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Animal Locomotion
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Swimming hydrodynamics: ten questions and the technical approaches needed to resolve them
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Chapter 2
A potential-flow, deformable-body model for fluid-structure interactions with compact vorticity: application to animal swimming measurements
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Chapter 3
Wake visualization of a heaving and pitching foil in a soap film
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Chapter 4
A harmonic model of hydrodynamic forces produced by a flapping fin
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Chapter 5
Flowfield measurements in the wake of a robotic lamprey
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Chapter 6
Impulse generated during unsteady maneuvering of swimming fish
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Chapter 7
Do trout swim better than eels? Challenges for estimating performance based on the wake of self-propelled bodies
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Chapter 8
Time resolved measurements of the flow generated by suction feeding fish
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Chapter 9
Powered control mechanisms contributing to dynamically stable swimming in porcupine puffers (Teleostei: Diodon holocanthus )
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Chapter 10
Fluid dynamics of self-propelled microorganisms, from individuals to concentrated populations
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Chapter 11
Swimming by microscopic organisms in ambient water flow
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Chapter 12
Water-walking devices
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Chapter 13
Flapping flexible fish
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Chapter 14
Vortex dynamics in the wake of a mechanical fish
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Chapter 15
Investigation of flow mechanism of a robotic fish swimming by using flow visualization synchronized with hydrodynamic force measurement
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Chapter 16
PIV-based investigations of animal flight
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Chapter 17
Wing–wake interaction reduces power consumption in insect tandem wings
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Chapter 18
Experimental investigation of some aspects of insect-like flapping flight aerodynamics for application to micro air vehicles
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Chapter 19
Design and development considerations for biologically inspired flapping-wing micro air vehicles
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Chapter 20
Smoke visualization of free-flying bumblebees indicates independent leading-edge vortices on each wing pair
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Chapter 21
The influence of airfoil kinematics on the formation of leading-edge vortices in bio-inspired flight
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Chapter 22
Wake patterns of the wings and tail of hovering hummingbirds
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Chapter 23
Characterization of vortical structures and loads based on time-resolved PIV for asymmetric hovering flapping flight
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Chapter 24
Unsteady fluid-structure interactions of membrane airfoils at low Reynolds numbers
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Chapter 25
Aerodynamic and functional consequences of wing compliance
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Chapter 26
Shallow and deep dynamic stall for flapping low Reynolds number airfoils
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Chapter 27
High-fidelity simulations of moving and flexible airfoils at low Reynolds numbers
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Chapter 28
High-speed stereo DPIV measurement of wakes of two bat species flying freely in a wind tunnel
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Chapter 29
Time-resolved wake structure and kinematics of bat flight
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Chapter 30
Experimental investigation of a flapping wing model
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Chapter 31
Aerodynamics of intermittent bounds in flying birds
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Chapter 32
Experimental analysis of the flow field over a novel owl based airfoil
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Chapter 33
The aerodynamic forces and pressure distribution of a revolving pigeon wing
Overall attention for this book and its chapters
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Mentioned by
twitter
2
X users
syllabi
1
institution with syllabi
Citations
dimensions_citation
46
Dimensions
Readers on
mendeley
500
Mendeley
Book overview
1. Swimming hydrodynamics: ten questions and the technical approaches needed to resolve them
2. A potential-flow, deformable-body model for fluid-structure interactions with compact vorticity: application to animal swimming measurements
3. Wake visualization of a heaving and pitching foil in a soap film
4. A harmonic model of hydrodynamic forces produced by a flapping fin
5. Flowfield measurements in the wake of a robotic lamprey
6. Impulse generated during unsteady maneuvering of swimming fish
7. Do trout swim better than eels? Challenges for estimating performance based on the wake of self-propelled bodies
8. Time resolved measurements of the flow generated by suction feeding fish
9. Powered control mechanisms contributing to dynamically stable swimming in porcupine puffers (Teleostei: Diodon holocanthus )
10. Fluid dynamics of self-propelled microorganisms, from individuals to concentrated populations
11. Swimming by microscopic organisms in ambient water flow
12. Water-walking devices
13. Flapping flexible fish
14. Vortex dynamics in the wake of a mechanical fish
15. Investigation of flow mechanism of a robotic fish swimming by using flow visualization synchronized with hydrodynamic force measurement
16. PIV-based investigations of animal flight
17. Wing–wake interaction reduces power consumption in insect tandem wings
18. Experimental investigation of some aspects of insect-like flapping flight aerodynamics for application to micro air vehicles
19. Design and development considerations for biologically inspired flapping-wing micro air vehicles
20. Smoke visualization of free-flying bumblebees indicates independent leading-edge vortices on each wing pair
21. The influence of airfoil kinematics on the formation of leading-edge vortices in bio-inspired flight
22. Wake patterns of the wings and tail of hovering hummingbirds
23. Characterization of vortical structures and loads based on time-resolved PIV for asymmetric hovering flapping flight
24. Unsteady fluid-structure interactions of membrane airfoils at low Reynolds numbers
25. Aerodynamic and functional consequences of wing compliance
26. Shallow and deep dynamic stall for flapping low Reynolds number airfoils
27. High-fidelity simulations of moving and flexible airfoils at low Reynolds numbers
28. High-speed stereo DPIV measurement of wakes of two bat species flying freely in a wind tunnel
29. Time-resolved wake structure and kinematics of bat flight
30. Experimental investigation of a flapping wing model
31. Aerodynamics of intermittent bounds in flying birds
32. Experimental analysis of the flow field over a novel owl based airfoil
33. The aerodynamic forces and pressure distribution of a revolving pigeon wing
Summary
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Syllabi
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This data is correct as of December 2015 - for more up to date information, please visit
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So far, Altmetric has seen this research output assigned in
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syllabi from
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Institution
Syllabi count
Course subject areas covered
University of Lincoln
2
Unknown