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- W98746623 abstract "This chapter elucidates the concept of turbulent double diffusion. The study of double-diffusive natural convection in porous media has many environmental and industrial applications, including grain storage and drying, petrochemical processes, oil and gas extraction, contaminant dispersion in underground water reservoirs, and electrochemical processes. In some specific applications, the fluid mixture may become turbulent, and difficulties arise in the proper mathematical modeling of the transport processes under both temperature and concentration gradients. Modeling of macroscopic transport for incompressible flows in rigid porous media has been based on the volume-average methodology for either heat transfer or mass transfer. If time fluctuations of the flow properties are considered, in addition to spatial deviations, there are two possible methodologies that are to be followed to obtain macroscopic equations—application of time average operator followed by volume averaging, and the use of volume average operator before time averaging is applied. The chapter presents a set of macroscopic mass transport equations derived under the double-decomposition concept, through which the connection between the two paths that are to be followed to obtain macroscopic equations, is unveiled." @default.
- W98746623 created "2016-06-24" @default.
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- W98746623 date "2012-01-01" @default.
- W98746623 modified "2023-09-24" @default.
- W98746623 title "Turbulent Double Diffusion" @default.
- W98746623 doi "https://doi.org/10.1016/b978-0-08-098241-0.00007-3" @default.
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