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Entropy-related extremum principles for model reduction of dissipative dynamical systems - MaRDI portal

Entropy-related extremum principles for model reduction of dissipative dynamical systems (Q653362)

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scientific article; zbMATH DE number 5995859
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Entropy-related extremum principles for model reduction of dissipative dynamical systems
scientific article; zbMATH DE number 5995859

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    Entropy-related extremum principles for model reduction of dissipative dynamical systems (English)
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    9 January 2012
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    Summary: Chemical kinetic systems are modeled by dissipative ordinary differential equations involving multiple time scales. These lead to a phase flow generating anisotropic volume contraction. Kinetic model reduction methods generally exploit time scale separation into fast and slow modes, which leads to the occurrence of low-dimensional slow invariant manifolds. The aim of this paper is to review and discuss a computational optimization approach for the numerical approximation of slow attracting manifolds based on entropy-related and geometric extremum principles for reaction trajectories.
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    model reduction
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    slow invariant manifolds
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    chemical kinetics
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    extremum principles
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    entropy concepts
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