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Prediction of flow velocity profiles of open-channels with submerged vegetation
Xiaonan Tang
Department of Civil Engineering
Research output
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Contribution to conference
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Paper
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peer-review
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Dive into the research topics of 'Prediction of flow velocity profiles of open-channels with submerged vegetation'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Prediction
100%
Vegetation
100%
Velocity Distribution
100%
Flow Velocity
100%
Model
66%
Data Set
66%
Height
50%
Depth
33%
Length
33%
Region
33%
Surface Layer
33%
Investigation
16%
Literature
16%
Assumption
16%
Show
16%
Volume
16%
Speed
16%
Area
16%
Momentum
16%
Slope
16%
Bed
16%
Vortex
16%
Examination
16%
Submergence
16%
Eddy Viscosity
16%
Engineering
Prediction
100%
Flow Rate
100%
Velocity Field
100%
Open Channel
100%
Models
80%
Dataset
80%
Length Scale
40%
Surface Layer
40%
Density
20%
Mixing Length
20%
Momentum Equation
20%
Linear Relationship
20%
Submergence
20%
Physics
Speed
100%
Flow Velocity
100%
Model
80%
Region
40%
Surface Layers
40%
Eddy
20%
Area
20%
Volume
20%
Momentum
20%
Eddy Viscosity
20%