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      Mixing Versus Stirring

      1 , 2
      Annual Review of Fluid Mechanics
      Annual Reviews

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          Abstract

          Mixing is the operation by which a system evolves under stirring from one state of simplicity—the initial segregation of the constituents—to another state of simplicity—their complete uniformity. Between these extremes, patterns emerge, possibly interact, and die sooner or later. This review summarizes recent developments on the problem of mixing in its lamellar representation. This point of view visualizes a mixture as a set of stretched lamellae, or sheets, possibly interacting with each other. It relies on a near-exact formulation of the Fourier equation on a moving substrate and allows one to bridge the spatial structure and evolution of the concentration field with its statistical content in a direct way. Within this frame, one can precisely describe both the dynamics of the concentration levels in a mixture as a function of the intensity of the stirring motions at the scale of a single lamella and the interaction rule between adjacent lamellae, thus offering a detailed representation of the mixture content, its structure, and their evolution in time.

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          Most cited references115

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          Anomalous diffusion in disordered media: Statistical mechanisms, models and physical applications

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            Dispersion of Soluble Matter in Solvent Flowing Slowly through a Tube

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              Estimates of the Local Rate of Vertical Diffusion from Dissipation Measurements

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                Author and article information

                Journal
                Annual Review of Fluid Mechanics
                Annu. Rev. Fluid Mech.
                Annual Reviews
                0066-4189
                1545-4479
                January 05 2019
                January 05 2019
                : 51
                : 1
                : 245-273
                Affiliations
                [1 ]Aix Marseille Université, CNRS, Centrale Marseille, IRPHE UMR 7342, 13384 Marseille, France;
                [2 ]Institut Universitaire de France, 75231 Paris, France
                Article
                10.1146/annurev-fluid-010518-040306
                d582c436-da60-447a-96ff-6ff61d89503d
                © 2019
                History

                Quantitative & Systems biology,Biophysics
                Quantitative & Systems biology, Biophysics

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