%
Design
57%
Frontal Surface
42%
Evaluation
28%
Water
28%
Deflection
28%
Model
28%
Erosion
28%
Application
14%
Wave Height
14%
Reynolds' Number
14%
Guidelines
14%
Model Tree
14%
Calibration
14%
Numerical Model
14%
Innovation
14%
Single Branch
14%
Large Effect
14%
Small Scale
14%
Riverbank
14%
Key Parameter
14%
Estimation
14%
Measures
14%
Branch Tree
14%
Drag Coefficient
14%
Scaling
14%
High Water
14%
Significant Decrease
14%
Great Detail
14%
Reliability
14%
Surface
14%
Failure (Mechanical)
14%
Design Parameter
14%
Measurement
14%
Integration
14%
Effective Length
14%
Illustrates
14%
Dimensionless Parameter
14%
Prediction
14%
Measured Force
14%
Levee
14%
Measuring Method
14%
Manual Measurement
14%
Scale Effect
14%
Significant Wave Height
14%
Highlight
14%
Foundation
14%
Leaf
14%
Research
14%
Prototype
14%
Agricultural and Biological Sciences
Tree
100%
Vegetation
100%
Forest
63%
Branches
45%
Design
45%
Height
36%
Riparian Forest
36%
Model
36%
Water
27%
Surface Area
27%
Shapes
27%
Uncertainty
27%
Length
18%
Measurement
18%
Guidelines
9%
Calibration
9%
Area
9%
Prediction
9%
Risk
9%
Prototype
9%
Methodology
9%
Salt Marsh
9%
Volume
9%
Seagrass
9%
Surface
9%
Reliability
9%
Analytical Method
9%
Allometry
9%
Leaf
9%
Estimation
9%
Knot
9%
Research
9%
Climate
9%
MS Contin
9%
Stem
9%
Grass
9%
Canopy
9%