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2 A Global Comparison of Ekman Pumping From Satellite Scatterometers and
3 Ocean Data Assimilation Estimates
4
5 Paulo Polito^1, Tong Lee^2, and Ichiro Fukumori^2
6 1. Inst. Nac. de Pesquisas Espaciais, Sao Paulo, Brazil
7 2. Jet Propulsion Laboratory, California Institute of Technology
8
9 Ekman pumping, a form of wind-driven upwelling, plays important
10 roles in upper-ocean dynamics, thermodynamics, and biology as well as
11 in boundary-layer meteorology. Inverse models, such as those of
12 ECCO (Estimation of the Circulation and Climate of the Ocean,
13 http://www.ecco-group.org/), estimate wind forcing through
14 ocean data assimilation. Scatterometer data provide a stringent test
15 of the skill of the assimilation in estimating wind. Ekman pumping
16 obtained from various scaterometers are compared with those
17 derived from ECCO model which assimilate TOPEX-derived sea level
18 anomalies using the adjoint and Kalman filter/smoother methods.
19 Differences in Ekman pumping between scatterometer and assimilation
20 estimates are quantified in terms of the mean, standard deviation, and
21 correlation. Change in Ekman pumping due to the assimilation is
22 analyzed to identify the spectral (frequency-wavelength) space over
23 which the assimilation has significant impact. The comparison also
24 highlights aspects where the ECCO model and assimilation schemes need
25 improvement.
26

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