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Super-parameterization in ocean modeling: Application to deep convection
Authors:Jean-Michel Campin  Chris Hill  Helen Jones  John Marshall
Institution:1. University of Liege, Department of Aerospace and Mechanical Engineering, LTAS-Vibrations et Identification des Structures, Quartier Polytech 1, 9 Allée de la Découverte (B52/3), 4000 Liège, Belgium;1. Departmento Matemática Aplicada II, E.I.T., Universidad de Vigo, 36310 Vigo, Spain;2. Departmento Matemáticas, Fac. Ciencias, Universidad de Oviedo, 33007 Oviedo, Spain
Abstract:We explore the efficacy of “super parameterization” (SP) in ocean modeling in which local 2-d non-hydrostatic plume-resolving fine-grained (FG) models are embedded at each vertical column of a coarse-grained (CG) hydrostatic model. A general multi-scale algorithm is described in which tendencies from the FG models are projected onto the CG model which in turn constrains the average state of the FG models, coupling the two models together. The approach is tested in the context of models of open ocean deep convection and compared with a pure hydrostatic, coarse resolution model using convective adjustment (HYD) and a full 3-d non-hydrostatic plume-resolving simulation (NH). The SP model is found to be greatly superior to HYD at much less computational cost than the fully non-hydrostatic calculation.
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