Jürgen BruggerI am a Professor of Microengineering and co-affiliated to Materials Science. Before joining EPFL I was at the MESA Research Institute of Nanotechnology at the University of Twente in the Netherlands, at the IBM Zurich Research Laboratory, and at the Hitachi Central Research Laboratory, in Tokyo, Japan. I received a Master in Physical-Electronics and a PhD degree from Neuchâtel University, Switzerland. Research in my laboratory focuses on various aspects of MEMS and Nanotechnology. My group contributes to the field at the fundamental level as well as in technological development, as demonstrated by the start-ups that spun off from the lab. In our research, key competences are in micro/nanofabrication, additive micro-manufacturing, new materials for MEMS, increasingly for wearable and biomedical applications. Together with my students and colleagues we published over 200 peer-refereed papers and I had the pleasure to supervise over 25 PhD students. Former students and postdocs have been successful in receiving awards and starting their own scientific careers. I am honoured for the appointment in 2016 as Fellow of the IEEE “For contributions to micro and nano manufacturing technology”. In 2017 my lab was awarded an ERC AdvG in the field of advanced micro-manufacturing.
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) Johan Alexandre Philippe GaumeI started my scientific career in 2008 at the Grenoble University in the IRSTEA laboratory where I did my master's thesis on the rheology of dense granular materials using the discrete element method. In the same lab, I followed with a PhD on the numerical modeling of the release depth of extreme avalanches using a combined mechanical-statistical approach and spatial extreme statistics. In 2013 I obtained a postdoc position at the WSL Institute for Snow and Avalanche Research SLF in Davos where I was in charge of developing and applying numerical models to improve the evaluation of avalanche release conditions and thus avalanche forecasting. While my PhD was mostly theoretical and numerical, my postdoc in Davos allowed me to gain a practical expertise by participating in laboratory and field experiments which helped to validate the models I develop. In 2016, I was awarded a SNF grant to work as a research and teaching associate in CRYOS at EPFL on the multiscale modeling of snow and avalanche processes. I developed discrete approaches to model snow micro-structure deformation and failure in order to evaluate constitutive snow models to be used at a larger scale in continuum models. I also developed numerical models for wind-driven snow transport. In 2017, I was a Visiting Scholar at UCLA to work on a Material Point Method (MPM) to simulate both the initiation and propagation of snow avalanches in a unified manner. The UCLA MPM model was initially developed for the Disney movie "Frozen" and has been modified and enriched based on Critical State Soil Mechanics to model the release and flow of slab avalanches. The results of this collaboration have been published in Nature Communications. In 2018, I was awarded the SNF Eccellenza Professorial Fellowship and became professor at EPFL and head of SLAB, the Snow and Avalanche Simulation Laboratory. At SLAB, we study micro-mechanical failure and fracture propagation of porous brittle solids, with applications in snow slab avalanche release. We also simulate avalanche dynamics and flow regime transitions over complex 3D terrain through the development of new models (depth-resolved and depth-averaged) based on MPM.In 2020, I obtained a SPARK grant to develop a new approach to simulate and better understand complex process chains in gravitational mass movements, including permafrost instabilities, rock, snow and ice avalanches and transitions to debris flows.
Jan Van HerleNé à Anvers, Belgique, 1966. En Suisse depuis 1983. Naturalisé Suisse en 2004 par persuasion de la culture suisse démocratique et participative 'bottom-up'. Pas de double nationalité. Conseiller communal durant 2 mandats de 5 ans de 2006 à 2016.
1987 : Chimiste de l'Université de Bâle (CH).
1988 : Post-grade informatique de l'Ecole d'Ingénieurs de Bâle.
1989 : Stage industriel chez ABB à Baden (CH).
1990-1993 : Thesè EPFL
1994-1995 : Postdoc au Japon (Tokyo).
1996-2000 : Chercheur à l'EPFL, Dpt. Chimie, responsable de groupe.
1998-2000 : Master en Energy Technology, EPFL.
2000 : Cofondateur de HTceramix SA (EPFL spin-off), à Yverdon (actuellement 12 employés). La maison mère SOLIDpower en Italie, qui a acheté notre technologie en 2007, emploie 250 personnes et a levé 70 MCHF.
2000-2012 : 1er Assistant et chargé de cours en STI-IGM. Promu à MER en 2008.
2013-présent: MER responsable d'unité.
Output : 135 publications, 120 papiers de conférence, 15 théses de doctorat, 4 thèses en cours, 37 thèses de master. Facteur h-42, >5000 citations.
Fonds levés jusqu'à présent >19 MCHF.
5 langues couramment (néerlandais, français, allemand (y.c. suisse-allemand), anglais, espagnol).
Dimitrios TerzisDimitrios Terzis received his Civil Engineering diploma from the Aristotle University of Thessaloniki, Greece in 2014, having spent a year in the ESTP, Paris as an exchange student. In 2017, he graduated with a doctoral degree (PhD) in Mechanics from the Swiss Federal Institute of Technology, Lausanne (EPFL). His research, funded by the Swiss National Science Foundation (grant 200021_140246) and a scholarship of Academic Excellence of the Swiss Federal Government (No. 2014.0276), focused on the crystallisation of calcium carbonate in soils. With his thesis, Dimitrios contributed in the fields of advanced material characterisation through microscopy and X-Ray tomography techniques, predictive modelling and full-scale geotechnical applications. He’s the co-inventor of three EPFL patents and the author of more than 10 peer-reviewed publications with an h-index of 6 (Scopus, as of 08/2020). He is the recipient of grants and awards which sum up to over CHF 1 Mn, among which an EPFL Innogrant Fellowship (2018), a Swiss National Science foundation BRIDGE grant (2019) and an Innobooster grant from the Gebert rüf Stiftung. Since 2019 he is the principal lecturer and responsible for the course Innovation for construction and the environment which is part of EPFL's Master's program in Civil Engineering.