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Papers in referred journals

  1. Alcalá, G. Rivero, M. y Cuevas, S. ``Effect of the magnetic field orientation on the damping of liquid metal free surface waves in the processing of materials", Applied Thermal Engineering (2014). In press.

  2. López de Haro, M., Cuevas, S. y Beltrán, A. ``Heat transfer and entropy generation in the parallel plate flow of a power-law fluid with asymmetric convective cooling'', Energy 76, 750-756 (2014).

  3. Figueroa, A., Meunier, P., Cuevas, S., Villermaux, E., and Ramos, E. ``Chaotic advection at large Péclet number: Electromagnetically driven experiments, numerical simulations, and theoretical predictions.'' Phys. Fluids, 26, 013601 (2014).

  4. Núñez, J., López, M., Ramos, E., Hernández-Cruz, G., Vargas, M., Cuevas, S. ``Verification and experimental validation of a numerical simulation of natural convection in a slender cylinder'', Int. J. Heat Fluid Flow, 38, 118-125 (2012).

  5. Ibáñez, G., López, A. y Cuevas, S. ``Optimum wall thickness ratio based on the minimization of entropy generation in a viscous flow between parallel plates", Int. Comm. Heat Mass Transfer, 39(5), 587-592 (2012).

  6. Rivero, M. y Cuevas, S. ``Analysis of the slip condition in magnetohydrodynamic (MHD) micropumps''. Sensors and Actuators B: Chemical 166-167, 884- 892 (2012).

  7. Figueroa, A., Cuevas, S., and Ramos, E. ``Electromagnetically driven oscillatory shallow layer flow''. Phy. Fluids 23, 013601 (2011).

  8. Moreau, R., Smolentsev, S. and Cuevas, S. ``MHD flow in an insulating rectangular duct under a non-uniform magnetic field'', PMC-Physics B, 3:3, 1-43 (2010).

  9. Ibáñez, G. and Cuevas, S. `` Entropy generation minimization of a magnetohydrodynamic flow in a microchannel", Energy. 35, 4149-4155 (2010).

  10. Beltrán, A., Ramos, E., Cuevas, S. and Brøns, M. ``Bifurcation analysis in a vortex flow generation by an oscillatory magnetic obstacle'', Phys. Rev. E 81, 036309 (2010).

  11. Smolentsev, S., Cuevas, S. and Beltrán, A. ``Induced electric current based formulation in computations of low magnetic Reynolds number magnetohydrodynamic flows''. J. Comput. Phys., 229, 1558-1572 (2010).

  12. Figueroa, A., Demiaux, F., Cuevas, S., and Ramos, E. `` Electrically driven vortices in a weak dipolar magnetic field in a shallow electrolytic layer''. J. Fluid Mech., 641, 245-261 (2009).

  13. Lambert, A. A., Cuevas, S., del Río, J. A. and López de Haro, M. ``Heat transfer enhancement in oscillatory flows of Newtonian and viscoelastic fluids''. International Journal of Heat and Mass Transfer, 52, 5472-5478 (2009).

  14. Beltrán, A. Cuevas, S., Ramos, E. ``Vortex generation by an oscillatory magnetic obstacle'', Magnetohydrodynamics, 45(2), 173-180 (2009).

  15. Moreau, R., Smolentsev, S. and Cuevas, S. ``Flow in an insulating rectangular duct at the entry of a magnet'', Magnetohydrodynamics, 45(2), 181-192 (2009).

  16. Vázquez, F. Olivares-Robles, M. A. and Cuevas, S. ``Viscoelastic Effects on the Entropy Production in Oscillatory Flow between Parallel Plates with Convective Cooling'', Entropy, 11(1), 4-16 (2009).

  17. Ibáñez, G. and Cuevas, S. `` Optimum wall conductance ratio in magnetoconvective flow in a long vertical rectangular duct", International Journal of Thermal Sciences, 47, 1012-1019 (2008).

  18. Cuevas, S., Smolentsev, S., Abdou, M. `` Vorticity generation in creeping flow past a magnetic obstacle''. Phys. Rev. E, 70, 053601 (2006).

  19. Lambert, A. A., Cuevas, S. and del Río, J. A. ``Enhanced heat transfer using oscillatory flows in solar collectors''. Solar Energy. 80, 1296-1302 (2006).

  20. Cuevas, S., Smolentsev, S. and Abdou, M. `` Vorticity generation in localized magnetic fields''. Magnetohydrodynamics. 42(2-3), 199-206 (2006).

  21. Cuevas, S., Smolentsev, S. and Abdou, M. `` On the flow past a magnetic obstacle''. J. Fluid Mech., 553, 227-252 (2006).

  22. Ibáñez, G., Cuevas, S. and López de Haro, M. `` Optimization of a magnetohydrodynamic flow based on the entropy generation minimization method''. Int. Comm. Heat Mass Transfer, 33, 295-301 (2006)

  23. Ovando, G., Huelsz, G., Ramos, E. and Cuevas, S. `` Effect of a magnetic field on the linear stability of a thermoacoustic oscillation''. J. Non-Eq. Thermodyn., 30, 137-149 (2005).

  24. Lambert, A. A., Ibáñez, G., Cuevas, S. and del Río, J. A. ``Optimal behavior of viscoelastic flow at resonant frequencies''. Phys. Rev. E, 70 056302-1-4 (2004). Erratum: Phys. Rv. E, 73, 049902 (2006).

  25. Ibáñez, G., López de Haro, M. and Cuevas, S. `` Thermodynamic optimization of the radial MHD flow between parallel circular disks''. J. Non-Eq. Thermodyn., 29, 107-122 (2004).

  26. Ibáñez, G., Cuevas, S. and López de Haro, M. `` Heat transfer in asymmetric convective cooling and optimized entropy generation rate''. Rev. Mex. Fís., 49(4), 338-343 (2003).

  27. Ibáñez, G., Cuevas, S. and López de Haro, M. `` Minimization of entropy generation by asymmetric convective cooling''. Int. J. Heat Mass Transfer, 46(8), 1321-1328 (2003).

  28. Cuevas, S., Sierra-Espinosa, F. and Avramenko, A.,,``Magnetic damping of steady streaming vortices in oscillatory viscous flow over a wavy wall''. Magnetohydrodynamics. 38(4), 9-20 (2002).

  29. Ibáñez, G., Cuevas, S. and López de Haro, M. `` Optimization analysis of an alternate magnetohydrodynamic generator''. Energy Conversion and Management, 43(14), 1757-1771 (2002).

  30. Ramos, E., Cuevas, S. and Huelsz, G., ``Interaction of Stokes boundary layer flow with a sound wave''. Physics of Fluids, 13(12), 3709-3713 (2001).

  31. Cuevas, S. and del Río, J. A. ``Dynamical permeability of electrically conducting fluids under magnetic fields in annular ducts''. Physical Review E, 64, 016313-1-7 (2001).

  32. Salas, H., Cuevas, S. and Ramos, E., ``Electrically driven vortices in a dipolar magnetic field''. Magnetohydrodynamics, 37(1-2), 38-44 (2001).

  33. Salas, H., Cuevas, S. and López de Haro, M. ``Entropy generation analysis of magnetohydrodynamic induction devices'', J. Phys. D: Appl. Phys., 32(20), 2605-2608 (1999).

  34. Cuevas, S., del Río, J. A. and López de Haro, M. ``Consequences of a generalized Ohm's law for magnetic transport in conducting media'', J. Phys. D: Appl. Phys., 32(6), 639-643 (1999).

  35. Cuevas, S., Ramos, E. and Picologlou, B. F. ``Turbulent liquid-metal flow in rectangular ducts with thin conducting walls and strong magnetic fields'', Progress in Astronautics and Aeronautics AIAA, 182, 59-75 (1998).

  36. Cuevas, S. and Ramos, E. ``Steady streaming in oscillatory viscous flow under a transverse magnetic field'', Physics of Fluids, 9(5), 1430-1434 (1997)

  37. Cuevas, S., Picologlou, B. F., Walker, J. S. and Talmage, G. ``Liquid-metal MHD flow in rectangular ducts with thin conducting or insulating walls: laminar and turbulent solutions'', Int. J. Engng. Sci., 35(5), 485-503 (1997)

  38. Cuevas, S., Picologlou, B. F., Walker, J. S., Talmage, G. and Hua, T. Q., ``Heat transfer in laminar and turbulent liquid-metal MHD flows in square ducts with thin conducting or insulating walls'', Int. J. Engng. Sci., 35(5), 505-514 (1997)

  39. Cuevas, S. and Ramos, E., ``Heat transfer in an MHD flow inside a channel with walls of finite thickness'', Progress in Astronautics and Aeronautics AIAA, 148, 566-579 (1993).

  40. López de Haro, M., del Río, J.A., Vázquez, F. and Cuevas, S., ``Contributions of the Mexican school to extended irreversible thermodynamics'', Rev. Mex. Fís., 39, pp. 63-76, (1993)

  41. Cuevas, S. and Ramos, E., ``Heat transfer in an MHD flow with boundary conditions of the third kind'', Appl. Sci. Res., 48, pp. 11-33, (1991).


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Sergio Cuevas GarcĂ­a 2014-09-25