High-Lift Aerodynamics
Taylor & Francis Ltd (Verlag)
978-1-032-11546-7 (ISBN)
Provides an understanding of the physics of flight during take-off and landing, from aerodynamics to flight performance, from simulation to design.
Discusses the physical limits of lift generation giving the lift generation potential.
Concentrates on the specifics of high-lift aerodynamics to provide a first insight.
Analyzes the needs of an aircraft to improve its performance during take-off, approach, and landing.
Focus on civil transport aircraft application, but the associated physics can apply to any other aircraft.
Dr. Jochen Wild is a Research Scientist at the Institute of Aerodynamics and Flow Technology of the German Aerospace Center DLR. After studying aerospace engineering at Technical University Munich and Mechanical Engineering at Technical University Darmstadt, he joined DLR as a PhD candidate. In 2001, he received his doctorate from the Technical University Braunschweig. From 2008 to 2018, he led the High-Lift Aerodynamics team within the Transport Aircraft Department, which he headed in 2018/2019. He has 25 years of experience in high-lift aerodynamics, high-lift system design and active flow control, with CFD and by wind tunnel testing. He has more than 100 contributions to scientific conferences, and about 50 contributions to books and scientific journals. For his scientific work, he was awarded with the Deutsche Lufthansa Stiftungspreis (1996), the Hermann-Blenk-Award (2013) and the EREA Best Paper Award (2015 and 2019). Since 2014, he has lectured on High-Lift Aerodynamics at the Technical University Braunschweig. He has participated in numerous national and international projects, including the coordination of high-lift aerodynamics projects. He contributed to the EUROLIFT I+II projects, the CleanSky Smart Fixed Wing Aircraft project and the European FP7 project AFLoNext and currently to the CleanSky 2 LPA HLFC-Wing project. He coordinated the European FP7 project DeSiReH and the Active Flow Control activities within the AFLoNext project. Currently, he coordinates the Horizon 2020 project UHURA dealing with unsteady aerodynamics of high-lift systems.
1. Introduction 2. Limits of Lift Generation 3. Airworthiness 4. Aircraft Performance at Take-Off and Landing 5. Passive High-Lift Systems 6. Active High-Lift Systems 7. Simulation of High-Lift Flows 8. Aerodynamic Design of High-Lift Systems
Erscheinungsdatum | 07.02.2022 |
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Verlagsort | London |
Sprache | englisch |
Maße | 156 x 234 mm |
Gewicht | 557 g |
Themenwelt | Naturwissenschaften ► Biologie ► Ökologie / Naturschutz |
Technik ► Elektrotechnik / Energietechnik | |
Technik ► Fahrzeugbau / Schiffbau | |
Technik ► Luft- / Raumfahrttechnik | |
Technik ► Maschinenbau | |
Technik ► Umwelttechnik / Biotechnologie | |
ISBN-10 | 1-032-11546-7 / 1032115467 |
ISBN-13 | 978-1-032-11546-7 / 9781032115467 |
Zustand | Neuware |
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