Title: Influence of wind and bottom topography
1Influence of wind and bottom topography on
surface dynamics off the coast of New Jersey
Josh T. Kohut Robert J. Chant Scott M. Glenn
Coastal Ocean Observation Lab Institute of Marine
and Coastal Sciences Rutgers University
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3Annual Mean
4Stratified Mixed
5Time Series of Wind and Surface Currents
Mixed
Stratified
More coherent
Less coherent
Wind Velocity
Surface Current
6Surface Velocity Structure
7Surface Velocity Structure
Velocity Representation
U(x,y,t) U (x,y)
U (x,y,t)
Measured Velocity Mean
Residual
(Detided and Filtered)
8Surface Velocity Structure
Stratified Water Column
Mean
Residual
Variance (cm/s)
- Flow across isobaths
- Alongshore windstress
- Major axes oriented alongshore
- Alongshore wind axis
9Surface Velocity Structure
Stratified Water Column
Alongshore to the North
Mean
Residual
Variance (cm/s)
- Major axes oriented alongshore
- Less energetic
10Surface Velocity Structure
Stratified Water Column
Alongshore to the South
Mean
Residual
Variance (cm/s)
- Major axes oriented alongshore
- Less energetic
11Surface Velocity Structure
Mixed Water Column
Mean
Residual
Variance (cm/s)
- Flow along isobaths
- Cross-shore windstress
- Major axes have cross-shore
- component
- Wind ellipse is circular
12Contribution of Wind Stress
Complex Correlation (Surface)
13Wind Stress Complex Correlation
Complex Correlation
Stratified
Mixed
2 m/s
2 m/s
0.0 0.1 0.2 0.3 0.4
0.5 0.6 0.7 0.8 0.9 1.0
Correlation
14Wind Stress Complex Correlation
Complex Correlation
Stratified Regime
Upwelling Favorable
Downwelling Favorable
5 m/s
5 m/s
18 20 22
24
0.0 0.1 0.2 0.3 0.4
0.5 0.6 0.7 0.8 0.9 1.0
Correlation
15Contribution of Wind Stress
Complex Correlation (Depth)
16Wind Stress Complex Correlation
Complex Correlation (Stratified)
Depth (m)
1.0
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19Wind Stress Complex Correlation
Complex Correlation (Mixed)
Depth (m)
1.0
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21Contribution of Wind Stress
Linear Wind Model
22Linear Wind Model
Wind Stress Linear Model
- Rotate wind vectors according to complex
correlation - Remove the mean
- Calculate the slope and intercept of best fit
line
Uwcor (x,y,t) slope(x,y)Uwind (t) U
(x,y,t) Uwcor (x,y,t)
U (x,y,t)
Observed Correlated
Uncorrelated
23Wind Stress Linear Model
Complex Correlation
Stratified Water Column
Mixed Water Column
2 m/s
2 m/s
0.0 0.1 0.2 0.3 0.4
0.5 0.6 0.7 0.8 0.9 1.0
Correlation
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26Wind Stress Linear Model
Stratified Regime
Measured Residual
Uncorrelated Residual
Variance (cm/s)
27Wind Stress Linear Model
Mixed Regime
Measured Residual
Uncorrelated Residual
Variance (cm/s)
28Contribution of Topography
29Topography
Topography
Principle Component
Along-isobath
minimize
Depth (m)
h depth L horizontal scale
30Topography
Uncorrelated Residual
Stratified
Mixed
-60 -40 -20 0
20 40 60
Angular Offset (degrees)
Negative angle Principle axis right of
topography
31Topography
Influence of Gradient Maximim
Angular Offset
Depth Gradient (m/km)
32Conclusions
- Annual mean flow is primarily along-isobath.
- Stratification
- strong mean currents and weak variability
primarily oriented - along-shore.
- surface currents are highly correlated with the
wind. - currents tend to be to the right of the wind at
the surface and - rotate the the left with depth.
- current fields uncorrelated with the wind are
generally weak - and not aligned with topography.
- Mixed
- strong variability with a cross-shore component.
- surface currents are less correlated with the
wind. - currents tend to be to the left of the wind at
the surface and - rotate slightly to the left with depth.
- surface current fields uncorrelated with the
wind resemble the - observed fields and tend to
follow topography in regions - were the gradient is maximum.
33Acknowledgements
Naval Postgraduate School
Jeff Paduan
Coastal Ocean Observation Lab (R.U. COOL)
Sage Lichtenwalner, Liz Creed, Mike Crowley,
Clinton Haldeman, Chhaya Mudgal, Kristie
Andresen, Louis Bowers
Codar Ocean Sensors
Brigantine, NJ Long Beach Township, NJ
National Park Service, United States Coast Guard
34Surface Velocity Structure
Mixed Water Column
Alongshore to the North
Mean
Residual
Variance (cm/s)
- Major axes oriented cross-shore
- component
- More energetic
35Surface Velocity Structure
Mixed Water Column
Alongshore to the South
Mean
Residual
Variance (cm/s)
- Major axes have cross-shore
- component
- More energetic over the bump
36Topography
Mixed Regime
Measured Residual
Uncorrelated Residual
-60 -40 -20 0
20 40 60
Angular Offset (degrees)
Negative angle Principle axis right of
topography