Studies using multi-region and open boundary conditions for terrain bottom-following ocean models

Approved for public release; distribution is unlimited === The objective of this thesis is to develop a prognostic model of the Northern Canary Current System (NCCS) based on the Princeton Ocean Model with parallel processing capabilities on a cluster of workstations and improved boundary conditions...

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Main Author: Martinho, Antonio S.
Other Authors: Batteen, Mary L.
Published: Monterey, California. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/9874
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-98742015-02-18T15:55:35Z Studies using multi-region and open boundary conditions for terrain bottom-following ocean models Martinho, Antonio S. Batteen, Mary L. Eoyang, Carson K. Oceanography Approved for public release; distribution is unlimited The objective of this thesis is to develop a prognostic model of the Northern Canary Current System (NCCS) based on the Princeton Ocean Model with parallel processing capabilities on a cluster of workstations and improved boundary conditions. A one-way coupling with a z-level basin scale model, a North Atlantic version of the Parallel Ocean Program, will also be executed. The development of this model will allow the investigation of coastal processes and the development of numerical models in order to improve the results of sigma coordinate bottom-following ocean models. The roles of wind forcing, bottom topography and thermohaline gradients in coastal processes will be investigated. In order to reduce the Pressure Gradient Force Error while maintaining a realistic topography, a new topographic smoothing technique will be developed. Modified Marchesiello boundary conditions will be applied to a version of POM model one-way coupled with a North Atlantic version of POP. Finally, a automatic multi-region parallelization will be developed, applying minimal changed to the serial POM code. It is shown that a prognostic sigma-coordinate model can be successfully developed for the NCCS, with more realistic topography, improved boundary conditions and with parallel processing capabilities. 2012-08-22T15:30:28Z 2012-08-22T15:30:28Z 2003-03 http://hdl.handle.net/10945/9874 Copyright is reserved by the copyright owner. Monterey, California. Naval Postgraduate School
collection NDLTD
sources NDLTD
description Approved for public release; distribution is unlimited === The objective of this thesis is to develop a prognostic model of the Northern Canary Current System (NCCS) based on the Princeton Ocean Model with parallel processing capabilities on a cluster of workstations and improved boundary conditions. A one-way coupling with a z-level basin scale model, a North Atlantic version of the Parallel Ocean Program, will also be executed. The development of this model will allow the investigation of coastal processes and the development of numerical models in order to improve the results of sigma coordinate bottom-following ocean models. The roles of wind forcing, bottom topography and thermohaline gradients in coastal processes will be investigated. In order to reduce the Pressure Gradient Force Error while maintaining a realistic topography, a new topographic smoothing technique will be developed. Modified Marchesiello boundary conditions will be applied to a version of POM model one-way coupled with a North Atlantic version of POP. Finally, a automatic multi-region parallelization will be developed, applying minimal changed to the serial POM code. It is shown that a prognostic sigma-coordinate model can be successfully developed for the NCCS, with more realistic topography, improved boundary conditions and with parallel processing capabilities.
author2 Batteen, Mary L.
author_facet Batteen, Mary L.
Martinho, Antonio S.
author Martinho, Antonio S.
spellingShingle Martinho, Antonio S.
Studies using multi-region and open boundary conditions for terrain bottom-following ocean models
author_sort Martinho, Antonio S.
title Studies using multi-region and open boundary conditions for terrain bottom-following ocean models
title_short Studies using multi-region and open boundary conditions for terrain bottom-following ocean models
title_full Studies using multi-region and open boundary conditions for terrain bottom-following ocean models
title_fullStr Studies using multi-region and open boundary conditions for terrain bottom-following ocean models
title_full_unstemmed Studies using multi-region and open boundary conditions for terrain bottom-following ocean models
title_sort studies using multi-region and open boundary conditions for terrain bottom-following ocean models
publisher Monterey, California. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/9874
work_keys_str_mv AT martinhoantonios studiesusingmultiregionandopenboundaryconditionsforterrainbottomfollowingoceanmodels
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