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Heat Transfer

  1. X. Zheng, H. Babaee, S. Dong, C. Chryssotomidis,  and G.E. Karnidakis, "A phase-field method for 3D simulaiton of two-phase heat transfer," Int. J. of  Heat and Mass Transfer, 82, 282-298, (2015).

  2. X. Wan and G.E. Karniadakis, ''Stochastic heat transfer enhancement in a grooved channel,'' J. Fluid Mech., vol. 565, 266-279, 2006.

  3. X. Wan and G.E. Karniadakis, ''Simulation of heat transfer with uncertainty,'' Proceedings of HT2005, 2005 ASME Summer Heat Transfer Conference, San Francisco, CA, July 17-22 2005.

  4. X. Wan, D. Xiu and G.E. Karniadakis, ''Modeling uncertainty in three-dimensional heat transfer problems,'' Heat Transfer 2004, March 24-26 2004, Lisbon, Portugal.

  5. D. Xiu and G.E. Karniadakis, ''A new stochastic approach to transient heat conduction modeling with uncertainty,'' Int. Journal of Heat and Transfer, 46, 4681-4693, 2003.

  6. X. Ma, G.E. Karniadakis, H. Park and M. Gharib, ''DPIV/T-Driven convective heat transfer simulation,'' Int. J. Heat and Mass Transfer, vol. 45, pp. 3517-3527, 2002.

  7. X. Ma and G.E. Karniadakis, ''Three-dimensional modeling of unsteady heat transfer,'' FEDSM97-3658, ASME Fluids Engineering Division Summer Meeting, Vancouver, 1997.

  8. M.V. Zagarola, A.J. Smits and G.E. Karniadakis, ''Heat transfer enhancement in transitional channel flow,'' J. Wind Engineering & Industrial Aerodynamics, vol. 49, p. 257, 1993. Also published in Proc. Second Int. Coll. on Bluff Body Aerodynamics and Applications, Melbourne, 1992.

  9. G.E. Karniadakis and G.S. Triantafyllou, ''The crisis of transport measures in chaotic flow past a cylinder,'' Phys. Fluids, vol. 4, p. 628, 1989.

  10. G.E. Karniadakis, B.B. Mikic and A.T. Patera, ''Transport enhancement by flow destabilization: Reynolds' analogy revisited,'' J. Fluid Mech., vol. 192, p. 365, 1988.

  11. G.E. Karniadakis, ''Numerical simulation of forced convection heat transfer from a cylinder in crossflow,'' Int. J. Heat and Mass Transfer, vol. 31, p. 107, 1988.

  12. G.E. Karniadakis, B.B. Mikic and A.T. Patera, ''Heat transfer enhancement by flow destabilization: Application to the cooling of chips,'' Int. Symp. on Cooling Technology for Electronic Equipment, Hemisphere, p. 587, 1987.

  13. N.K. Ghaddar, G.E. Karniadakis and A.T. Patera, ''A conservative isoparametric spectral element method for forced convection: Application to fully developed flow in periodic geometries,'' Num. Heat Transfer, vol., 9, p. 277, 1986.

  14. G.E. Karniadakis, B.B. Mikic and A.T. Patera, ''Unsteady heat transfer from a cylinder in crossflow: A direct numerical simulation,'' Proc. 8th Int. Heat Transfer Conf., vol. 2, p. 429, 1986.

  15. G.E. Karniadakis, E.T. Bullister, B.B. Mikic and A.T. Patera, ''A spectral element method applied to the cooling of electronic components,'' Proc. AIAA/ASME Thermod. and Heat Transfer Conf., Boston, 1986.

  16. G.E. Karniadakis and A.T. Patera, ''A spectral element method for the simulation of unsteady incompressible flows with heat transfer,'' Proc. 4th Int. Symp. on Num. Meth. in Eng., Springer, p. 231, 1986.

  17. M. Greiner, G.E. Karniadakis, B.B. Mikic and A.T. Patera, ''Heat transfer augmentation and hydrodynamic stability theory: Understanding and exploitation,'' Proc. Heat Transfer Conf., Korea, 1986.

 


next up previous
Next: Computational Biology Up: pubs Previous: Flow-Structure Interactions
George Karniadakis 2009-12-14