Open AccessEnvironmental SciencePhysics

G. Russell, J. Miller, D. Rind

1995.12.1ATMOSPHERE-OCEAN

DOI: 10.1080/07055900.1995.9649550

tlooto Summary

A new coupled atmosphere-ocean model was developed for climate predictions at decade to century scales.

Abstract

Abstract A new coupled atmosphere‐ocean model has been developed for climate predictions at decade to century scales. The atmospheric model is similar to that of Hansen et al. (1983) except that the atmospheric dynamic equations for mass and momentum are solved using Arakawa and Lamb's (1977) C grid scheme and the advection of potential enthalpy and water vapour uses the linear upstream scheme (Russell and Lerner, 1981). The new global ocean model conserves mass, allows for divergent flow, has a free surface and uses the linear upstream scheme for the advection of potential enthalpy and salt. Both models run at 4° × 5° resolution, with 9 vertical layers for the atmosphere and 13 layers for the ocean. Twelve straits are included, allowing for subgrid‐scale water flow. Runoff from land is routed into appropriate ocean basins. Atmospheric and oceanic surface fluxes are of opposite sign and are applied synchronously. Flux adjustments are not used. Except for partial strength alternating binomial filters (Shap...

Citation format

RUSSELL, G.; MILLER, J.; RIND, D. A coupled atmosphere‐ocean model for transient climate change studies. ATMOSPHERE-OCEAN, 1995, 33: 683–730.