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- W2032410010 abstract "In this study we investigate three-dimensional (3-D) mixed convection fluid flow within a horizontal duct, the walls of which are assumed to be maintained at specified constant temperatures. The flow through the duct is assumed to be steady and laminar, and the results presented are mainly concentrated on those obtained when using parameter values that are typically found in hydraulic fractures, an important process used in the oil industry to enhance the production rate of an oil well. The simplified 3-D governing equations are taken to be parabolic in the streamwise direction, and the solution technique consists of a mixture of finite difference and finite element techniques and an iterative scheme. In order to simulate the fluid flow in ducts that have dimensions similar to a typical fracture, results are obtained for duct heights much greater than duct widths. It is found that in the regions of the duct, that are not in the vicinity of the top and bottom walls the numerical solution asymptotically approaches a 2-D profile. However, simplifying the initial problem to a 2-D model would fail to determine the induced vertical pressure field and the vertical velocity component, both of which are necessary in order to determine whether mixed convection effects influence the settling of proppant in fractures." @default.
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- W2032410010 title "MIXED CONVECTION FLOW OF NEWTONIAN AND NON-NEWTONIAN FLUIDS IN A HORIZONTAL RECTANGULAR DUCT" @default.
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- W2032410010 doi "https://doi.org/10.1080/10407789708913920" @default.
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