103,95 €*
Versandkostenfrei per Post / DHL
Lieferzeit 1-2 Wochen
Thomas Duriez is a tenured French researcher at CONICET, Buenos Aires, Argentina. He works on experimental, numerical and theoretical aspects of fluid mechanics focusing on flow control. He is part of the pioneer team developing Machine Learning Control for laminar and turbulent flows. He studied at ESPCI-ParisTech, the Paul Sabatier University and IMFT (Toulouse). After his PhD thesis at PMMH (Paris) on the control of separated flows, he had several postdoctoral appointments in academia and industry, including PMMH (Paris), LFD, LIMSI (Orsay, France) and PPRIME Institute (Poitiers, France) as part of the TUCOROM team. In Poitiers, he developed Machine Learning Control under the leadership of Bernd Noack.
Steven L. Brunton is an Assistant Professor in Mechanical Engineering and an Adjunct Assistant Professor in Applied Mathematics at the University of Washington in Seattle. Hegraduated with a B.S. in Mathematics from the California Institute of Technology and received his PhD in Mechanical and Aerospace Engineering from Princeton University. Currently, his research interests include data-driven modeling and control of complex dynamical systems using machine learning, compressed sensing, uncertainty quantification, and equation-free modeling; Flow control of unsteady aerodynamics, transport phenomena, and turbulent mixing enhancement; Adaptive and robust control techniques for energy optimization and conversion. He is a Data Science Fellow with the eScience Institute at UW.
Bernd R. Noack is Director of Research CNRS at LIMSI-CNRS, Paris-Saclay, and Professor and Chair of 'Flow Modeling and Control' at TU Braunschweig, Germany. Prof. Noack develops closed-loop flow control solutions for cars, airplanes and transport systems in an interdisciplinary effort with an international network of leading researchers. He received a degree as diplom physicist and his physics doctorate from the Georg-August-University Göttingen in 1989 and 1992, respectively. Positions followed at the Max-Planck-Institut für Strömungsforschung, Göttingen, the German Aerospace Center, Göttingen, the Göttingen University, the United Technologies Research Center (East Hartford, CT, USA) and the Berlin Institute of Technology, where he was Professor and Chair of 'Reduced-Order Modeling for Flow Control'. In 2009 he joined the Institute PPRIME, Poitiers, France as Director of Research CNRS. He also became Head of the Senior ANR Chair of Excellence ''Closed-Loop Control of Turbulent Shear Flows using Reduced-Order Models (TUCOROM)''. His work on turbulence control was honored by national and international awards, including a Fellowship of the American Physical Society.
Guides the reader from the control of simple dynamical systems to real-world experiments assisted by ample supplementary material
Contains interviews with leading experts in the field
Offers extensive color figures with clear explanations
Includes exercises at the end of every chapter and Matlab codes for all examples
Includes supplementary material: [...]
Erscheinungsjahr: | 2016 |
---|---|
Fachbereich: | Fertigungstechnik |
Genre: | Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Reihe: | Fluid Mechanics and Its Applications |
Inhalt: |
xx
211 S. 15 s/w Illustr. 58 farbige Illustr. 211 p. 73 illus. 58 illus. in color. |
ISBN-13: | 9783319406237 |
ISBN-10: | 331940623X |
Sprache: | Englisch |
Ausstattung / Beilage: | HC runder Rücken kaschiert |
Einband: | Gebunden |
Autor: |
Duriez, Thomas
Noack, Bernd R. Brunton, Steven L. |
Auflage: | 1st ed. 2017 |
Hersteller: |
Springer International Publishing
Springer International Publishing AG Fluid Mechanics and Its Applications |
Maße: | 241 x 160 x 18 mm |
Von/Mit: | Thomas Duriez (u. a.) |
Erscheinungsdatum: | 15.11.2016 |
Gewicht: | 0,56 kg |
Thomas Duriez is a tenured French researcher at CONICET, Buenos Aires, Argentina. He works on experimental, numerical and theoretical aspects of fluid mechanics focusing on flow control. He is part of the pioneer team developing Machine Learning Control for laminar and turbulent flows. He studied at ESPCI-ParisTech, the Paul Sabatier University and IMFT (Toulouse). After his PhD thesis at PMMH (Paris) on the control of separated flows, he had several postdoctoral appointments in academia and industry, including PMMH (Paris), LFD, LIMSI (Orsay, France) and PPRIME Institute (Poitiers, France) as part of the TUCOROM team. In Poitiers, he developed Machine Learning Control under the leadership of Bernd Noack.
Steven L. Brunton is an Assistant Professor in Mechanical Engineering and an Adjunct Assistant Professor in Applied Mathematics at the University of Washington in Seattle. Hegraduated with a B.S. in Mathematics from the California Institute of Technology and received his PhD in Mechanical and Aerospace Engineering from Princeton University. Currently, his research interests include data-driven modeling and control of complex dynamical systems using machine learning, compressed sensing, uncertainty quantification, and equation-free modeling; Flow control of unsteady aerodynamics, transport phenomena, and turbulent mixing enhancement; Adaptive and robust control techniques for energy optimization and conversion. He is a Data Science Fellow with the eScience Institute at UW.
Bernd R. Noack is Director of Research CNRS at LIMSI-CNRS, Paris-Saclay, and Professor and Chair of 'Flow Modeling and Control' at TU Braunschweig, Germany. Prof. Noack develops closed-loop flow control solutions for cars, airplanes and transport systems in an interdisciplinary effort with an international network of leading researchers. He received a degree as diplom physicist and his physics doctorate from the Georg-August-University Göttingen in 1989 and 1992, respectively. Positions followed at the Max-Planck-Institut für Strömungsforschung, Göttingen, the German Aerospace Center, Göttingen, the Göttingen University, the United Technologies Research Center (East Hartford, CT, USA) and the Berlin Institute of Technology, where he was Professor and Chair of 'Reduced-Order Modeling for Flow Control'. In 2009 he joined the Institute PPRIME, Poitiers, France as Director of Research CNRS. He also became Head of the Senior ANR Chair of Excellence ''Closed-Loop Control of Turbulent Shear Flows using Reduced-Order Models (TUCOROM)''. His work on turbulence control was honored by national and international awards, including a Fellowship of the American Physical Society.
Guides the reader from the control of simple dynamical systems to real-world experiments assisted by ample supplementary material
Contains interviews with leading experts in the field
Offers extensive color figures with clear explanations
Includes exercises at the end of every chapter and Matlab codes for all examples
Includes supplementary material: [...]
Erscheinungsjahr: | 2016 |
---|---|
Fachbereich: | Fertigungstechnik |
Genre: | Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Reihe: | Fluid Mechanics and Its Applications |
Inhalt: |
xx
211 S. 15 s/w Illustr. 58 farbige Illustr. 211 p. 73 illus. 58 illus. in color. |
ISBN-13: | 9783319406237 |
ISBN-10: | 331940623X |
Sprache: | Englisch |
Ausstattung / Beilage: | HC runder Rücken kaschiert |
Einband: | Gebunden |
Autor: |
Duriez, Thomas
Noack, Bernd R. Brunton, Steven L. |
Auflage: | 1st ed. 2017 |
Hersteller: |
Springer International Publishing
Springer International Publishing AG Fluid Mechanics and Its Applications |
Maße: | 241 x 160 x 18 mm |
Von/Mit: | Thomas Duriez (u. a.) |
Erscheinungsdatum: | 15.11.2016 |
Gewicht: | 0,56 kg |