11th Conference on Interaction of the Sea and Atmosphere

7.3

Ocean currents evident in satellite wind data

Kathryn A. Kelly, University of Washington, Seattle, WA; and S. Dickinson, M. J. McPhaden, and G. C. Johnson

Satellite-mounted radar scatterometers designed by NASA to quantify surface winds over the ocean actually measure the relative motion between the air and the ocean surface. Estimates of the wind stress from conventional surface wind measurements are usually derived neglecting ocean currents. However, when the relative motion is used, the differences in the estimated stress can be as large as 50% near the equator and may even reverse sign during an El Nino. This assertion is supported by the strong relationship between the surface currents measured by the Tropical Atmosphere-Ocean (TAO) array in the Pacific Ocean and the differences between the winds estimated from scatterometer data and those measured by TAO anemometers. The fact that the scatterometer measures relative motion, and not wind alone, makes scatterometer-derived stress a more accurate representation of the boundary condition needed for both atmospheric and oceanic models than stress fields derived neglecting ocean currents.

extended abstract  Extended Abstract (2.4M)

Session 7, Air-Sea Interaction Studies Using Satellite Observations
Tuesday, 15 May 2001, 9:00 AM-3:15 PM

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