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- W2086722415 abstract "This paper focuses on the problem of flow film boiling from a body embedded in a porous medium. Two body geometries are investigated thoroughly: a horizontal cylinder and a sphere. The theoretical model relies on the Brinkman-extended flow model to describe the flow inside the thin vapor layer occupying the neighborhood near the heated surface. Unlike the counterpart of the present problem in classical fluids, it was found that the flow reversal does not occur inside the vapor layer. The effects of subcooling, incoming liquid flow velocity, and Darcy number on the heat and fluid flow characteristics of the problem are thoroughly documented. Finally, the overall and local heat-transfer rates from the surface to the fluid are determined for a wide range of the problem parameters and reported with the help of the conduction referenced Nusselt number. Nomenclature A = dimensionless group, Eq. (.17) B = dimensionless group, Eq. (18) cosh(jc) = hyperbolic cosine of x coth(x) = hyperbolic cotangent of x csch(;c) = hyperbolic cosecant of x D = diameter of sphere or cylinder Da = modified Darcy number, Eq. (9) h — local heat-transfer coefficient hfg = latent heat of vaporization including the effects" @default.
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- W2086722415 date "1988-10-01" @default.
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- W2086722415 title "Flow film boiling from a sphere and a horizontal cylinder embedded in porous medium" @default.
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- W2086722415 doi "https://doi.org/10.2514/3.112" @default.
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