-
2
-
-
0033580976
-
Wing rotation and the aerodynamic basis of insect right
-
DOI 10.1126/science.284.5422.1954
-
Dickinson M H, Lehmann F O and Sane S P 1999 Wing rotation and the aerodynamic basis of insect flight Science 284 1954-60 (Pubitemid 29309436)
-
(1999)
Science
, vol.284
, Issue.5422
, pp. 1954-1960
-
-
Dickinson, M.H.1
Lehmann, F.-O.2
Sane, S.P.3
-
3
-
-
0035899367
-
Spanwise flow and the attachment of the leading-edge vortex on insect wings
-
DOI 10.1038/35089071
-
Birch J M and Dickinson M H 2001 Spanwise flow and attachment of leading-edge vortex on insect wing Nature 412 729-33 (Pubitemid 32771994)
-
(2001)
Nature
, vol.412
, Issue.6848
, pp. 729-733
-
-
Birch, J.M.1
Dickinson, M.H.2
-
4
-
-
0037069660
-
Unconventional lift-generating mechanisms in free-flying butterflies
-
DOI 10.1038/nature01223
-
Srygley R B and Thomas A L R 2002 Unconventional lift-generating mechanisms in free-flying butterflies Nature 420 660-4 (Pubitemid 36764495)
-
(2002)
Nature
, vol.420
, Issue.6916
, pp. 660-664
-
-
Srygley, R.B.1
Thomas, A.L.R.2
-
5
-
-
84862964639
-
Aerodynamic performance of a hovering hawkmoth with flexible wings: A computational approach
-
10.1098/rspb.2011.1023 0080-4630 B
-
Nakata T and Liu H 2011 Aerodynamic performance of a hovering hawkmoth with flexible wings: a computational approach Proc. R. Soc. B 279 722-31
-
(2011)
Proc. R. Soc.
, vol.279
, pp. 722-731
-
-
Nakata, T.1
Liu, H.2
-
6
-
-
70349304399
-
Details of insect wing design and deformation enhance aerodynamic function and flight efficiency
-
10.1126/science.1175928
-
Young J, Walker S M, Bomphrey R J, Taylor G K and Thomas A L R 2009 Details of insect wing design and deformation enhance aerodynamic function and flight efficiency Science 325 1549-52
-
(2009)
Science
, vol.325
, pp. 1549-1552
-
-
Young, J.1
Walker, S.M.2
Bomphrey, R.J.3
Taylor, G.K.4
Thomas, A.L.R.5
-
7
-
-
56549118563
-
Integrated modeling of insect flight: From morphology, kinematics to aerodynamics
-
10.1016/j.jcp.2008.09.020
-
Liu H 2009 Integrated modeling of insect flight: from morphology, kinematics to aerodynamics J. Comput. Phys. 228 439-59
-
(2009)
J. Comput. Phys.
, vol.228
, pp. 439-459
-
-
Liu, H.1
-
8
-
-
0034275765
-
Two dimensional mechanisms for insect hovering
-
10.1103/PhysRevLett.85.2216
-
Wang Z J 2000 Two dimensional mechanisms for insect hovering Phys. Rev. Lett. 85 2216-9
-
(2000)
Phys. Rev. Lett.
, vol.85
, pp. 2216-2219
-
-
Wang, Z.J.1
-
9
-
-
84870328927
-
Materials, structure, and dynamics of insect wings as bioinspiration for MAVs
-
10.1002/9780470686652.eae404
-
Combes S A 2010 Materials, structure, and dynamics of insect wings as bioinspiration for MAVs Encyclopedia of Aerospace Engineering ed R Blockley and W Shyy (New York: Wiley)
-
(2010)
Encyclopedia of Aerospace Engineering
-
-
Combes, S.A.1
-
10
-
-
58149250242
-
-
10.1242/jeb.016428
-
Vanella M, Fitzgerald T, Preidikman S, Balaras E and Balachandran B 2009 J. Exp. Biol. 212 95-105
-
(2009)
J. Exp. Biol.
, vol.212
, pp. 95-105
-
-
Vanella, M.1
Fitzgerald, T.2
Preidikman, S.3
Balaras, E.4
Balachandran, B.5
-
12
-
-
65249119271
-
Photogrammetric reconstruction of high-resolution surface topographies and deformable wing kinematics of tethered locusts and free-flying hoverflies
-
10.1098/rsif.2008.0245 1742-5689
-
Walker S M, Thomas A L R and Taylor G K 2009 Photogrammetric reconstruction of high-resolution surface topographies and deformable wing kinematics of tethered locusts and free-flying hoverflies J. R. Soc. Interface 6 351-66
-
(2009)
J. R. Soc. Interface
, vol.6
, pp. 351-366
-
-
Walker, S.M.1
Thomas, A.L.R.2
Taylor, G.K.3
-
13
-
-
77955926831
-
Recent progress in flapping wing aerodynamics and aeroelasticity
-
10.1016/j.paerosci.2010.01.001 0376-0421
-
Shyy W, Aono H, Chimakurthi S K, Trizila P, Kang C K, Cesnik C E S and Liu H 2010 Recent progress in flapping wing aerodynamics and aeroelasticity Prog. Aerosp. Sci. 46 284-327
-
(2010)
Prog. Aerosp. Sci.
, vol.46
, pp. 284-327
-
-
Shyy, W.1
Aono, H.2
Chimakurthi, S.K.3
Trizila, P.4
Kang, C.K.5
Cesnik, C.E.S.6
Liu, H.7
-
14
-
-
79955047678
-
Rather than resonance, flapping wing flyers may play on aerodynamics to improve performance
-
10.1073/pnas.1017910108 0027-8424
-
Ramananarivo S, Godoy-Diana R and Thiria B 2011 Rather than resonance, flapping wing flyers may play on aerodynamics to improve performance Proc. Natl Acad. Sci. 108 5964-9
-
(2011)
Proc. Natl Acad. Sci.
, vol.108
, pp. 5964-5969
-
-
Ramananarivo, S.1
Godoy-Diana, R.2
Thiria, B.3
-
15
-
-
79251571167
-
Effect of wing inertia on hovering performance of flexible flapping wings
-
10.1063/1.3499739 111902
-
Yin B and Luo H 2010 Effect of wing inertia on hovering performance of flexible flapping wings Phys. Fluids 22 111902
-
(2010)
Phys. Fluids
, vol.22
-
-
Yin, B.1
Luo, H.2
-
16
-
-
0033859583
-
The evolutionary physiology of animal flight: Paleobiological and present perspectives
-
DOI 10.1146/annurev.physiol.62.1.135
-
Dudley R 2000 The evolutionary physiology of animal flight: paleobiological and present perspectives Annu. Rev. Physiol. 62 135-55 (Pubitemid 30618259)
-
(2000)
Annual Review of Physiology
, vol.62
, pp. 135-155
-
-
Dudley, R.1
-
17
-
-
77952066991
-
Resonance of flexible flapping wings at low Reynolds number
-
10.1103/PhysRevE.81.056304 1063-651X E 056304
-
Masoud H and Alexeev A 2010 Resonance of flexible flapping wings at low Reynolds number Phys. Rev. E 81 056304
-
(2010)
Phys. Rev.
, vol.81
-
-
Masoud, H.1
Alexeev, A.2
-
18
-
-
77957170614
-
Locomotion of a passively flapping flat plate
-
10.1017/S0022112010002387
-
Zhang J, Liu N S and Lu X Y 2010 Locomotion of a passively flapping flat plate J. Fluid Mech. 659 43-68
-
(2010)
J. Fluid Mech.
, vol.659
, pp. 43-68
-
-
Zhang, J.1
Liu, N.S.2
Lu, X.Y.3
-
19
-
-
70350714614
-
Resonance and propulsion performance of a heaving flexible wing
-
10.1063/1.3177356 071902
-
Michelin S and Llewellyn Smith S G 2009 Resonance and propulsion performance of a heaving flexible wing Phys. Fluids 21 071902
-
(2009)
Phys. Fluids
, vol.21
-
-
Michelin, S.1
Llewellyn Smith, S.G.2
-
20
-
-
41549113755
-
On the natural frequencies and mode shapes of dragonfly wings
-
10.1016/j.jsv.2007.11.056
-
Chen J S, Chen J Y and Chou Y F 2008 On the natural frequencies and mode shapes of dragonfly wings J. Sound Vib. 313 643-54
-
(2008)
J. Sound Vib.
, vol.313
, pp. 643-654
-
-
Chen, J.S.1
Chen, J.Y.2
Chou, Y.F.3
-
21
-
-
0029282547
-
Two dimensional, non-contact measurement of the natural frequencies of dragonfly wings using a quadrant position sensor
-
10.1117/12.197080
-
Zeng L, Matsumoto H, Sunada S, Ohnuki T and Kawachi K 1995 Two dimensional, non-contact measurement of the natural frequencies of dragonfly wings using a quadrant position sensor Opt. Eng. 34 1226-31
-
(1995)
Opt. Eng.
, vol.34
, pp. 1226-1231
-
-
Zeng, L.1
Matsumoto, H.2
Sunada, S.3
Ohnuki, T.4
Kawachi, K.5
-
22
-
-
84985947150
-
A structural dynamic analysis of a Manduca sexta forewing
-
10.1260/1756-8293.2.3.119
-
Sims T W, Palazotto A N and Norris A 2010 A structural dynamic analysis of a Manduca sexta forewing Int. J. Micro Air Vehicles 2 119-40
-
(2010)
Int. J. Micro Air Vehicles
, vol.2
, pp. 119-140
-
-
Sims, T.W.1
Palazotto, A.N.2
Norris, A.3
-
23
-
-
0000133958
-
An optical tachometer for measurement of the wing-beat frequency of free-flying insects
-
0022-0949
-
Unwin D M and Ellington C P 1979 An optical tachometer for measurement of the wing-beat frequency of free-flying insects J. Exp. Biol. 82 377-8
-
(1979)
J. Exp. Biol.
, vol.82
, pp. 377-378
-
-
Unwin, D.M.1
Ellington, C.P.2
-
24
-
-
55949084399
-
Hindwings are unnecessary for flight but essential for execution of normal evasive flight in Lepidoptera
-
10.1073/pnas.0807223105 0027-8424
-
Jantzen B and Eisner T 2008 Hindwings are unnecessary for flight but essential for execution of normal evasive flight in Lepidoptera Proc. Natl Acad. Sci. 105 16636-40
-
(2008)
Proc. Natl Acad. Sci.
, vol.105
, pp. 16636-16640
-
-
Jantzen, B.1
Eisner, T.2
-
26
-
-
84858681584
-
Dynamic pitching of an elastic rectangular wing in hovering motion
-
10.1017/jfm.2011.543
-
Dai H, Luo H and Doyle J 2012 Dynamic pitching of an elastic rectangular wing in hovering motion J. Fluid Mech. 693 473-99
-
(2012)
J. Fluid Mech.
, vol.693
, pp. 473-499
-
-
Dai, H.1
Luo, H.2
Doyle, J.3
-
27
-
-
84872375639
-
Force production and asymmetric deformation of a flexible flapping wing in forward flight
-
10.1016/j.jfluidstructs.2012.07.006
-
Tian F B, Lu H X, Song J L and Lu X Y 2013 Force production and asymmetric deformation of a flexible flapping wing in forward flight J. Fluids Struct. 36 149-61
-
(2013)
J. Fluids Struct.
, vol.36
, pp. 149-161
-
-
Tian, F.B.1
Lu, H.X.2
Song, J.L.3
Lu, X.Y.4
-
29
-
-
0005148772
-
On the modal testing of microstructures: Its theoretical approach and experimental setup
-
10.1115/1.1320814
-
Chou Y F and Wang L C 2001 On the modal testing of microstructures: its theoretical approach and experimental setup J. Vib. Acoust. 123 104-9
-
(2001)
J. Vib. Acoust.
, vol.123
, pp. 104-109
-
-
Chou, Y.F.1
Wang, L.C.2
-
30
-
-
77953909397
-
The experimental evaluation of the dynamics of fluid-loaded microplates
-
10.1088/0960-1317/20/7/075034 0960-1317 075034
-
Wu Z, Wright M T and Ma X 2010 The experimental evaluation of the dynamics of fluid-loaded microplates J. Micromech. Microeng. 20 075034
-
(2010)
J. Micromech. Microeng.
, vol.20
, Issue.7
-
-
Wu, Z.1
Wright, M.T.2
Ma, X.3
-
31
-
-
84869104279
-
Static and dynamic characteristics of an artificial wing mimicking an Allomyrina dichotoma beetle's hind wing for flapping-wing micro air vehicles
-
10.1007/s11340-012-9611-7
-
Ha N S, Nguyen Q V, Goo N S and Park H C 2012 Static and dynamic characteristics of an artificial wing mimicking an Allomyrina dichotoma beetle's hind wing for flapping-wing micro air vehicles Exp. Mech. 52 1535-49
-
(2012)
Exp. Mech.
, vol.52
, pp. 1535-1549
-
-
Ha, N.S.1
Nguyen, Q.V.2
Goo, N.S.3
Park, H.C.4
-
32
-
-
85024599513
-
Large-amplitude free vibrations of a beam
-
10.1115/1.3627331 0021-8936
-
Wagner H 1965 Large-amplitude free vibrations of a beam J. Appl. Mech. 32 887-92
-
(1965)
J. Appl. Mech.
, vol.32
, pp. 887-892
-
-
Wagner, H.1
-
34
-
-
0002477083
-
Relationship between wing loading, wingbeat frequency and body mass in homopterous insects
-
Byrne D N, Buchmann S L and Spangler H G 1998 Relationship between wing loading, wingbeat frequency and body mass in homopterous insects J. Exp. Biol. 135 9-23
-
(1998)
J. Exp. Biol.
, vol.135
, pp. 9-23
-
-
Byrne, D.N.1
Buchmann, S.L.2
Spangler, H.G.3
-
36
-
-
0008307109
-
Tracheal gases, respiratory gas exchange, body temperature and flight in some tropical cicadas
-
0022-0949
-
Bartholomew G A and Barnhart M C 1984 Tracheal gases, respiratory gas exchange, body temperature and flight in some tropical cicadas J. Exp. Biol. 111 131-44
-
(1984)
J. Exp. Biol.
, vol.111
, pp. 131-144
-
-
Bartholomew, G.A.1
Barnhart, M.C.2
-
37
-
-
0000671061
-
The aerodynamics of hovering insect flight
-
10.1098/rstb.1984.0049 0962-8436 B
-
Ellington C P 1984 The aerodynamics of hovering insect flight Phil. Trans. R. Soc. B 305 1-181
-
(1984)
Phil. Trans. R. Soc.
, vol.305
, pp. 1-181
-
-
Ellington, C.P.1
-
38
-
-
82755177623
-
Anisotropy and non-homogeneity of an Allomyrina dichotoma beetle hind wing membrane
-
10.1088/1748-3182/6/4/046003 1748-3190 046003
-
Ha N S, Jin T L, Goo N S and Park H C 2011 Anisotropy and non-homogeneity of an Allomyrina dichotoma beetle hind wing membrane Bioinspir. Biomim. 6 046003
-
(2011)
Bioinspir. Biomim.
, vol.6
, Issue.4
-
-
Ha, N.S.1
Jin, T.L.2
Goo, N.S.3
Park, H.C.4
-
39
-
-
0030778601
-
Dragonfly flight: I gliding flight and steady-state aerodynamic forces
-
Wakeling J M and Ellington C P 1997 Dragonfly flight I. Gliding flight and steady-state aerodynamic forces J. Exp. Biol. 200 543-56 (Pubitemid 27502970)
-
(1997)
Journal of Experimental Biology
, vol.200
, Issue.3
, pp. 543-556
-
-
Wakeling, J.M.1
Ellington, C.P.2
-
40
-
-
2642699528
-
Wing-beat frequencies, wing-areas, masses of flying insects, and hummingbirds
-
10.1016/0022-5193(83)90394-6
-
Corben H C 1983 Wing-beat frequencies, wing-areas, masses of flying insects, and hummingbirds J. Theor. Biol. 102 611-23
-
(1983)
J. Theor. Biol.
, vol.102
, pp. 611-623
-
-
Corben, H.C.1
-
41
-
-
0011688373
-
Preparation for flight by hawk-moths
-
0022-0949
-
Dorsett D A 1962 Preparation for flight by hawk-moths J. Exp. Biol. 39 579-88
-
(1962)
J. Exp. Biol.
, vol.39
, pp. 579-588
-
-
Dorsett, D.A.1
-
42
-
-
0004884080
-
A field study of flight temperatures in moths in relation to body weight and wing loading
-
0022-0949
-
Bartholomew G A and Heinrich B 1973 A field study of flight temperatures in moths in relation to body weight and wing loading J. Exp. Biol. 58 123-35
-
(1973)
J. Exp. Biol.
, vol.58
, pp. 123-135
-
-
Bartholomew, G.A.1
Heinrich, B.2
-
43
-
-
0032493460
-
The relationship between dragonfly wing structure and torsional deformation
-
DOI 10.1006/jtbi.1998.0678
-
Sunada S, Zeng L and Kawachi K 1998 The relationship between dragonfly wing structure and torsional deformation J. Theor. Biol. 193 39-45 (Pubitemid 28379180)
-
(1998)
Journal of Theoretical Biology
, vol.193
, Issue.1
, pp. 39-45
-
-
Sunada, S.1
Zeng, L.2
Kawachi, K.3
-
45
-
-
0041739264
-
Flexural stiffness in insect wings I. Scaling and the influence of wing venation
-
DOI 10.1242/jeb.00523
-
Combes S A and Daniel T L 2003 Flexural stiffness in insect wings I. Scaling and the influence of wing venation J. Exp. Biol. 206 2979-87 (Pubitemid 37073834)
-
(2003)
Journal of Experimental Biology
, vol.206
, Issue.17
, pp. 2979-2987
-
-
Combes, S.A.1
Daniel, T.L.2
-
46
-
-
0008824587
-
Flexural stiffness patterns of butterfly wings (Papilionoidea)
-
0022-4324
-
Steppan S J 2000 Flexural stiffness patterns of butterfly wings (Papilionoidea) J. Res. Lepid. 35 61-77
-
(2000)
J. Res. Lepid.
, vol.35
, pp. 61-77
-
-
Steppan, S.J.1
-
47
-
-
84855787971
-
Effects of flexibility on the aerodynamic performance of flapping wings
-
10.1017/jfm.2011.428
-
Kang C K, Aono H, Cesnik C E S and Shyy W 2011 Effects of flexibility on the aerodynamic performance of flapping wings J. Fluid Mech. 689 32-74
-
(2011)
J. Fluid Mech.
, vol.689
, pp. 32-74
-
-
Kang, C.K.1
Aono, H.2
Cesnik, C.E.S.3
Shyy, W.4
-
48
-
-
77954832126
-
How wing compliance drives the efficiency of self-propelled flapping flyers
-
10.1103/PhysRevE.82.015303 1063-651X E 015303
-
Thiria B and Godoy-Diana R 2010 How wing compliance drives the efficiency of self-propelled flapping flyers Phys. Rev. E 82 015303
-
(2010)
Phys. Rev.
, vol.82
-
-
Thiria, B.1
Godoy-Diana, R.2
-
49
-
-
0031281521
-
The mechanics of flight in the hawk moth Manduca sexta
-
Willmott P W and Ellington C P 1997 The mechanics of flight in the hawk moth Manduca sexta J Exp. Biol. 200 2705-22
-
(1997)
J Exp. Biol.
, vol.200
, pp. 2705-2722
-
-
Willmott, P.W.1
Ellington, C.P.2
-
50
-
-
84859916952
-
Conceptual design of flapping-wing micro air vehicles
-
10.1088/1748-3182/7/3/036001 1748-3190 036001
-
Whitney J P and Wood R J 2012 Conceptual design of flapping-wing micro air vehicles Bioinspir. Biomim. 7 036001
-
(2012)
Bioinspir. Biomim.
, vol.7
, Issue.3
-
-
Whitney, J.P.1
Wood, R.J.2
-
51
-
-
84455207808
-
System identification and linear time-invariant modeling of an insect-sized flapping-wing micro air vehicle
-
Benjamin M F, Nestor O P A and Robert J W 2011 System identification and linear time-invariant modeling of an insect-sized flapping-wing micro air vehicle Proc. IEEE/RSJ Int. Conf. on Intelligent Robots and Systems (San Francisco, CA, USA, 25-30 Sept.) (Piscataway, NJ: IEEE) pp 1107-14
-
(2011)
Proc. IEEE/RSJ Int. Conf. on Intelligent Robots and Systems
, pp. 1107-1114
-
-
Benjamin, M.F.1
Nestor, O.P.A.2
Robert, J.W.3
-
52
-
-
79551662206
-
Modification of a four-bar linkage system for a higher optimal flapping frequency
-
10.1177/1045389X10392611
-
Truong Q T, Nguyen Q V, Park H C, Byun D Y and Goo N S 2010 Modification of a four-bar linkage system for a higher optimal flapping frequency J. Intell. Mater. Syst. Struct. 22 59-66
-
(2010)
J. Intell. Mater. Syst. Struct.
, vol.22
, pp. 59-66
-
-
Truong, Q.T.1
Nguyen, Q.V.2
Park, H.C.3
Byun, D.Y.4
Goo, N.S.5
|