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Contact Information

Contact

Postal Address

City, University of London
Northampton Square
London
EC1V 0HB
United Kingdom

Publications

Conference paper/proceedings

  1. Koukouvinis, P.K., Bergeles, G. and Gavaises, M. (2014). A new methodology for estimating cavitation erosion: Application on a high speed cavitation test RIG.

Journal articles (7)

  1. Strotos, G., Koukouvinis, P., Theodorakakos, A., Gavaises, M. and Bergeles, G. (2015). Transient heating effects in high pressure Diesel injector nozzles. International Journal of Heat and Fluid Flow, 51, pp. 257–267. doi:10.1016/j.ijheatfluidflow.2014.10.010.
  2. Koukouvinis, P., Bergeles, G. and Gavaises, M. (2015). A cavitation aggressiveness index within the Reynolds averaged Navier Stokes methodology for cavitating flows. Journal of Hydrodynamics, 27(4), pp. 579–586. doi:10.1016/S1001-6058(15)60519-4.
  3. Karathanassis, I.K., Papanicolaou, E., Belessiotis, V. and Bergeles, G.C. (2013). Multi-objective design optimization of a micro heat sink for Concentrating Photovoltaic/Thermal (CPVT) systems using a genetic algorithm. Applied Thermal Engineering, 59(1), pp. 733–744. doi:10.1016/j.applthermaleng.2012.06.034.
  4. Riziotis, V.A., Katsaounis, G.M., Papadakis, G., Voutsinas, S.G., Bergeles, G. and Tzabiras, G.D. (2013). Numerical and experimental analysis of the hydroelastic behavior of purse seine nets. Ocean Engineering, 58, pp. 88–105. doi:10.1016/j.oceaneng.2012.09.022.
  5. Strotos, G., Gavaises, M., Theodorakakos, A. and Bergeles, G. (2011). Numerical investigation of the evaporation of two-component droplets. Fuel, 90(4), pp. 1492–1507. doi:10.1016/j.fuel.2011.01.017.
  6. Rampidis, I.M., Giannakopoulos, D. and Bergeles, G.C. (2010). Insight into the Greek electric sector and energy planning with mature technologies and fuel diversification. Energy Policy, 38(8), pp. 4076–4088. doi:10.1016/j.enpol.2010.03.034.
  7. Mavridou, S., Mavropoulos, G.C., Bouris, D., Hountalas, D.T. and Bergeles, G. (2010). Comparative design study of a diesel exhaust gas heat exchanger for truck applications with conventional and state of the art heat transfer enhancements. Applied Thermal Engineering, 30(8-9), pp. 935–947. doi:10.1016/j.applthermaleng.2010.01.003.