Jean-Marie Drezet1992-1996: travail de thèse au Laboratoire de Métallurgie Physique sous la direction du Prof. Michel Rappaz, http://library.epfl.ch/theses/?display=detail&nr=1509 1997-2000: projet EMPACT (European Modelling Programme for Aluminium Casting Technologies) 2001-2004: projet VIRCAST (European Virtual Casting) 2005-2006: projet Etude du sciage des barres à laminer (Alcan Fonds) 2005-2006: projet WelAIR (Welding of Airframes, EADS) 2005-2008: soudage faisceau d'électrons des Cu-Cr-Zr (CEA, France) 2006-2008: soudage laser des Al-Li (EADS, France) 2008-2011: co-direction avec le Prof. A. Nussbaumer de la thèse de C. Acevedo sur l'influence des contraintes residuelles sur le desgin en fatigue des joints tubulaires soudés, http://library.epfl.ch/theses/?nr=5056 2007-2011: co-direction avec le Prof. J.-F. Molinari de la thèse de K. Shahim sur la dilatation ventriculaire dans l'hydrocéphalie à pression normale (S. Momjian, HU-Genève et R. Sinkus, ESPCI-Paris), http://library.epfl.ch/theses/?nr=5191 2008-2012: co-direction avec le Prof. M. Rappaz de la thèse de M. Sistaninia sur la simulation de la fissuration par modèles granulaires (Projet CCMX-MERU) 2010-2014: direction avec le Prof. M. Rappaz de la thèse de N. Chobaut sur la simulation des contraintes lors de la trempe de pièces épaisses en alliage d'aluminium à durcissement structural (Projet CCMX-MERU) 2011-2015: direction avec le Prof. H. Van Swygenhoven-Moens de la thèse de P. Schloth sur l'étude de la précipitation lors de la trempe de pièces épaisses en alliage d'aluminium à durcissement structural (Projet CCMX-MERU) Yves LeterrierYves Leterrier joined EPFL in 1993 and is a faculty member of the Materials Institute. He is a senior scientist and lecturer in the Laboratory for Processing of Advanced Composites (LPAC, previously Laboratory of Composite and Polymer Technology, LTC). Activities
2000-2005: Foundation and Chair of the Korea-Switzerland joint symposia on materials and micro-technologies2004-2008: Board member of FLEXIDIS (the European flexible display consortium) 2004-2009: Group leader on lightweight materials for Solar ImpulseSince 2008: Board member of the French Adhesion SocietySince 2000: President of the EPFL Materials Science Library commissionSince 2012: Editorial board member, Applied Surface ScienceSince 2014: Associate Editor, Frontiers in MaterialsSince 2021: Coordinator of the EPFL Minor on 'Engineering for Sustainability'
Background
1987: MS in materials science and solid state physics (INPL, France) 1991: PhD in materials science (Ecole des Mines, INPL, France) 1992: Research Associate, National Institute of Standards and Technology (NIST, USA)
Dusan LicinaDusan Licina is a Tenure Track Assistant Professor of Indoor Environmental Quality at the School for Architecture, Civil, and Environmental Engineering (ENAC) at EPFL. He leads the Human-Oriented Built Environment Lab (HOBEL) in Fribourg since 1 June 2018. Dusan’s research and teaching are driven by the need to advance knowledge of the intersections between people and the built environment in order to ensure high indoor environmental quality for building occupants with minimum energy input. His research group specializes in air quality engineering, focusing on understanding of concentrations, dynamics and fates of air pollutants within buildings, and development and application of methods to quantitatively describe relationships between air pollution sources and consequent human exposures. His research interests also encompass optimization of building ventilation systems with an aim to improve air quality and thermal comfort in an energy-efficient manner. Throughout his career, Dusan specialized in air quality engineering, focusing on sources and transport of air pollutants in buildings, human exposure assessment, and optimization of building ventilation systems with an aim to improve air quality. Dusan completed my joint Doctorate degree at the National University of Singapore and Technical University of Denmark. He was formerly master and bachelor student in Mechanical Engineering at the University of Belgrade, Serbia. Prior to joining EPFL, Dusan worked for 3.5 years in the USA, first he was a postdoctoral researcher at the University of California Berkeley, and then he served as director on the standard development team at International WELL Building Institute (IWBI) in New York. Dusan is the recipient of several honors and awards, including Ralph G. Nevin’s award by the American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE) given in recognition of significant accomplishment in the study of human response to the environment. He is editorial board member of the highly acclaimed Indoor Air journal. He is passionate about raising awareness about the air quality issues worldwide and developing buildings that are not only energy efficient, but that also contribute to “Michelin Star” indoor air quality.
Emmanuel DenariéEmmanuel Denarié is a civil engineer, with a PhD in Materials Science. He worked for 3 years in a civil engineering company where he was in charge of the design of structures and the maintenance of bridges. He has 30 years’ experience on research and applications in the field of building materials, advanced concretes, and rehabilitation of reinforced concrete structures. He is since 2000 senior scientist and lecturer in the Laboratory for Maintenance and Safety of structures, at Ecole Polytechnique Fédérale de Lausanne (EPFL), in charge of research and development activities on the application of concretes and advanced cementitious materials to the improvement of existing and new structures. In 2013, under the lead of Emmanuel Denarié, in cooperation with CEREMA, Subdivision des Phares et Balises from Lorient, and Lafarge, a turret at sea (Le Cabon, Brittany, France) was reinforced by a cast on site 60 mm thick UHPFRC shell. The strain hardening mix was developed jointly with Lafarge. This successful application in extreme conditions of access and restraint of the substrate (thin ring geometry) opened the way to large-scale industrial applications of UHPFRC for the reinforcement of existing structures.