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      Global and trajectory attractors for a nonlocal Cahn-Hilliard-Navier-Stokes system

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          Abstract

          The Cahn-Hilliard-Navier-Stokes system is based on a well-known diffuse interface model and describes the evolution of an incompressible isothermal mixture of binary fluids. A nonlocal variant consists of the Navier-Stokes equations suitably coupled with a nonlocal Cahn-Hilliard equation. The authors, jointly with P. Colli, have already proven the existence of a global weak solution to a nonlocal Cahn-Hilliard-Navier-Stokes system subject to no-slip and no-flux boundary conditions. Uniqueness is still an open issue even in dimension two. However, in this case, the energy identity holds. This property is exploited here to define, following J.M. Ball's approach, a generalized semiflow which has a global attractor. Through a similar argument, we can also show the existence of a (connected) global attractor for the convective nonlocal Cahn-Hilliard equation with a given velocity field, even in dimension three. Finally, we demonstrate that any weak solution fulfilling the energy inequality also satisfies an energy inequality. This allows us to establish the existence of the trajectory attractor also in dimension three with a time dependent external force.

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          Most cited references23

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          DIFFUSE-INTERFACE METHODS IN FLUID MECHANICS

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            Quasi-incompressible Cahn-Hilliard fluids and topological transitions

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              Computation of multiphase systems with phase field models

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                Author and article information

                Journal
                29 July 2011
                Article
                10.1007/s10884-012-9272-3
                1107.5933
                783ae5e6-8dba-4485-a502-add4d8dc4784

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                35Q30, 37L30, 45K05, 76T99
                35 pages; presented at INDI2011 in Gargnano
                math.AP

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