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Article type: Research Article
Authors: Grasselli, Maurizio; | Pata, Vittorino | Vegni, Federico Mario
Affiliations: Dipartimento di Matematica “F. Brioschi”, Politecnico di Milano, Italy E‐mail: maugra@mate.polimi.it, pata@mate.polimi.it | Dipartimento di Matematica, Università degli Studi di Brescia, Italy E‐mail: federico@ing.unibs.it
Note: [] Corresponding author.
Abstract: We consider a phase‐field model based on hereditary constitutive equations for the internal energy and the heat flux and on the assumption that the spatial average of the order parameter χ is conserved. This model consists of a parabolic integrodifferential equation for the (relative) temperature ϑ coupled with a nonlinear fourth‐order evolution equation for χ. We first show that the obtained system is indeed a nonautonomous dynamical system, provided that the phase space accounts for the past history of ϑ and appropriate boundary conditions are given. Then we establish the existence of an absorbing set, uniformly with respect to a certain class of heat source terms. Finally, we prove that, under suitable assumptions, our dissipative dynamical system possesses a uniform attractor of finite Hausdorff and fractal dimensions.
Keywords: conserved phase‐field models, materials with memory, existence and uniqueness, continuous dependence, nonautonomous dynamical systems, uniformly absorbing sets, uniform attractors, Hausdorff and fractal dimensions
Journal: Asymptotic Analysis, vol. 33, no. 3-4, pp. 261-320, 2003
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