Personnes associées (85)
Aurelio Muttoni
Aurelio Muttoni est professeur ordinaire et directeur du Laboratoire de Construction en Béton de l’Ecole Polytechnique Fédérale de Lausanne (Suisse). Il a reçu son diplôme et son doctorat en génie civil de l’Ecole Polytechnique Fédérale de Zürich à Zürich, Suisse, en 1982 et 1989 respectivement. Ses activités actuelles en matière d’enseignement se concentrent sur la conception des structures, la théorie et le dimensionnement des structures en béton ainsi que la conception des ponts. Son groupe de recherche est actif dans les domaines suivants : comportement et méthodes de dimensionnement des structures en béton, conception de structures innovantes, effort tranchant dans les structures en béton, poinçonnement des dalles, analyse non-linéaire des structures incluant leur fiabilité, adhérence entre l’acier et le béton, engrènement des granulats, fatigue et influence de la durée de chargement sur la résistance du béton, comportement mécanique et principes de dimensionnement pour le béton à ultra-hautes performances, béton textile et béton recyclé. Aurelio Muttoni a reçu la distinction Chester Paul Siess Award for Excellence in Structural Research en 2010 et la médaille Wason for Most Meritorious Paper en 2014, toutes deux décernées par l’ American Concrete Institute . Il est membre du Presidium de la fib (Fédération Internationale du Béton), de plusieurs commissions et groupes de travail de la fib et il a dirigé le Project Team pour la deuxième génération de la norme européenne EN 1992-1-1 (Eurocode pour les structures en béton). Aurelio Muttoni est aussi co-fondateur et associé du bureau de conseil Muttoni & Fernández (www.mfic.ch). Ce bureau est actif dans la conception, l’analyse et le dimensionnement de structures porteuses pour les constructions d’architecture et de génie civil, ainsi que dans le conseil en matière d’ingénierie structurale.
Eugen Brühwiler
birth date: 19.11.1958 nationality: Swiss (native from Dussnang, Canton of Thurgau)  Education : - July 1988 : doctoral degree from the Swiss Federal Institute of Technology in Lausanne (EPFL), Switzerland with a thesis entitled “Fracture mechanics of dam concrete subjected to quasi-static and seismic loading conditions” - December 1983 : civil engineering diploma (university degree) from the Swiss Federal Institute of Technology (ETH) in Zurich, Switzerland  Professional Experience : - Since 1st April 1995 : Professor of Structural Engineering at EPFL and Head of the Laboratory of Maintenance, Construction and Safety for Civil Structures (MCS) (often considered being the first chair worldwide devoted exclusively to existing civil structures). - 1991-94 Project Manager and structural engineer with the Swiss Federal Railways (SBB), Division of Bridges and Structures, Zurich: Monitoring and maintenance of bridges and structures, Project manager and checking engineer for the construction of new bridges and rehabilitation of existing bridges. - 1989/90 Research associate at the Department of Civil Engineering, University of Colorado, Boulder, USA : Fracture mechanics of concrete and fracture of concrete dams. - 1986-88 Doctoral student at EPFL-LMC (Building Materials, Prof. Wittmann) : Fracture mechanics of concrete, fracture of concrete dams under seismic loading - 1984/85 Research engineer at EPFL-ICOM (Steel Structures, Prof. Badoux and Prof. Hirt) : Fatigue behaviour and fracture mechanics of riveted bridges
Katrin Beyer
Since 2017 Associate Professor, School of Architecture, Civil and Environmental Engineering (ENAC), EPFL. Head of the Earthquake Engineering and Structural Dynamics (EESD) Laboratory 2010-2017 Assistant Professor, EPFL. 2008-2010 Post-doctoral researcher, ETH Zürich. 2003-2007 Ph.D., Roseschool / Università di Pavia, Italy. 2001-2003 Ove Arup & Partners, Advanced Technology and Research Group, London. 2001 Diploma, Civil engineering, ETH Zürich.
Thomas Keller
EDUCATION 1992 Dr. sc. techn. (PhD) Swiss Federal Institute of Technology, Zurich (ETH) 1983 Dipl. Bauing. ETH (MS civil engineering) Swiss Federal Institute of Technology, Zurich (ETH) EMPLOYMENT 2007-present, Full Professor of Structural Engineering (100%) Swiss Federal Institute of Technology, Lausanne (EPFL) Civil Engineering Institute 1998-2007, Associate Professor of Structural Engineering (80/100%) Swiss Federal Institute of Technology, Lausanne (EPFL) Structural Engineering Institute Foundation of CCLab in 2000 1996-1998, Assistant Professor of Structural Engineering (50%) Swiss Federal Institute of Technology, Zurich (ETH) Department of Architecture 1992-2004, Senior Project Engineer and Joint Owner Engineering offices in Zug and Zurich 1990-1992, Research Scientist Swiss Federal Institute of Technology, Zurich (ETH) Structural Engineering Institute 1986-1990, Project Engineer Architecture and engineering office Calatrava, Zurich 1983-1986, Teaching and Research Assistant Swiss Federal Institute of Technology, Zurich (ETH) Structural Engineering Institute
Dimitrios Lignos
Prof. Lignos joined the École Polytechnique Féderale de Lausanne (EPFL) in 2016 from McGill University in Canada where he was a tenured Associate Professor and a William Dawson Scholar for Infrastructure Resilience. He holds a diploma (National Technical University of Athens, NTUA, 2003), M.S. (Stanford University, 2004) and Ph.D. (Stanford University, 2008). In addition, he was a post-doctoral scientist at Stanford University (2009) and in Kyoto University (2010).  Prof. Lignos teaches graduate and undergraduate courses in seismic design, nonlinear behaviour of steel and composite structures as well as supplemental damping systems, Structural Stability, Nonlinear Analysis and Performance-based Earthquake Engineering. His awards for teaching, research and service in Civil Engineering include the 2011 Outstanding Teaching Award (Faculty of Engineering, McGill University), as well as the Outstanding reviewer (2012, 2013) award from ASCE, the 2013 State-of-the-Art in Civil Engineering Award by ASCE and the 2014 Christophe Pierre Award for Research Excellence - Early Career. Just recently, he received the 2019 Walter L. Huber Civil Engineering Research Prize from ASCE for significant contributions in developing state of the art methods to simulate extreme limit states in steel structures.Prof. Lignos is a member of ASCE and the Earthquake Engineering Research Institute. He acts as an Associate Editor for Metal Structures and Seismic Effects of the ASCE Journal of Structural Engineering. He joined the Editorial Board of Earthquake Spectra and Earthquake Engineering and Structural Dynamics International journals. He serves as an acting member of the CEN/TC 250/SC 8/WG 2 and has been selected as a member of the Project Team (PT2) for the Eurocode 8-Part 1 Current Revisions for Steel and Composite Structures. He is also a member of the Canadian Standards Association (CSA) S16 technical committee for Steel Structures. Prof. Lignos is involved as a NEHRP consultant in numerous research-to-practice projects related to the behaviour and nonlinear modelling and analysis of structures applicable to the engineering practice through the Applied Technology Council (ATC).  Detailed Curriculum Vitae (last update September 2018)
Emmanuel Denarié
Emmanuel 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.

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