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Information Journal Paper

Title

SIMULATION OF 3D CURRENT PATTERN, SEA SURFACE TEMPERATURE AND SALINITYDISTRIBUTION IN THE SOUTH OF CASPIAN SEA

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Abstract

 In this study, patterns of water CURRENT, sea surface temperature and salinitydistributions over the South CASPIAN SEA (SCS) have been investigated using ROMSmodel. Appling the most accurate bathymetry data and forces with temporal resolutionof 3-6 hours, and spatial resolution of 0.125 deg is a characteristic of the simulationsused in this study. Results show that there is a barotropic anticyclonic eddy over thedeep water of SCS, which extended from surface to subsurface. A dipoleanticyclonic/cyclonic feature is another structure of SCS that located in northwest (inApsheron sill) / southwest respectively, a nd persist throughout the year. Based onresults, net buoyancy flux of SCS is more affected by thermal buoyancy rather thanhaline buoyancy. In addition, there is a saline front in the east coast of SCS that isseparated from other regions by combining with warm (cold) water during (warm) seasons.

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    APA: Copy

    Komijani, Fereshteh, CHEGINI, VAHID, SADRINASAB, MASOUD, & SIADATMOSAVI, SEYED MOSTAFA. (2016). SIMULATION OF 3D CURRENT PATTERN, SEA SURFACE TEMPERATURE AND SALINITYDISTRIBUTION IN THE SOUTH OF CASPIAN SEA. JOURNAL OF MARINE ENGINEERING, 12(23), 0-0. SID. https://sid.ir/paper/355923/en

    Vancouver: Copy

    Komijani Fereshteh, CHEGINI VAHID, SADRINASAB MASOUD, SIADATMOSAVI SEYED MOSTAFA. SIMULATION OF 3D CURRENT PATTERN, SEA SURFACE TEMPERATURE AND SALINITYDISTRIBUTION IN THE SOUTH OF CASPIAN SEA. JOURNAL OF MARINE ENGINEERING[Internet]. 2016;12(23):0-0. Available from: https://sid.ir/paper/355923/en

    IEEE: Copy

    Fereshteh Komijani, VAHID CHEGINI, MASOUD SADRINASAB, and SEYED MOSTAFA SIADATMOSAVI, “SIMULATION OF 3D CURRENT PATTERN, SEA SURFACE TEMPERATURE AND SALINITYDISTRIBUTION IN THE SOUTH OF CASPIAN SEA,” JOURNAL OF MARINE ENGINEERING, vol. 12, no. 23, pp. 0–0, 2016, [Online]. Available: https://sid.ir/paper/355923/en

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