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The Rayleigh-Bénard problem for compressible fluid flows

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Authors : Swierczewska-Gwiazda, Agnieszka (Author of the conference)
CIRM (Publisher )

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Abstract : We consider the physically relevant fully compressible setting of the Rayleigh-Bénard problem of a fluid confined between two parallel plates, heated from the bottom, and subjected to the gravitational force. Under suitable restrictions imposed on the constitutive relations we show that this open system is dissipative in the sense of Levinson, meaning there exists a bounded absorbing set for any global-in-time weak solution. In the second part of the talk we discuss also the motion of a compressible viscous fluid in a container with impermeable boundary subject to time periodic heating and under the action of a time periodic potential force. We show the existence of a time periodic weak solution for arbitrarily large physically admissible data. The talk is based on two papers.

Keywords : Rayleigh–Benard problem; Navier–Stokes–Fourier system; weak solution; attractor; stationary statistical solution

MSC Codes :
35B10 - Periodic solutions
35B40 - Asymptotic behavior of solutions of PDE

    Information on the Video

    Film maker : Hennenfent, Guillaume
    Language : English
    Available date : 19/12/2022
    Conference Date : 08/12/2022
    Subseries : Research talks
    arXiv category : Analysis of PDEs
    Mathematical Area(s) : PDE
    Format : MP4 (.mp4) - HD
    Video Time : 00:43:27
    Targeted Audience : Researchers ; Graduate Students ; Doctoral Students, Post-Doctoral Students
    Download : https://videos.cirm-math.fr/2022-12-08_Swierczewska_Gwiazda.mp4

Information on the Event

Event Title : MathFlows
Event Organizers : Danchin, Raphaël ; Mucha, Piotr ; Tolksdorf, Patrick ; Zatorska, Ewelina
Dates : 05/12/2022 - 09/12/2022
Event Year : 2022
Event URL : https://conferences.cirm-math.fr/2638.html

Citation Data

DOI : 10.24350/CIRM.V.19985003
Cite this video as: Swierczewska-Gwiazda, Agnieszka (2022). The Rayleigh-Bénard problem for compressible fluid flows. CIRM. Audiovisual resource. doi:10.24350/CIRM.V.19985003
URI : http://dx.doi.org/10.24350/CIRM.V.19985003

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