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The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

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The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography. Argus I. Argus II. Argus III. Pixel Instrument Coverage (early test example). shoreline. NCEX Tessellation Array. Resolution limited (5 m). tile. 1842 pixels. Tessellation Array Locations. - PowerPoint PPT Presentation
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he Role of Argus in the NCEX Field Experimen Rob Holman SECNAV/CNO Chair in Oceanography
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Page 1: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

The Role of Argus in the NCEX Field Experiment

Rob HolmanSECNAV/CNO Chair in Oceanography

Page 2: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Argus I

Page 3: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Argus II

Page 4: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Argus III

Page 5: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Pixel Instrument Coverage (early test example)

Page 6: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

shoreline

NCEX Tessellation Array

Resolution limited (5 m)

1842 pixels

tile

Page 7: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Tessellation Array Locations

Page 8: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Example Directional Spectra

Page 9: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Example Directional Spectra

Page 10: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Example Directional Spectra

Page 11: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Tessellation Arrays

• Produce wave directional “spectrum” at any location

• Extract simple statistics (peak direction?)

• Use same lag array for depth estimation

Page 12: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

NCEX Array, 09/03

Page 13: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

NCEX Array, 09/03 (blow-up)

Runup

“Old” Bathy Line

Vbar

Tess(alpha and bathy

Page 14: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Longshore Currents(Chris Chickadel)

Page 15: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Orientation for Next Slide

Page 16: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

10/31/03, 0700 Variance Image

Happy Halloween

Rip current

Page 17: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Radiation Stress Gradients

cx

Sxy αε sin><=

∂∂

where:

Sxy = Radiation Stress

<ε> = mean dissipation due to wave breaking

α = local incident wave angle

c = celerity

•Components in both the longshore and cross-shore directions

•Concentration on diagonal component Sxy

•Optical techniques necessary for all parameters to allow remote sensing

Work of Jason Killian

Page 18: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Fusion with Numerical Models

Based on:• Wave direction• Surf zone width

Page 19: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

California Fires, 10/28/03

Mid-afternoon view

Southern California

Page 20: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Estimation of Swash Velocities

Runup transect from NCEX exp’t, 2004

Page 21: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Two-minute Time Stack

NCEX stack, 2003

Page 22: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography
Page 23: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Band-pass Isolation of Foam

Page 24: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Consecutive Intensity Transects

Page 25: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Analysis

•Band-pass to isolate foam

•Hilbert transform to extract phase and wavenumber

•U = d(phase)/dt * 1/k

Page 26: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Example Sub-stack Results

Page 27: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Example Sub-stack

Page 28: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Example Sub-stack Overlay

Page 29: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Two-minute Sub-stack Example

17 minute run takes 9 seconds

Page 30: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Application of Hilbert Approach to Longshore Currents?(and rips?)

Longshore velocity = = 0.60 m/ secyt

Duck, NC

0

40

Tim

e (s

ec)

t =

18.

7 s

y =11.3 m

-20 20Longshore Distance (m)

Page 31: The Role of Argus in the NCEX Field Experiment Rob Holman SECNAV/CNO Chair in Oceanography

Questions?

Dr. AarninkhofDistinguished Argus Scientist

Costas Synolakis

Oregon State University Wave Tank, 2003


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