COI code: ICOPMAS09_075
Paper Language: English
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Authors VARIABILITY OF DIFFERENT WIND FORCINGS FOR HYDRODYNAMIC MODELS IN THE PERSIAN GULFScott Rowe - Engineer , GlobOcean Sarl
Hafedh Hajji - Doctor of Science , GlobOcean Sarl
Farhad Darabinia - Master of Science, Project Manager , Fara Darya Arsheh Consultants
Mohammad Reza Allahyar - Master of Science , Ports and Maritime Organization
Abstract:A multitude of wind forcings used for hydrographic modeling are available today for little or minimal cost and often a choice must be made as to which one is the most suitable for theapplication in question. Doing so can be a difficult task with a variety of validation methods and data sets often being available. Sometimes the reverse is true, and a lack of validation data and suitable methods introduces a large amount of incertitude into the decisions that need to bemade. Furthermore, it is well known that the reliability of hydrographic model results are only as good as the wind forcing used as input . Any inhomogeneity present in the wind forcing will possibly impart undesirable long and medium term biases on the output results, and this must be minimised wherever possible. Homogeneity also generally improves and simplifies the application of corrections.
Keywords:swell, ECMWF, WRF, NCEP, FNL, ERA40,, Oman Sea, Hormuz Strait, altimetry,QuikSCAT
COI code: ICOPMAS09_075
how to cite to this paper:If you want to refer to this article in your research, you can easily use the following in the resources and references section:
Rowe, Scott; Hafedh Hajji; Farhad Darabinia & Mohammad Reza Allahyar, 2012, VARIABILITY OF DIFFERENT WIND FORCINGS FOR HYDRODYNAMIC MODELS IN THE PERSIAN GULF, 09th International Conference on Coasts, Ports and Marine Structures, تهران, سازمان بنادر و دريانوردي, https://www.civilica.com/Paper-ICOPMAS09-ICOPMAS09_075.htmlInside the text, wherever referred to or an achievement of this article is mentioned, after mentioning the article, inside the parental, the following specifications are written.
First Time: (Rowe, Scott; Hafedh Hajji; Farhad Darabinia & Mohammad Reza Allahyar, 2012)
Second and more: (Rowe; Hajji; Darabinia & Allahyar, 2012)
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