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1 March 2016 3-D Comprehensive Hydrodynamic Modelling in the Arabian Gulf
Zhong Peng, Jill Bradon
Author Affiliations +
Abstract

Peng, Z. and Bradon, J, 2016. A Comprehensive 3-D Hydrodyanmic Model in Arabian Gulf. In: Vila-Concejo, A.; Bruce, E.; Kennedy, D.M., and McCarroll, R.J. (eds.), Proceedings of the 14th International Coastal Symposium (Sydney, Australia). Journal of Coastal Research, Special Issue, No. 75, pp. 547–551. Coconut Creek (Florida), ISSN 0749-0208.

A 3-D comprehensive hydrodynamic model in the Arabian Gulf was developed by employing the latest bathymetry data, multiple vertical layers, calibrated atmospheric conditions and tidal forcing, HYbrid Coordinate Ocean Model reanalysis data, as well as the spatial- and temporal- varying climatological data, including cloudiness, relative humidity, air temperature and net solar radiation. This 3-D comprehensive hydrodynamic model in the Arabian Gulf was extensively calibrated and validated across the whole Arabian Gulf for water levels, currents, salinity and temperature. Model results are in good agreement with measurements and satellite data. This newly developed model is proven to be capable of accurately simulating hydrodynamics and the climatology over the whole Arabian Gulf.

Peng and Bradon: 3-D Comprehensive Hydrodynamic Modelling in the Arabian Gulf
©Coastal Education and Research Foundation, Inc. 2016
Zhong Peng and Jill Bradon "3-D Comprehensive Hydrodynamic Modelling in the Arabian Gulf," Journal of Coastal Research 75(sp1), 547-551, (1 March 2016). https://doi.org/10.2112/SI75-110.1
Received: 15 October 2015; Accepted: 15 January 2015; Published: 1 March 2016
KEYWORDS
current
Delft3D
Heat flux
hydrodynamics
modeling
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