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Ocean-atmosphere simulations of the Eastern Mediterranean using COAMPS TM /NCOM Objectives Simulate Mediterranean and subregional (e.g., Adriatic and Aegean Seas) atmospheric and oceanic circulation at high resolution as a testbed for investigating ocean/atmosphere coupling strategies Document and understand response of marginal seas to forcing by strong winds and river run-off/outflow from adjacent water bodies Aid in planning of field campaigns and employ observational data for model validation and data assimilation Julie Pullen Paul Martin James Doyle Richard Hodur
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Outline Model configuration Model forcing Simulations during etesian wind events
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Domain Configuration 6 km NCOM 27 km 81 km COAMPS TM Momentum, Heat fluxes
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Nesting for Focus on Adriatic Sea 6 km NCOM 27 km 81 km COAMPS TM Momentum, Heat fluxes 36 km 12 km COAMPS TM 4 km 2 km NCOM Momentum, Heat fluxes Initial conditions and lateral boundary forcing
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2 km NCOM Aegean Sea nest (Paul Martin)
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COAMPS TM / atmosphere MVOI Specifications Features Analysis: multivariate OI of winds and heights (univariate of temperature and moisture) ingests observations from radiosondes, surface observations, aircraft, and satellites Model: Non-hydrostatic, C-grid, sigma vertical coordinate 81/ 27 km, 30 levels grid size of inner nest: 193 x 97 12 hr incremental data assimilation cycle with 24 hr forecast reanalysis has been run for Oct 1998 – June 2002, and is ongoing
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NCOM Specifications Features Ocean model based on POM: C-grid, hybrid sigma-z vertical coordinate, options for parametrization of turbulence, order of advection scheme (Paul Martin, NRL-Stennis) forced by hourly COAMPS TM momentum and heat fluxes 6 km, 40 levels (15 sigma levels) grid size: 576 x 288 starting from multi-year spin-up beginning 1999 climatological river discharge from 54 major rivers
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NCOM Bathymetry in the Aegean
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Simulations (summer 2001) COAMPS Eastern Mediterranean wind COAMPS/NCOM Aegean wind/surface elevation NCOM climatological simulation with BSW
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