Long time dynamics of von Karman evolutions with thermal effects



Document title: Long time dynamics of von Karman evolutions with thermal effects
Journal: Boletim da Sociedade Paranaense de Matematica
Database: PERIÓDICA
System number: 000395880
ISSN: 0037-8712
Authors: 1
1
Institutions: 1Kharkov University, Department of Mechanics and Mathematics, Járkov. Ucrania
2University of Virginia, Department of Mathematics, Charlottesville, Virginia. Estados Unidos de América
Year:
Volumen: 25
Number: 1-2
Pages: 37–54-37–54
Country: Brasil
Language: Inglés
Document type: Artículo
Approach: Analítico
English abstract This paper presents a short survey of recent results pertaining to stability and long time behavior of von Karman thermoelastic plates. Questions such as uniform stability - and associated exponential decay rates for the energy function, existence of attractors in the case of internally/externally forced plates along with properties of attractors such as smoothness and dimensionality will be presented. The model considered consists of undamped oscillatory plate equation strongly coupled with heat equation. There are no other sources of dissipation. Nevertheless it will be shown that that the long-time behavior of the nonlinear evolution is ultimately finite dimensional and ”smooth”. In addition, the obtained estimate for the dimension and the size of the attractor are independent of the rotational inertia parameter γ, which is known to change the character of dynamics from hyperbolic (γ > 0) to parabolic like (γ = 0). Other properties such as additional smoothness of attractors, upper-semicontinuity with respect to parameter γ and existence of inertial manifolds are also presented
Disciplines: Matemáticas,
Física y astronomía
Keyword: Matemáticas aplicadas,
Mecánica, elasticidad y reología,
Ecuaciones diferenciales,
Sistemas dinámicos,
Atractores,
Estabilidad,
Termoelasticidad,
Ecuación de calor
Keyword: Mathematics,
Physics and astronomy,
Applied mathematics,
Mechanics, elasticity and rheology,
Differential equations,
Dynamic systems,
Attractors,
Stability,
Thermoelasticity,
Heat equation
Full text: Texto completo (Ver PDF)