Luisa PastoreWith a background in Architectural Engineering, Luisa specialised in sustainable architecture, bioclimatic design and comfort in buildings through a PhD from the University of Palermo (2013) followed by a Post-doc at the Interdisciplinary Laboratory of Performance-Integrated Design (LIPID) of EPFL (2014-2019).She is currently a Scientific Collaborator at the Smart Living Lab - EPFL and professor of Material Behaviour and Architecture and Energy Concept at the Ecole d’Architecture et d’Architecture d’Intérieur – idées House of Lausanne.She also works as Coordinator for the Holcim Foundation for Sustainable Construction where she acts as a liaison between the Academic Committee and the core Management Office of the Foundation. Besides the coordination of the AC's agenda, she supports the organization of events and competitions for the promotion of innovative sustainable design solutions that can tackle today's environmental, socioeconomic, and cultural issues affecting the built environment.Since 2021 she has also joined Amber Lion Partners as Impact and Sustainability Advisor.
Colin Neil JonesColin Jones is an Associate Professor in the Automatic Control Laboratory at the Ecole Polytechnique Federale de Lausanne (EPFL) in Switzerland. He was a Senior Researcher at the Automatic Control Lab at ETH Zurich until 2011 and obtained a PhD in 2005 from the University of Cambridge for his work on polyhedral computational methods for constrained control. Prior to that, he was at the University of British Columbia in Canada, where he took a BASc and MASc in Electrical Engineering and Mathematics. Colin has worked in a variety of industrial roles, ranging from commercial building control to the development of custom optimization tools focusing on retail human resource scheduling. His current research interests are in the theory and computation of predictive control and optimization, and their application to green energy generation, distribution and management.
Katrin BeyerSince 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.
Pierino LestuzziPierino Lestuzzi est ingénieur civil diplômé de l’EPFL et docteur en sciences techniques de l’Ecole polytechnique fédérale de Zurich (EPFZ).Il préside par ailleurs la commission de la norme SIA 261 (Actions sur les structures porteuses).Il est également actif dans le bureau « Kurmann&Cretton Ingénieurs SA » à Monthey (Valais) dans lequel il travaille à temps partiel en tant que spécialiste en génie parasismique.
Mohammad RahiminejadMohammad Rahiminejad is a third-year Ph.D. student in the doctoral program of Mechanics at EPFL. His main research centers on building physics and examines how the thermo-hydrodynamic behavior of airflow in a ventilated cavity behind traditional and modern (BIPV) external claddings impacts the thermal performance of the entire building envelope. To tackle this topic, he takes a multidisciplinary approach that encompasses numerical analyses, CFD simulations, and experimental measurements. Before joining EPFL, he worked as a project manager assistant in Shiraz, Iran, on quite a few industrial projects including the design of the ventilation systems of Tehran-Shomal Freeway, design of the air conditioning systems of Shiraz subway, and design of the air exhaust and jet fan systems of the Shiraz longest underpass. He holds a master’s degree in Mechanical Engineering from the Sharif University of Technology, Iran, where he investigated water purification through monolayer graphene membranes using Molecular Dynamics (MD) simulation. In his bachelor's degree in Shiraz University, he successfully achieved publishing a journal paper in the field of biomechanics that addressed the distribution of the pressure and velocity fields in the human upper airway during sneezing using CFD simulations.