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Charbel Farhat : ウィキペディア英語版
Charbel Farhat

Charbel Farhat is the Vivian Church Hoff Professor of Aircraft Structures in the School of Engineering at Stanford University, where he is also Chairman of the Department of Aeronautics and Astronautics, Professor of Mechanical Engineering, Professor in the Institute for Computational and Mathematical Engineering, Director of the Army High Performance Computing Research Center, and Director of the King Abdullah City of Science and Technology Center of Excellence for Aeronautics and Astronautics. He also serves on the United States Bureau of Industry and Security's Emerging Technology and Research Advisory Committee (ETRAC) at the United States Department of Commerce, on the United States Air Force Scientific Advisory Board (SAB), and on the technical assessment boards of several national and international research councils and foundations.
Farhat is listed as an ISI Highly Cited Author in Engineering by the ISI Web of Knowledge, Thomson Scientific Company. For his lasting contributions to aeroelasticity, CFD on moving grids, computational acoustics, computational mechanics, and high performance computing, he received numerous awards and academic distinctions. He is a Member of the National Academy of Engineering and a Fellow of six international professional societies: the American Institute of Aeronautics and Astronautics, the American Society of Mechanical Engineers, the World Innovation Foundation, the International Association of Computational Mechanics, the US Association of Computational Mechanics, and the Society of Industrial and Applied Mathematics. He is also an Editor of the International Journal for Numerical Methods in Engineering, and the International Journal for Numerical Methods in Fluids.
==Career==
Farhat began his career at the University of Colorado at Boulder where he served as Chairman of the Department of Aerospace Engineering Sciences and Director of the Center for Aerospace Structures. Then, he moved to Stanford University where he occupies the Vivian Church Hoff Chair of Engineering, and serves as Chairman of the Department of Aeronautics and Astronautics, Director of the Army High Performance Computing Research Center, and Director of the King Abdullah City of Science and Technology Center of Excellence for Aeronautics and Astronautics.
He led the development of the Finite Element Tearing and Interconnecting (FETI) method for the scalable solution of large-scale systems of equations on massively parallel processors. FETI was incorporated in several finite element production and commercial software in the US and Europe. It enabled the Sandia National Laboratories’ structural dynamics code SALINAS to win a Gordon Bell Prize in the special accomplishment category based on innovation. Farhat also developed the three-field computational framework for coupled nonlinear fluid-structure interaction problems. With his co-workers, he introduced the concept of a Discrete Geometric Conservation Law (DGCL) and established its relationship to the nonlinear stability of CFD schemes on moving grids. This led to the development of the nonlinear aeroelastic software AERO that is used for many applications ranging from the shape sensitivity analysis of Formula 1 cars, to the nonlinear flutter analysis of supersonic business jet concepts.

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