Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles /
Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles presents research on the implementation of a flexible multi-body dynamic representation of a flapping wing ornithopter that considers aero-elasticity. This effort brings advances in the understanding of flapping wing...
Main Authors: | , , |
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Format: | software, multimedia |
Language: | eng |
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London : Academic Press,
2018
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Subjects: | |
Online Access: | https://www.sciencedirect.com/book/9780128141366 |
_version_ | 1796765271266951168 |
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author | Altenbuchner, Cornelia, author 614014 Hubbard, James E. (James Edward), 1951-, author 575871 ScienceDirect (Online service) 7722 |
author_facet | Altenbuchner, Cornelia, author 614014 Hubbard, James E. (James Edward), 1951-, author 575871 ScienceDirect (Online service) 7722 |
author_sort | Altenbuchner, Cornelia, author 614014 |
collection | OCEAN |
description | Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles presents research on the implementation of a flexible multi-body dynamic representation of a flapping wing ornithopter that considers aero-elasticity. This effort brings advances in the understanding of flapping wing flight physics and dynamics that ultimately leads to an improvement in the performance of such flight vehicles, thus reaching their high performance potential. In using this model, it is necessary to reduce body accelerations and forces of an ornithopter vehicle, as well as to improve the aerodynamic performance and enhance flight kinematics and forces which are the design optimization objectives. This book is a useful reference for postgraduates in mechanical engineering and related areas, as well as researchers in the field of multibody dynamics. |
first_indexed | 2024-03-05T17:21:57Z |
format | software, multimedia |
id | KOHA-OAI-TEST:607130 |
institution | Universiti Teknologi Malaysia - OCEAN |
language | eng |
last_indexed | 2024-03-05T17:21:57Z |
publishDate | 2018 |
publisher | London : Academic Press, |
record_format | dspace |
spelling | KOHA-OAI-TEST:6071302023-07-30T04:23:41ZModern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / Altenbuchner, Cornelia, author 614014 Hubbard, James E. (James Edward), 1951-, author 575871 ScienceDirect (Online service) 7722 software, multimedia Electronic books 631902 London : Academic Press,2018©2018engModern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles presents research on the implementation of a flexible multi-body dynamic representation of a flapping wing ornithopter that considers aero-elasticity. This effort brings advances in the understanding of flapping wing flight physics and dynamics that ultimately leads to an improvement in the performance of such flight vehicles, thus reaching their high performance potential. In using this model, it is necessary to reduce body accelerations and forces of an ornithopter vehicle, as well as to improve the aerodynamic performance and enhance flight kinematics and forces which are the design optimization objectives. This book is a useful reference for postgraduates in mechanical engineering and related areas, as well as researchers in the field of multibody dynamics.Includes index.Chapter One - Bioinspired Flight Robotics Systems -- Chapter Two - Flexible Multi-Body Dynamics Modeling Methodology's for Flapping Wing Vehicles -- Chapter Three - Bioinspired Flapping Wing Test Platform Used to Implement Modern Modeling Methodology -- Chapter Four - Flexible Multi-Body Dynamics Modeling Methodology Implementation Avian Scale Flapping Wing Flyer -- Chapter Five - Aerodynamics Modeling for Flexible Multi-Body Dynamics Modeling Methodology Implementation Avian Scale Flapping Wing Flyer -- Chapter Six - Results of the Modeling Methodology Implementation and Flight Simulation -- Chapter Seven - Concluding Remarks About Modern Modeling Methodology Implementation and Flight Physics of Avian Scale Flight Robotics Systems -- IndexModern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles presents research on the implementation of a flexible multi-body dynamic representation of a flapping wing ornithopter that considers aero-elasticity. This effort brings advances in the understanding of flapping wing flight physics and dynamics that ultimately leads to an improvement in the performance of such flight vehicles, thus reaching their high performance potential. In using this model, it is necessary to reduce body accelerations and forces of an ornithopter vehicle, as well as to improve the aerodynamic performance and enhance flight kinematics and forces which are the design optimization objectives. This book is a useful reference for postgraduates in mechanical engineering and related areas, as well as researchers in the field of multibody dynamics.Aerospace engineeringAirplanesWings (Anatomy)Vehicles, Remotely pilotedhttps://www.sciencedirect.com/book/9780128141366URN:ISBN:9780128141366Remote access restricted to users with a valid UTM ID via VPN. |
spellingShingle | Aerospace engineering Airplanes Wings (Anatomy) Vehicles, Remotely piloted Altenbuchner, Cornelia, author 614014 Hubbard, James E. (James Edward), 1951-, author 575871 ScienceDirect (Online service) 7722 Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / |
title | Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / |
title_full | Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / |
title_fullStr | Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / |
title_full_unstemmed | Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / |
title_short | Modern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles / |
title_sort | modern flexible multi body dynamics modeling methodology for flapping wing vehicles |
topic | Aerospace engineering Airplanes Wings (Anatomy) Vehicles, Remotely piloted |
url | https://www.sciencedirect.com/book/9780128141366 |
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