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Titlebook: A Numerical Tool for the Analysis of Bioinspired Aquatic Locomotion; Giovanni Bianchi Book 2023 The Editor(s) (if applicable) and The Auth

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,Wake Structure and Swimming Performance of the Cownose Ray,ion in seine soziologische Perspektive zu integrieren und diese mit der Neuauflage von . (1939/1969), seiner intensiv überarbeiteten Habilitationsschrift . (1933/1969) und mit . (1970) auf ein höheres Syntheseniveau zu heben. Seine innovative und nach wie vor wenig bekannte Charismatheorie bietet au
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2191-530X and the hydrodynamics of fish swimming and to design bioinspired autonomous underwater vehicles or novel propulsion systems..978-3-031-30547-4978-3-031-30548-1Series ISSN 2191-530X Series E-ISSN 2191-5318
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Tangent Vectors in Rn as Derivationshuman life, and their applications range from search and rescue to scientific research and military operations. However, despite recent progress, AUVs still have worse swimming capabilities than fishes. The locomotion strategies of fishes have achieved outstanding swimming performances because they
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Bump Functions and Partitions of Unityrface is presented, and the influence of different kinematic parameters on fin movement is analyzed. Previous numerical studies about batoid swimming are briefly described, and the numerical implementation of the CFD model of cownose ray swimming is presented.
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Smooth Functions on a Euclidean Spacerface is presented, and the influence of different kinematic parameters on fin movement is analyzed. The numerical implementation of the CFD model of cownose ray swimming is presented, and finally, the results are analyzed, highlighting how the swimming performances and the wake structure change acc
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