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Fundamentals of High Lift for Future Civil Aircraft [electronic resource] : Contributions to the Final Symposium of the Collaborative Research Center 880, December 17-18, 2019, Braunschweig, Germany / edited by Rolf Radespiel, Richard Semaan.

Contributor(s): Radespiel, Rolf [editor.] | Semaan, Richard [editor.] | SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Notes on Numerical Fluid Mechanics and Multidisciplinary Design: 145Publisher: Cham : Springer International Publishing : Imprint: Springer, 2021Edition: 1st ed. 2021.Description: XII, 648 p. 421 illus., 301 illus. in color. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783030524296.Subject(s): Fluid mechanics | Aerospace engineering | Astronautics | Dynamical systems | Engineering Fluid Dynamics | Aerospace Technology and Astronautics | Dynamical SystemsAdditional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification: 620.1064 Online resources: Click here to access online
Contents:
Unconventional Applications and New Approaches for Flow Control -- A Brief Overview on Past Research on Coanda Assisted STOL Transport Aircraft -- Actuation system for Effective Flow Control of an Internally Blown Coanda flap -- Friction Drag Reduction by Transversal Spanwise Traveling Waves of Ribbed Surface -- Manipulation of Leading-Edge Vortex Flow -- Semi-Analytical Approach to the Determination of Free-Edge Stress Fields in Cylindrically Curved Composite Laminated Shells -- Air Curtain Flow Control for Aerodynamic Noise Reduction -- Multibody Modelling of an UHBR Engine and its Influence on the Dynamics of an Aircraft Wing.
In: Springer Nature eBookSummary: This book reports on the latest numerical and experimental findings in the field of high-lift technologies. It covers interdisciplinary research subjects relating to scientific computing, aerodynamics, aeroacoustics, material sciences, aircraft structures, and flight mechanics. The respective chapters are based on papers presented at the Final Symposium of the Collaborative Research Center (CRC) 880, which was held on December 17-18, 2019 in Braunschweig, Germany. The conference and the research presented here were partly supported by the CRC 880 on “Fundamentals of High Lift for Future Civil Aircraft,” funded by the DFG (German Research Foundation). The papers offer timely insights into high-lift technologies for short take-off and landing aircraft, with a special focus on aeroacoustics, efficient high-lift, flight dynamics, and aircraft design. .
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Unconventional Applications and New Approaches for Flow Control -- A Brief Overview on Past Research on Coanda Assisted STOL Transport Aircraft -- Actuation system for Effective Flow Control of an Internally Blown Coanda flap -- Friction Drag Reduction by Transversal Spanwise Traveling Waves of Ribbed Surface -- Manipulation of Leading-Edge Vortex Flow -- Semi-Analytical Approach to the Determination of Free-Edge Stress Fields in Cylindrically Curved Composite Laminated Shells -- Air Curtain Flow Control for Aerodynamic Noise Reduction -- Multibody Modelling of an UHBR Engine and its Influence on the Dynamics of an Aircraft Wing.

This book reports on the latest numerical and experimental findings in the field of high-lift technologies. It covers interdisciplinary research subjects relating to scientific computing, aerodynamics, aeroacoustics, material sciences, aircraft structures, and flight mechanics. The respective chapters are based on papers presented at the Final Symposium of the Collaborative Research Center (CRC) 880, which was held on December 17-18, 2019 in Braunschweig, Germany. The conference and the research presented here were partly supported by the CRC 880 on “Fundamentals of High Lift for Future Civil Aircraft,” funded by the DFG (German Research Foundation). The papers offer timely insights into high-lift technologies for short take-off and landing aircraft, with a special focus on aeroacoustics, efficient high-lift, flight dynamics, and aircraft design. .

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