Multiple solutions and numerical analysis to the dynamic and stationary models coupling a delayed energy balance model involving latent heat and discontinuous albedo with a deep ocean

Author:

Díaz J. I.1,Hidalgo A.2,Tello L.3

Affiliation:

1. Instituto de Matemática Interdisciplinar and Dept. Mat. Aplicada, Universidad Complutense de Madrid, 28040 Madrid, Spain

2. Dept. Matemática Aplicada y Métodos Informáticos. E.T.S.I. Minas y Energía, Universidad Politécnica de Madrid, 28003 Madrid, Spain

3. Dept. Matemática Aplicada, E.T.S. Arquitectura, Universidad Politécnica de Madrid, 28040 Madrid, Spain

Abstract

We study a climatologically important interaction of two of the main components of the geophysical system by adding an energy balance model for the averaged atmospheric temperature as dynamic boundary condition to a diagnostic ocean model having an additional spatial dimension. In this work, we give deeper insight than previous papers in the literature, mainly with respect to the 1990 pioneering model by Watts and Morantine. We are taking into consideration the latent heat for the two phase ocean as well as a possible delayed term. Non-uniqueness for the initial boundary value problem, uniqueness under a non-degeneracy condition and the existence of multiple stationary solutions are proved here. These multiplicity results suggest that an S-shaped bifurcation diagram should be expected to occur in this class of models generalizing previous energy balance models. The numerical method applied to the model is based on a finite volume scheme with nonlinear weighted essentially non-oscillatory reconstruction and Runge–Kutta total variation diminishing for time integration.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference62 articles.

1. The effect of solar radiation variations on the climate of the Earth

2. Brezis H& Díaz JI. 2003 Mathematics and environment. Special issue of Rev. R. Acad. Cien. Serie A Matem (RACSAM). 96 3.

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