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D. A. Nield. Modelling fluid flow in saturated porous media and at interfaces. In: D. B. Ingham and I. Pop, eds., Transport Phenomena in Porous Media II. Oxford: Elsevier, 2002 pp. 1–19.
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K. Sundaravadivelu and C. P. Tso. Influence of viscosity variations on the forced convection flow through two types of heterogeneous porous media with isoflux boundary condition. Int. J. Heat Mass Transfer 46: 2329–2339, 2003.
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Effects of heterogeneity in forced convection in a porous medium: Parallel plate channel or circular duct: Triple layer or conjugate problem
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A. V. Kuznetsov and D. A. Nield. Effects of heterogeneity in forced convection in a porous medium: parallel plate channel or circular duct: triple layer or conjugate problem. Numerical Heat Transfer A 40: 363–385, 2001.
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Effects of gross heterogeneity and anisotropy in forced convection in a porous medium: Layered medium analysis
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D. A. Nield and A. V. Kuznetsov. Effects of gross heterogeneity and anisotropy in forced convection in a porous medium: layered medium analysis. J. Por ous Media 6: 51–57, 2003.
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Forced convective heat transfer from aluminum foam in a channel flow
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J. W. Paek, S. Y. Kim, B. H. Kang, and J. M. Hyun. Forced convective heat transfer from aluminum foam in a channel flow, in Proceedings of the 33rd National Heat Transfer Conference, Paper NHTC99-158, 1999, pp. 1–8.
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Effects of heterogeneity in forced convection in a porous medium: Parallel plate channel, Brinkman model
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D. A. Nield and A. V. Kuznetsov. Effects of heterogeneity in forced convection in a porous medium: parallel plate channel, Brinkman model. J. Por ous Media 6: 257–266, 2003.
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Effects of heterogeneity in forced convection in a porous medium: Parallel plate channel, asymmetric property variation and asymmetric heating
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D. A. Nield and A. V. Kuznetsov. Effects of heterogeneity in forced convection in a porous medium: parallel plate channel, asymmetric property variation and asymmetric heating. J. Por ous Media 4: 137–148, 2001.
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The interaction of thermal nonequilibrium and heterogeneous conductivity effects in forced convection in layered porous channels
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D. A. Nield and A. V. Kuznetsov. The interaction of thermal nonequilibrium and heterogeneous conductivity effects in forced convection in layered porous channels. Int. J. Heat Mass Transfer 44: 4375–4379, 2001.
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D. A. Nield and A. V. Kuznetsov. Effects of heterogeneity in forced convection in a porous medium: parallel plate channel or circular duct. Int. J. Heat Mass Transfer 43: 4119–4134, 2000.
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Thermally developing forced convection in a porous medium: Parallel plate channel or circular tube with isothermal walls
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D. A. Nield, A. V. Kuznetsov, and M. Xiong. Thermally developing forced convection in a porous medium: parallel plate channel or circular tube with isothermal walls. J. Por ous Media 7: 19–27, 2004.
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D. A. Nield, A. V. Kuznetsov, and M. Xiong. Thermally developing forced convection in a porous medium: parallel plate channel or circular tube with walls at constant heat flux. J. Por ous Media 6: 203–212, 2003.
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Effect of local thermal nonequilibrium on thermally developing forced convection in a porous medium
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D. A. Nield, A. V. Kuznetsov, and M. Xiong. Effect of local thermal nonequilibrium on thermally developing forced convection in a porous medium. Int. J. Heat Mass Transfer 45: 4949–4955, 2002.
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Resolution of a paradox involving viscous dissipation and nonlinear drag in a porous medium
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D. A. Nield. Resolution of a paradox involving viscous dissipation and nonlinear drag in a porous medium. Transp. Por ous Media 41: 349–357, 2000.
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A new model for viscous dissipation in porous media across a range of permeability values
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A. K. Al-Hadhrami, L. Elliott, and D. B. Ingham. A new model for viscous dissipation in porous media across a range of permeability values. Transp. Por ous Media 53: 117–122, 2003.
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Thermally developing forced convection in a porous medium: Parallel plate channel with walls at constant temperature, with longitudinal conduction and viscous dissipation effects
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D. A Nield, A. V. Kuznetsov, and M. Xiong. Thermally developing forced convection in a porous medium: parallel plate channel with walls at constant temperature, with longitudinal conduction and viscous dissipation effects. Int. J. Heat Mass Transfer 46: 643–651, 2003.
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Heat transfer by laminar Hartmann flow in thermal entrance region with a step change in wall temperature: The Graetz problem extended
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J. Lahjomri, A. Oubarra, and A. Alemany. Heat transfer by laminar Hartmann flow in thermal entrance region with a step change in wall temperature: the Graetz problem extended. Int. J. Heat Mass Transfer 45: 1127–1148, 2002.
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A. V. Kuznetsov, M. Xiong, and D. A. Nield. Thermally developing forced convection in a porous medium: circular duct with walls at constant temperature, with longitudinal conduction and viscous dissipation effects. Transp. Porous Media 53: 331–345, 2003.
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