Abstract
AI irreversible thermodynamics theory is proposed to study the global calortropy production levels accompanying stationary patterns. The phenomena of stationary patterns are reached after a wave propagation through a two-dimensional array of coupled cells in an oscillatory homogeneous state, and they are an example of dissipative structures in terms of continuous energy-matter dissipation by the system. In this paper, we report on a numerical study of the dissipation levels accompanying the patterns in terms of a control parameter, namely: bifurcation parameter, rate of mass exchange, and size of an external perturbation.
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References
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