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Nature-Inspired Fluid Mechanics

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Cover of 'Nature-Inspired Fluid Mechanics'

Table of Contents

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    Book Overview
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    Chapter 1 Theoretical and Experimental Investigations of Amoeboid Movement and First Steps of Technical Realisation
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    Chapter 2 Swimming at Low Reynolds Number: From Sheets to the African Trypanosome
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    Chapter 3 African Trypanosomes as Model System for Functional Analyses of Microbial Motility
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    Chapter 4 Wake Structure and Vortex Development in Flight of Fruit Flies Using High-Speed Particle Image Velocimetry
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    Chapter 5 Experimental Quantification and Numerical Simulation of Unsteady Flow Conditions during Free Flight Maneuvers of Insects
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    Chapter 6 Barn Owl Flight
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    Chapter 7 Flow Field Analysis and Contour Detection of a Natural Owl Wing Using PIV Measurements
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    Chapter 8 Shape and Deformation Measurement of Free Flying Birds in Flapping Flight
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    Chapter 9 A Discussion on Vortex Growth and Saturation in Dragonfly-Inspired Flight
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    Chapter 10 Station Holding of Trout: Behavior, Physiology and Hydrodynamics
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    Chapter 11 Learning from Dolphin Skin – Active Transition Delay by Distributed Surface Actuation
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    Chapter 12 Development and Fabrication of Active Microstructures for Wave Control on Airfoils
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    Chapter 13 Learning from Dolphin Skin – Drag Reduction by Active Delay of Transition: Flow Control by Distributed Wall Actuation
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    Chapter 14 Linear-Stability Investigations for Flow-Control Experiments Related to Flow over Compliant Walls
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    Chapter 15 Analysis of the Relation between Skin Morphology and Local Flow Conditions for a Fast-Swimming Dolphin
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    Chapter 16 Hydrodynamic Perception in Pinnipeds
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    Chapter 17 On the Wake Flow Dynamics behind Harbor Seal Vibrissae – A Fluid Mechanical Explanation for an Extraordinary Capability
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    Chapter 18 Experimental and Numerical Investigation of the Unsteady Flow around a Human Underwater Undulating Swimmer
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    Chapter 19 Influence of Wave-Like Riblets on Turbulent Friction Drag
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    Chapter 20 Aerodynamics and Structural Mechanics of Flapping Flight with Elastic and Stiff Wings
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    Chapter 21 Nature-Inspired Porous Airfoils for Sound Reduction
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Mentioned by

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1 Wikipedia page

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mendeley
47 Mendeley
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Title
Nature-Inspired Fluid Mechanics
Published by
Springer Berlin Heidelberg, February 2012
DOI 10.1007/978-3-642-28302-4
ISBNs
978-3-64-228301-7, 978-3-64-228302-4
Editors

Tropea, Cameron, Bleckmann, Horst

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 47 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Japan 1 2%
Colombia 1 2%
Unknown 45 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 14 30%
Researcher 9 19%
Professor 4 9%
Student > Master 4 9%
Professor > Associate Professor 3 6%
Other 8 17%
Unknown 5 11%
Readers by discipline Count As %
Engineering 20 43%
Agricultural and Biological Sciences 7 15%
Computer Science 2 4%
Physics and Astronomy 2 4%
Medicine and Dentistry 2 4%
Other 6 13%
Unknown 8 17%