FERNANDO PORTÉ AGEL Professor Director, Wind Engineering and Renewable Energy Laboratory (WIRE) School of Architecture, Civil and Environmental Engineering (ENAC) École Polytechnique Fédérale de Lausanne (EPFL) e-mail: fernando.porte-agel@epfl.ch RESEARCH INTERESTS Environmental fluid mechanics. Computational fluid dynamics. Atmospheric boundary layers. Turbulence. Large-eddy simulation. Wind energy. Wind engineering. Renewable energy. EDUCATION Ph.D. 1999 Johns Hopkins University, Environmental Engineering M.Sc. 1995 Hydrologic Engineering, IHE - Delft, The Netherlands B.S. 1992 Universidad Politécnica de Cataluña, Spain ACADEMIC POSITIONS 2010-present: Full Professor, School of Architecture, Civil and Environmental Engineering (ENAC), École Polytechnique Fédérale de Lausanne (EPFL), Switzerland 2005-2009: Associate Professor, St. Anthony Falls Laboratory and Department of Civil Engineering, University of Minnesota, Minneapolis, MN, USA 2000-2005: Assistant Professor, St. Anthony Falls Laboratory, Department of Civil Engineering, University of Minnesota, Minneapolis, MN, USA AWARDS AND FELLOWSHIPS McKnight Presidential Fellow (2006-2009), University of Minnesota, USA McKnight Land-Grant Professorship (2003-2005), University of Minnesota, USA NASA Young Investigator Award (2001-2004), USA NSF CAREER Award (2001-2006), (Division of Earth Sciences Hydrological Sciences), USA Outstanding Student Paper Award: Hydrology Section, Fall Meeting of the American Geophysical Union; San Francisco, 1998. Research Award (1995-1997): La Caixa fellowship program; Barcelona, Spain. Research Award (1993-1995): Dutch Ministry of Foreign Affairs fellowship. Research Award (1990-1993): Spanish Civil Engineering Association.
Research InterestsSubsurface hydrology, constructed wetlands, ecological engineering, in particular contaminant transport and remediation of soil and groundwater; more generally, models of hydrological and vadose zone processes; application of mathematical methods to hydrological processes; coastal zone sediment transport, aquifer-coastal ocean interactions; hydrodynamics and modelling of lakes.
Dr. Hendrik Huwald is a scientist at the Laboratory of Cryospheric Sciences (CRYOS) and a lecturer at the Environmental Sciences and Engineering Section (SSIE) of the Swiss Federal Institute of Technology in Lausanne (EPFL). He completed his PhD in 2003 at the Swiss Federal Institute of Technology in Zürich (ETHZ), developing a numerical model for sea ice and studying energy transfer processes in the Arctic. Between 2005 and 2012 he was a post-doctoral fellow and scientist at the Laboratory of Environmental Fluid Mechanics and Hydrology (EFLUM) of EPFL working on Alpine snow-atmosphere interaction, and energy balance-related research mainly in mountain regions. During this time, he designed, led and participated in numerous large field experiments in different environments. In 2013 he joined the newly founded CRYOS laboratory where he conducted research in the domains of snow science, hydrology, boundary layer meteorology and environmental sensing. He has extensive experience with project management both on national and international level.
HIGHER EDUCATIONSummer course: Advances in Genome Technology and Bioinformatics Course at the Marine Biology Laboratory in Woods Hole, MA. October 2005.Ph.D. 2001 Civil and Environmental Engineering, Stanford University, CA(Advisor, Jim Leckie, Biodegradation of uranyl (UO22 )-complexed citrate and implications for uranyl mobility in the subsurface)M.S. 1995 Civil and Environmental Engineering, Stanford University, CAB.S. 1993 Natural Resources with Honors, Cornell University, Ithaca, NYPROFESSIONAL EMPLOYMENT2013-present Associate professor with tenure, School of Architecture, Civil and Environmental Engineering, Swiss Federal Institute of Technology, Lausanne2005-2013 Assistant professor tenure track, School of Architecture, Civil and Environmental Engineering, Swiss Federal Institute of Technology, Lausanne2001-2005 Post-Graduate Researcher, Scripps Institution of Oceanography, La Jolla, CA (PI: Brad Tebo)1995-2001 Graduate Research Assistant, Stanford University (Advisor: Jim Leckie)RESEARCH INTERESTSGemicrobiology, metal-bacteria interactions, biological reduction and oxidation of metals, biological nanoparticle formation; Characterization of microbial communities in terrestrial environments; Using genomic, microscopic and spectroscopic tools to understand metal transformations by microorganisms.ACADEMIC HONORSRotary Foundation University Professor grant, 2004.Swiss National Science Foundation Post-doctoral Fellowship, 2001.Leon B. Reynolds Memorial Scholarship in the School of Engineering at Stanford University, 1995-96.Graduated with Honors from Cornell University, 1993.BIBLIOMETRYhttp://www.researcherid.com/rid/E-4398-2011ResearcherID: E-4398-2011
PhD, Cambridge University, 1982 Interests 1 Active shape control for structures for deployment and where serviceability criteria governs 2 Biomimetic structures (learning, self-diagnosis, self-repair) 3 Infrastructure management support through structural identification 4 Advanced computer-aided engineering applications of stochastic optimization and search, multi-criteria analysis, system uncertainties (measurement and modelling), multi-modal approaches (combining statistics with behavior models) More details : see https://www.epfl.ch/labs/imac/research/iansmith/
John R. Thome is Professor of Heat and Mass Transfer at the Swiss Federal Institute of Technology in Lausanne (EPFL), Switzerland since 1998, where his primary interests of research are two-phase flow and heat transfer, covering both macro-scale and micro-scale heat transfer and enhanced heat transfer. He directs the Laboratory of Heat and Mass Transfer (LTCM) at the EPFL with a research staff of about 18-20 and is also Director of the Doctoral School in Energy. He received his Ph.D. at Oxford University, England in 1978. He is the author of four books: Enhanced Boiling Heat Transfer (1990), Convective Boiling and Condensation, 3rd Edition (1994), Wolverine Engineering Databook III (2004) and Nucleate Boiling on Micro-Structured Surfaces (2008). He received the ASME Heat Transfer Division's Best Paper Award in 1998 for a 3-part paper on two-phase flow and flow boiling heat transfer published in the Journal of Heat Transfer. He has received the J&E Hall Gold Medal from the U.K. Institute of Refrigeration in February, 2008 for his extensive research contributions on refrigeration heat transfer and more recently the 2010 ASME Heat Transfer Memorial Award. He has published widely on the fundamental aspects of microscale and macroscale two-phase flow and heat transfer and on enhanced boiling and condensation heat transfer.