Mesoscale variability in the Arabian Sea from HYCOM model results and observations: impact on the Persian Gulf Water path
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Published:2015-09-02
Issue:5
Volume:11
Page:667-693
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ISSN:1812-0792
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Container-title:Ocean Science
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language:en
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Short-container-title:Ocean Sci.
Author:
L'Hégaret P.,Duarte R.,Carton X.,Vic C.,Ciani D.,Baraille R.,Corréard S.
Abstract
Abstract. The Arabian Sea and Sea of Oman circulation and water masses, subject to monsoon forcing, reveal a strong seasonal variability and intense mesoscale features. We describe and analyze this variability and these features, using both meteorological data (from ECMWF reanalyses), in situ observations (from the ARGO float program and the GDEM – Generalized Digital Environmental mode – climatology), satellite altimetry (from AVISO) and a regional simulation with a primitive equation model (HYCOM – the Hybrid Coordinate Ocean Model). The model and observations display comparable variability, and the model is then used to analyze the three-dimensional structure of eddies and water masses with higher temporal and spatial resolutions than the available observations. The mesoscale features are highly seasonal, with the formation of coastal currents, destabilizing into eddies, or the radiation of Rossby waves from the Indian coast. The mesoscale eddies have a deep dynamical influence and strongly drive the water masses at depth. In particular, in the Sea of Oman, the Persian Gulf Water presents several offshore ejection sites and a complex recirculation, depending on the mesoscale eddies. The associated mechanisms range from coastal ejection via dipoles, alongshore pulses due to a cyclonic eddy, to the formation of lee eddies downstream of Ra's Al Hamra. This water mass is also captured inside the eddies via several mechanisms, keeping high thermohaline characteristics in the Arabian Sea. The variations of the outflow characteristics near the Strait of Hormuz are compared with variations downstream.
Publisher
Copernicus GmbH
Subject
Cell Biology,Developmental Biology,Embryology,Anatomy
Reference36 articles.
1. Bower, A. S., Hunt, H. D., and Price, J. F.: Character and dynamics of the red Sea and the Persian Gulf outflows, J. Geophys. Res.-Oceans, 105, 6387–6414, 2000. 2. Carnes, M. R.: Description and Evaluation of GDEM-V 3.0, Naval Research Lab Stennis Space Center Ms Oceanography Div, 2009. 3. Carton, X., L'Hegaret, P., and Baraille, R.: Mesoscale variability of water masses in the Arabian Sea as revealed by ARGO floats, Ocean Sci., 8, 227–248, https://doi.org/10.5194/os-8-227-2012, 2012. 4. Chassignet, E. P., Hurlburt, H. E., Smedstad, O. M., Halliwell, G. R., Hogan, P. J., Wallcraft, A. J., Baraille, R., and Bleck, R.: The HYCOM (HYbrid Coordinate Ocean Model) data assimilative system, J. Marine Syst., 65, 60–83, 2007. 5. Couder, Y. and Basdevant, C.: Experimental and numerical study of vortex couples in two-dimensional flows, J. Fluid Mech., 173, 225–251, 1986.
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