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March 10, 2026Quarterly Journal of the Royal Meteorological Society0 citations

Atmosphere, ocean, and coupled ocean–atmosphere models in a single code

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JRJean‐Luc Redelsperger

Key Points

  • The aim is to develop a unified model that simulates interactions between the atmosphere and the ocean at fine scales.
  • Developed an ocean model based on the Meso–NH atmospheric model with minimal modifications.
  • Utilized the isomorphism between atmospheric and oceanic equations to create a single code base.
  • Applied the model to idealized cases of shallow and deep convection and analyzed a warm-layer case.
  • Tested the coupled model through large-eddy simulations.
  • The coupled model displayed straightforward internal consistency in simulating interactions.
  • Both oceanic and atmospheric models benefited from shared numerical schemes and features.
  • The approach streamlined the integration process without requiring external couplers.

Abstract

Abstract A new coupled ocean–atmosphere model is presented. It permits the study of turbulent interactions between the atmosphere and the ocean at very fine scales within a single coherent model code (the Meso–NH model). First, an ocean model is developed from the Meso–NH atmospheric model with only a few modifications. By exploiting the isomorphism between the equations governing the two fluids, the same hydrodynamical algorithm is used to simulate both the atmosphere and the ocean. The main difference in the numerical code is related to the distinct state equations describing the ocean and the atmosphere. The ocean model is then applied to idealised cases of shallow and deep convection, as well as to a diurnal warm‐layer case observed during Cooperative Indian Ocean Experiment on Intraseasonal Variability/Dynamics of the Madden–Julian Oscillation. Because atmospheric and oceanic models share a single code base, they automatically share many key features, such as numerical schemes and subgrid turbulent representations. The coupling between the ocean and the atmosphere is therefore straightforward, internally consistent, and does not require an external coupler. The ocean model, as well as the coupled one, benefits directly from all existing and future developments of the atmospheric model, such as grid nesting, turbulence statistics, budget diagnostics, maintenance, and ongoing computational improvements. Finally, a first test of the coupled model at fine scales (large‐eddy simulations) is presented.

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Cite This Study

Jean‐Luc Redelsperger (2026) studied this question.

synapsesocial.com/papers/69af95b470916d39fea4d7e7https://doi.org/10.1002/qj.70133
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