Hassan Berro
University of Lyon
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Publication
Featured researches published by Hassan Berro.
Journal of Chemical Physics | 2011
Hassan Berro; Nicolas Fillot; Philippe Vergne; Takashi Tokumasu; Taku Ohara; Gota Kikugawa
Energy is commonly dissipated in molecular dynamics simulations by using a thermostat. In non-isothermal shear simulations of confined liquids, the choice of the thermostat is very delicate. We show in this paper that under certain conditions, the use of classical thermostats can lead to an erroneous description of the dynamics in the confined system. This occurs when a critical shear rate is surpassed as the thermo-viscous effects become prominent. In this high-shear-high-dissipation regime, advanced dissipation methods including a novel one are introduced and compared. The MD results show that the physical modeling of both the accommodation of the surface temperature to liquid heating and the heat conduction through the confining solids is essential. The novel method offers several advantages on existing ones including computational efficiency and easiness of application for complex systems.
Tribology International | 2010
Hassan Berro; Nicolas Fillot; Philippe Vergne
Tribology Letters | 2011
Nicolas Fillot; Hassan Berro; Philippe Vergne
Tribology Letters | 2010
Hassan Berro; Nicolas Fillot; Philippe Vergne
Cargèse School "Theoretical modeling and experimental simulation in Tribology" | 2010
Hassan Berro; Nicolas Fillot; Philippe Vergne
4th International Tribology Congress ASIATRIB 2010 "Frontiers in Tribology" | 2010
Hassan Berro; Nicolas Fillot; Philippe Vergne
World Tribology Conference WTC2009 | 2009
Nicolas Fillot; Hassan Berro; Wasim Habchi; Philippe Vergne
ASME/STLE International Joint Tribology Conference | 2008
Hassan Berro; Nicolas Fillot; Philippe Vergne
ELyT Lab Annual Workshop | 2012
Hassan Berro; Nicolas Fillot; Philippe Vergne; Takashi Tokumasu; Taku Ohara; Gota Kikugawa
23èmes Journées Internationales Francophones de Tribologie | 2011
Daniele Savio; Hassan Berro; Nicolas Fillot; Philippe Vergne