A Numerical Tool for the Analysis of Bioinspired Aquatic Locomotion: SpringerBriefs in Applied Sciences and Technology
Autor Giovanni Bianchien Limba Engleză Paperback – 24 mai 2023
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Specificații
ISBN-13: 9783031305474
ISBN-10: 3031305477
Pagini: 76
Ilustrații: XI, 76 p. 56 illus., 54 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.16 kg
Ediția:1st ed. 2023
Editura: Springer Nature Switzerland
Colecția Springer
Seriile SpringerBriefs in Applied Sciences and Technology, PoliMI SpringerBriefs
Locul publicării:Cham, Switzerland
ISBN-10: 3031305477
Pagini: 76
Ilustrații: XI, 76 p. 56 illus., 54 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.16 kg
Ediția:1st ed. 2023
Editura: Springer Nature Switzerland
Colecția Springer
Seriile SpringerBriefs in Applied Sciences and Technology, PoliMI SpringerBriefs
Locul publicării:Cham, Switzerland
Cuprins
Introduction and state of the art.- Hydrodynamics of swimming.- Model of cownose ray locomotion.- Wake structure and swimming performance of the cownose ray.
Textul de pe ultima copertă
This book presents a novel method for the numerical simulation of swimming animals. It includes a review of the hydrodynamics of swimming, a description of the CFD model adopted, and a description of the results obtained by applying this model to the cownose ray. This method is developed for the open-source software OpenFOAM and relies on an overset mesh. A custom library is added to the solver to include the equations of the kinematics of the animal under investigation, combining the deformation of the fish fins with the computed displacement and rotation of the animal's body. The presented method helps investigate the dynamics of any animal moving in a fluid, provided that its kinematics is known, and in this work, it is applied to investigate the hydrodynamics of a cownose ray. This book is intended for researchers and engineers who aim to deeply understand the hydrodynamics of fish swimming and to design bioinspired autonomous underwater vehicles or novel propulsion systems.
Caracteristici
Provides a novel method to simulate animal swimming Fosters the development of autonomous underwater vehicles Showcases a bioinspired approach to the locomotion of robots