Related people (14)
Lyesse Laloui
Director, EPFL Soil Mechanics LaboratoryDirector, EPFL Civil Engineering SectionEditor in Chief, ElsevierMember of the Swiss Academy of Engineering SciencesFounding Partner, Geoeg & MeduSoilActive in academic research in the following institutions: Lausanne, EPFL, Durham, Duke University, Nanjing, Hohai UniversityProfessor Lyesse Laloui teaches at EPFL, where he directs the Soil Mechanics Laboratory as well as the Civil Engineering Section. He is a founding partner of the international engineering company Geoeg, and the start-up MeduSoil. In addition, he is an adjunct professor at Duke University, USA and an advisory professor at Hohai University, China as well as honorary director of the International Joint Research Center for Energy Geotechnics in China.He is the recipient of an Advance ERC grant for his BIO-mediated GEO-material Strengthening project. Editor in Chief of the Elsevier Geomechanics for Energy and the Environment journal, he is a leading scientist in the field of geomechanics and geo-energy. He has written and edited 13 books and published over 320 peer reviewed papers; his work is cited more than 6000 times with an h-index of 39 (Scopus). Two of his papers are among the top 1% in the academic field of Engineering. He has given keynote and invited lectures at more than 40 leading international conferences. He has received several international awards (IACMAG, RM Quigley, Roberval) and delivered honorary lectures (Vardoulakis, Minnesota; G.A. Leonards, Purdue; Kersten, Minnesota). He recently acted as the Chair of the international evaluation panel of Civil and Geological Engineering R&D Units of Portugal.Nov. 2019 For further information visit www.epfl.ch/labs/lms/ ;  geoeg.net ; medusoil.com
Yves Weinand
Biography Architect and civil engineer, Prof. Dr. Yves Weinand is one of the most recognised researchers in the field of contemporary wood construction. Founder of the Bureau d'Etude Weinand, he has, since 1996, designed and worked on many emblematic wooden buildings, such as the Saint Loup Chapel, the new Vaudois Parliament or, more recently, the Timber Pavilion of Vidy in Lausanne. His fundamental research questions the technical and static possibilities of wooden materials. The interdisciplinary exploration carried out at the EPFL's Laboratory for Timber Constructions (Ibois), of which he is director, concerns wood in all its aspects, from round wood to manufactured wood. The recent research carried out at Ibois on free structures with wood-wood connections (without screw nor glue) has been the subject of several technological transfers, and stands as tangible proof of new possibilities for wood construction. Yves Weinand is currently working on a large-scale project for a hall for the head office of a joinery in Luxembourg, consisting of a succession of arches with spans of 22.5 to 53.7m, entirely assembled in wood ). Through new innovative approaches, the ambition of his research is to develop a new generation of renewable and ecological wooden construction.He is regularly invited to present his work at international symposia on timber construction.
Fields of expertise Architectural designTimber structuresDigital FabricationRobotic AssemblyStructural Wood mechanicsIntegrally Attached Timber plate structures
Distinctions 2012  Grand Prix d'Architecture de Wallonie 2014  Best Paper Award, Advances in Architectural Geometry conference. (IBOIS team) 2017   Medal for Research and Technique by the Academy of Architecture. 2018  Mention Régionale, Prix Lignum for the Timber Pavilion of Vidy-Lausanne 2019  "Disctinction Bois 2019" for the Nouveau Parlement vaudois.2019  Grand Prix d'Architecture de Wallonie____________________________________________________________________________ Selected publications Les Cahiers de l'Ibois/ Ibois Notebooks 1,  F. Fromonot, S. Berthier, Y. Rocher, publication directors: Y. Weinand et C. Catsaros, 2020 EPFL Press Le Pavillon en bois du Théâtre de Vidy, under the direction of Yves Weinand; V. Baudriller, J. Gamerro, M. Jaccard, C. Robeller; 2017, PPURAdvanced Timber Structures - Architectural Designs and Digital Dimensioning, Y. Weinand, 2017, Birkhaüser, publié en trois langues (french :  Structures Innovantes en Bois (2016);  german : Neue Holztragwerke - Architektonische Entwürfe und digitale Bemessung  (2017)Grubenmann Project / Projekt Grubenmann, Y. Weinand, 2016, Stiftung Grubenmann-SammlungTimber Project: Nouvelles formes d’architectures en bois, Y. Weinand, 2010, PPURArchitexto, Y. Weinand and D. Darcis, 2009, Editions Fourre-Tout, LiègeLe bois soudé, B. Stamm and Y. Weinand, 2004, Architecture Bois & DépendanceNew Modeling - projeter ensemble, Y. Weinand, 2003, PPUR
Aurèle Parriaux
Aurèle Parriaux studied geology at the Swiss Federal Institute of Technology (EPFL) in Lausanne, Switzerland. He obtained his Ph.D. in hydrogeology and followed several postgraduate courses in hydrogeology, operational hydrology and geotechnics. He acquired a wide experience in engineering geology in the fields of motorway construction, geological hazards, underground water and geomaterials prospecting as well as the management of natural resources. In 1991, he was appointed full Professor of Engineering Geology at EPFL and presently he is head of the Engineering and Environmental Geology Laboratory (GEOLEP) at the same institute. He leads a research team of about twenty people specializing in the fields of geological hazards and underground resources. Professor Parriaux has significant teaching responsibilities. He teaches geology to students in 'Civil Engineering' and 'Environmental Sciences and Engineering'. Moreover, he teaches “Engineering Geology” at the Universitiy of Lausanne. Parallel to his research and teaching, Aurèle Parriaux carries out expert appraisals in various fields of engineering and environmental geology. In particular, the recent appraisal of the compatibility between construction of tunnels and protection of groundwater resources. Since the creation of the new School of Architecture, Civil and Environmental Engineering (ENAC) at the Swiss Federal Institute of Technology in Lausanne, he participates in the teaching related to territory and landscape into which he brings the geological and geomorphologic component. Aurèle Parriaux is active in several international organizations. He was chairman of the Swiss Hydrogeological Society for six years. From 2001 to 2006 he was Director of the Civil Engineering Section of the Swiss Federal Institute of Technology of Lausanne. In 2006, he published his book "Géologie: bases pour l'ingénieur". The second edition of this successful textbook has been published in 2009. In competition with 105 scientific books, “Géologie : bases pour l'ingénieur” received the Roberval Prize in 2007. The publisher CRC Press/Balkema, member of the Taylor & Francis Group, publishes an English translation of the book (Geology: basics for Engineers, 2009). In December 2008, Prof. Parriaux was nominated Chevalier of the Order of Academic Palms by the Prime Minister of the Republic of France. In September 2011, he left the EPFL to dedicate his time to being an independent expert. Prof. Parriaux is currently based at Chemin de Crêt de Plan 103 in La Conversion CH-1093 (www.parriauxgeo.ch). He is continuing his collaboration with EPFL, especially on the DEEP CITY Project and on landslide research.
Brice Tanguy Alphonse Lecampion
I am currently an assistant Professor and the head of the Geo-Energy Lab - Gaznat Chair on GeoEnergy at Ecole Polytechnique Fédérale de Lausanne (EPFL), Switzerland. Prior to joining EPFL, I have worked for Schlumberger in research and development from 2006 until May 2015 - serving in a variety of roles ranging from project manager to principal scientist in both Europe and the United States. I received my PhD in mechanics from Ecole Polytechnique, France in 2002 and worked as a research scientist in the hydraulic fracturing research group of CSIRO division of Petroleum resources (Melbourne, Australia) from 2003 to 2006.   During my time in Schlumberger R&D, I have worked on problems related to the integrity of deep wells, large scale monitoring of reservoir deformation and more specifically on the stimulation of oil and gas wells by hydraulic fracturing.  My current research interests cover hydraulic fracture mechanics, mechanics of porous media and dense suspensions flow.

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