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Handbuch der Physik, VIII/1, Springer-Verlag, Berlin Heidelberg New York 1–124.. Dynamics and Structure of Vortices, Springer-Verlag, Berlin Heidelberg New York 40–123.. 1978 Three-dimen

Trang 1

Newell A.C (1985) Solitons in Mathematics and Physics CBMS-NSF Reg.

Conf Ser in Appl Math 48 Society for Industrial and Applied Math.,

Philadelphia

Newton P.K (2001) The N-Vortex Problem Springer-Verlag, Berlin

Heidel-berg New York

Nielsen J.N (1960) Missile Aerodynamics McGraw-Hill, Inc, New York.

Nishioka M., Asai M (1985) Some observations of the subcritical transition

in plane Poiseuille flow J Fluid Mech 150: 441–450.

Nitsche M., Krasny R (1994) A numerical study of vortex ring formation at

the edge of a circular tube J Fluid Mech 276: 139–161.

Noack B.R (1999) On the flow around a circular cylinder Part I: laminar and

transitional regime; Part II: turbulent regime Z Angew Math Mech 79:

S223–S226; S227–S230

Noble B., Daniel J.W (1988) Applied Linear Algebra Prentice Hall, NJ.

Noca F., Shields D., Jeon D (1999) A comparison of methods for evaluatingtime-dependent fluid dynamic forces on bodies, using only velocity fields

and their derivatives J Fluids Structures, 13: 551–578.

Nolan D.S., Farrell B.F (1999a) Generalized stability analyses of asymmetricdisturbances in one- and two-celled vortices maintained by radial inflow

J Atoms Sci 56: 1282–1307.

Nolan D.S., Farrell B.F (1999b) The structure and dynamics of tornado-like

vortices J Atmos Sci 56: 2908–2936.

Nolan D.S., Farrell B.F (1999c) The intensification of two-dimensional

swirling flows by stochastic asymmetric forcing J Atmos Sci 56: 3937–

3962

Nolan D.S., Montgomery M.T (2000) The algebraic growth of wavenumber

one disturbances in hurricane-like vortices J Atmos Sci 57: 3514.

Norberg C (1994) An experimental investigation of the flow around a circular

cylinder: influence of aspect ratio J Fluid Mech 258: 287–316.

Norbury J (1973) A family of steady vortex rings J Fluid Mech 57: 417–

431

Novikov E.A (1975) Dynamics and statistics of a system of vortices Soviet

Phys JETP 41(5): 937–943.

Nuijten J., Velasco Fuentes O.U (1994) Merging of cyclonic vortices in a

rotating fluid In: van Heijst G.J.F (ed.) Modelling of Oceanic Vortices,

Ohring S., Lugt H.J (1991) Interaction of a viscous vortex pair with a free

surface J Fluid Mech 227: 47–70.

Oleddraru C., Sellier A (2002) Viscous effects in the absolute-convective

instability of the Batchelor vortex J Fluid Mech 459: 371–396.

Trang 2

Olendraru C., Sellior A., Rossi M., Huerre P (1999) Inviscid instability ofthe Batchelor vortex: absolute-convective transition and spatial branches.

Phys Fluids 11(7): 1805–1820.

Olendraru C., Sellier A., Rossi M., Huerre P (1996) Absolute/convective

instability of the Batchelor vortex C R Acad Sci Paris, IIb: 153–159.

Olsen J.H (1971) Results of trailing vortex studies in lowing tank In: Olsen

J.H., Goldburg A., Rogers M (eds.) Aircraft Wake Turbulence and Its tection, Prenum, New York.

De-Orlandi P (1990) Vortex dipole rebound fom a wall Phys Fluids, A2: 1429–36.

Orlandi P., Jim´enez J (1994) On the generation of wall friction Phys Fluids,

6: 634–641.

Orszag S.A., Patera A.T (1983) Secondary instability of wall-bounded shear

flows J Fluid Mech 128: 347–385.

Oseen C.W (1910) Ueber die Stokes’sche Formel, und ber eine verwandte

Aufgabe in der Hydrodynamik Ark Math Astronom Fys 6: 29

Oseen C.W (1912) Hydromechanik Ark F Math Astrom Och Fys 7: 82.

Oshima Y., Asaka S (1977) Interaction of two vortex rings along parallel axes

in air J Phys Soc Jpn, 42: 708–713.

Oshima Y., Izutsu N (1988) Cross-linking of two vortex rings Phys Fluids,

31: 2401.

Oster D., Wygnanski I (1982) The forced mixing layer between parallel

streams J Fluid Mech 123: 9 1.

Oswatitsch K (1957) Die Abl¨osungsbedingung von Grenzschichten IUTAM Symposium on Boundary Layer Research Freiburg.

Oswatitsch K (1959) Physikalishe Grundlagen der Str¨omungslehre In: Fl¨ugge

S (ed.) Handbuch der Physik, VIII/1, Springer-Verlag, Berlin Heidelberg

New York 1–124

Overman E.A., Zabusky N.J (1982) Evolution and merger of isolated vortex

structures Phys Fluids, 25: 1297–1305.

Padhye N., Morrison P.J (1996) Fluid element relabeling symmetry Phys.

Lett A219: 287–292.

Padula M (1988) Energy instability methods: An application to Burgers

equa-tion In: Galdi G.P., Straughan B (eds.) Proceeding of Meeting Energy

Stability and Convection, Pitman Research Notes in Mathematics, 168.

Pagan D., Solignac J.L (1986) Etude exp´erimentale del´eclatement dun billon engendr´e par une aile delta, La Recherche A´ erospatiale (196–3),197–

tour-219 (French and English editions)

Panton R.L (1968) The transient for Stokes’ oscillating plate: a solution in

terms of tabulated function J Fluid Mech 31: 819–825.

Panton R.L (1984) Incompressible Flow Wiley, New York.

Peace A.J., Riley N (1983) A viscous vortex pair in ground effect J Fluid

Mech 129: 409–426.

Peckham D.H., Atkison S.A (1957) Preliminary results of low speed wind

tunnel test on a gothic wing of aspect ratio 1.0 ARC, CP 508.

Pedlosky J (1985) Instability of heton clouds J Atmos Sci 42:1477–1486.

Trang 3

Pedlosky J (1987) Geophysical Fluid Dynamics Springer-Verlag, Berlin

Hei-delber New York

Peridier V.J., Smith F.T., Walker J.D.A (1991) Vortex-induced layer separation Part I The limit problem Re → ∞ J Fluid Mech 232:

boundary-99–131

Perry A.E., Chong M.S (1986) A series expansion study of the Stokes equations with applications to three-dimensional separation pat-

Navier-terns J Fluid Mech 173 207–223.

Perry A.E., Chong M.S., Lim T.T (1982) The vortex-shedding process behind

two-dimensional bluff bodies J Fluid Mech 116: 77–90.

Phillips H.B (1933) Vector Analysis, Wiley, New York.

Picone J.M., Boris J.P (1983) Vorticity generation by asymmetric energy

deposition in a gaseous medium Phys Fluids, 26: 365–382.

Picone J.M., Boris J.P., Greig J.R., Raleigh M.R., Fernsler R.F (1981)

Con-vective cooling of lightning channels J Atmos Sci 38: 2056–2062.

Pierrehumbert R.T., Widnall S.E (1981) Thestructure of organized vortices

in a free shear layer J Fluid Mech 102: 301–313.

Plaschko P (1979) Helical instability of slowly divergent jets J.Fluid Mech.

92: 209.

Platzman G.W (1968) The Rossby wave Q.J R Meteorol Sci 94: 225–

246

Poincar´e H (1882) Les points singuliers des ´equations diff´erentielles C.R.

Acad Sci Paries, 94: 416–418.

Powell A (1961) Vortex Sound (Rept No 61–70), Department of Engineering,

University of California, Los Angeles

Powell A (1964) Theory of vortex sound J Acoust Soc Am 36: 177–195.

Powell A (1994) Vortex sound theory: direct proof of the equivalence of

“vor-tex force” and “vorticity-alone” formulations J Acoust Soc Am 97: 1534–

1537

Powell, A (1995) Why do vortices generate sound? J Fluid Eng 117: 252–

260

Pozrikidis C (2000) Theoretical and computational aspects of the self-induced

motion of three-dimensional vortex sheets J Fluid Mech 425: 335–366.

Pradeep D., Hussain F (2000) Core dynamics of a coherent structure: a typical physical-space cascade mechanism In: Hunt J.C.R., Vassilicos J.C

proto-(eds.) Turbulence Structure and Vortex Dynamics Cambridge University

Prandtl L., Tietjens O.G (1934) Applied Hydro-and Aeromechanics.

Springer-Verlag, Berlin Heidelberg New York

Praturi A.K., Brodkey R.S (1978) A stereoscopic visual study of coherent

structures in turbulent shear flow J.Fluid Mech 89: 251–272.

Trang 4

Pridmore-Brown D.C (1958) Sound propagation in a fluid flowing through

an attenuating duct J Fluid Mech 4: 393–406.

Prigogine I (1980) From being to becoming, Freeman, San fransixo, CA.

Prochazka A., Pullin D.I (1998) Structure and stability of non-symmetric

Burgers vortices J Fluid Mech 363: 199–228.

Proudman J (1916) On the motion of solids in a liquid possessing vorticity,

Proc R Soc A92: 408–423.

Proudman I., Pearson J.R.A (1957) Expansions at small Reynolds numbers

for the flow past a sphere and a circular cylinder J Fluid Mech 2: 237–262.

Pruppacher H.R., Steinberger E.H (1968) An experimental determination of

the drag on a sphere at low Reynolds numbers J Appl Phys 39: 4129–

Randall J.D., Leibovich S (1973) The critical state: a trapped wave model of

vortex breakdown J Fluid Mech 53: 495–515.

Rayleigh L (1880) On the stability or instability of certain fluid motions

Proc London Math Soc 11: 57–70.

Rayleigh L (1916) On the dynamics of revoling fluids Prod R Soc London,

A93: 148–154 1

Reddy S.C., Schmid P.J., Henningson D.S (1993) Pseudospectra of the

orr-sommerfeld operator SIAM J Appl Math 53(1):15–47.

Reed R.J., Sanders F (1953) An investigation of the development of a

mid-tropospheric frontal zone and its associated vorticity field J Met 10: 338–

Laminar-Trubulent Transition, IUTAM Symposium, 1999 Sedona, Springer,

Berlin Heidelberg New York

Reznik G.M (1992) Dynamics of singular vortices on the beta-plane J Fluid

Mech 240: 405–432.

Rhines P.B (1979) Geostrophic turbulence Ann Rev Fluid Mech 11: 401–

441

Ricca R.L (1992) Physical interpretation of certain invariants for vortex

fila-ment motion under LIA Phys Fluids, A4: 938–944.

Ricca R.L., Berger M.A (1996) Topological ideas and fluid mechanics Phys.

Today 49(12) 28–34.

Richardson L.F (1922) Weather Prediction by Numerical Process, Cambridge

University Press, Cambridge

Riley J.J., Metcalfe R.W (1980) Direct numerical simulation of a perturbed

turbulent mixing layer AIAA 80–0274.

Trang 5

Rist U., Fasel H (1995) Direct numerical simulation of controlled transition

in a flat-plate boundary layer J.Fluid Mech 298: 211–248.

Rist U., Kachanov Y.S (1995) Numerical and experimental investigation of

the K-regime of boundary-layer transition In: Koboyashi R (ed.) Turbulent Transition, IUTAM Symposium, 1994 Sendai, Springer, Japan.

Laminar-Rivera M.K., Vorobieff P., Ecke R.E (1998) Phys Rev Lett 81: 1417.

Robinson S.K (1991a) The kinematics of turbulent boundary layer structure

NASA Tech Mem 103859.

Robinson S.K (1991b) Coherent motions in the turbulent boundary layer

Annu Rev Fluid Mech 23: 601–639.

Rockwell D (1998) Vortex-body interactions Annu Rev Fluid Mech 30:

199–229

Rosenhead L (1931) The formation of vortices from a surface of discontinuity

Proc R Soc A134: 170–192.

Rosenhead L (1963) Laminar Boundary Layer Dover, Mineole, New York.

Roshko A (1954a) On the development of turbulent wakes from vortex streets

NACA TN 1191.

Roshko A (1954b) On the drag and shedding frequency of two-dimensional

bluff bodies NACA TN 3169.

Roshko A (1955) On the wake and drag of bluff bodies J Aeronaut Sci.

22: 124.

Roshko A (1961) Experiments on the flow past a circular cylinder at very

high Reynolds numbers J Fluid Mech 10: 345–356.

Roshko A (1993) Perspectives on bluff body aerodynamics J Wind Ind.

Aerodyn 49: 70–100.

Roshko A (2000) On the problem of turbulence Curr Sci 79(6):834–839.

Rossby C.G (1936) Dynamics of steady ocean currents in the light of

exper-imental fluid mechanics MIT & Woods Hole Oceanogr Inst Papers in

Phys Oceanogr Met 5(1): 1–43.

Rossby C.G (1940) Planetary flow patterns in the atmosphere Q.J R.

Meteorol Soc 66, Suppl 68–97.

Rossby C.G (1948) On displacements and intensity changes of atmospheric

vortices J Mar Res 7: 175–187.

Rossi, M (2000) Of vortices and vortical layers: An overview In: Maurel A.,

Petitjeans P (eds.) Dynamics and Structure of Vortices, Springer-Verlag,

Berlin Heidelberg New York 40–123

Rott N (1956) Unsteady viscous flow in the vicinity of a stagnation point Q.

Appl Math 13: 444–451.

Rott N (1958) On the viscous core of a line vortex ZAMP 9: 543–553.

Rouchon P (1991) On the Arnold stability criterion for steady-state flows of

an ideal fluid Eur J Mech B/Fluids, 10(6): 651–661.

Ruith M.R., Chen P., Meiburg E., Maxworth T (2003) Three-diemnsionalvortex breakdown in swirling jets and wakes: direct numerical simulation

J Fluid Mech 486: 331–378.

Trang 6

Rusak Z., Wang S., Whiting C.H (1998) The evolution of a vortex in a pipe

to axisymmetric vortex breakdown J Fluid Mech 366: 211–237.

Sadovskii V.S (1971) Vortex regions in a potential stream with a jump of

Bernoulli constant at the boundary Prikl Matem Mekh 35: 773–779; lish translation: Appl Math Mech 35: 729–735.

Eng-Sadun L., Vishik M (1993) The spectrum of the second variation of the energy

for an ideal incompressible fluid Phys Lett A182: 394–398.

Saffman P.G (1970) The velocity of viscous vortex rings Stud Appl Math.

49: 371–380.

Saffman P.G (1972) The motion of a vortex pair in a stratified atmosphere

Stud Appl Math 51: 107–119.

Saffman P.G (1979) The approach of a vortex pair to a plane surface in invicid

fluid J Fluid Mech 92: 497–503

Saffman P.G (1981) Dynamics of vorticity J Fluid Mech 106: 49–58.

Saffman P.G (1991) Approach of a vortex pair to a rigid free surface in viscous

fluid Phys Fluids, A3(5): 984–985.

Saffman P.G (1992) Vortex Dynamics Canbridge University Press,

Cam-bridge

Saffman P.G., Baker G.R (1979) Vortex interactions Ann Rev Fluid Mech.

11: 95–122.

Saffman P.G., Szeto R (1981) Structure of a linear array of uniform vortices

Stud App Math 65: 223–248.

Saffman P.G., Tanveer S (1984) Prandtl-Batchelor flow past a flat plate with

a forward-facing flap J Fluid Mech 143: 351–365.

Sakajo T (2001) Numerical computation of a three-dimensional vortex sheet

in a swirl flow Fluid Dyn Res 28: 423–448.

Salmon R (1988) Hamiltonian fluid mechanics Ann Rev Fluid Mech 20:

225–256

Salmon R (1998) Lecture on Geophysical Fluid Dynamics Oxford University

Press, New York

Saric W.S (1994) G¨ortler vortices Annu Rev Fluid Mech 26: 379–409.

Saric W.S., Benmalek A (1991) G¨ortler vortices with periodic curvature In:

Boundary Layer Stability and Transition to Turbulence, ASME-FED 114:

37–42

Saric W.S., Nayfeh A.H (1975) Nonparallel stability of boundary layer flows

Phys Fluids 18: 945–950.

Saric W.S., Thomas A.S.W (1983) Experiments on the subharmonic route

to turbulence in boundarys In: Proc IUTAM Symp on Turbulence and Chaotic Phenomena in Fluids, Kyoto, Japan.

Sarpkaya T (1971) On stationary and travelling vortex breakdown J Fluid

Mech 45: 545–559.

Sarpkaya T (1983) Trailing vortices in homogeneous and density stratified

media J Fluid Mech 136: 85–109.

Sarpkaya T (1992) Brief reviews of some time-dependent flows J Fluid Eng.

114: 283–298.

Trang 7

Sarpkaya T (1995) Turbulent vortex breakdown Phys Fluids, 7: 2301–

2303

Sarpkaya T (1996) Vorticity, free-surface, and surfactant Annu Rev Fluid

Mech 28: 83–128.

Sarpkaya T., Suthon P (1991) Interaction of a vortex couple with a free

surface Exp Fluids 11: 205–217.

Schatzle P.R (1987) An experimental study of fusion of vortex rings PhD Thesis Calif Inst Technol.

Schewe G (1983) On the force fluctuations acting on a circular cylinder in

crossflow from subcritical up to transcritical Reynolds numbers J Fluid

Mech 133: 265–285.

Schlichting H (1978) Boundary Layer Theory McGraw-Hill, New York Schmid P.J., Henningson D.S (2001) Stability and Transition in Shear Flows.

Springer-Verlag, Berlin Heidelberg New York

Schmid P.J., Henningson D.S., Khorranmi M.R., Malik M.R (1993) A study

of eigenvalue sensitivity for hydrodynamic stability operators Theor

Com-put Fluid Dyn 4: 227–240.

Schoppa W., Hussain F (2002) Coherent structure generation in near-wall

turbulence J Fluid Mech 453: 57–108.

Sears W.R (1956) Some recent development in airfoil theory J Aero Sci.

23: 490–499.

Sears W.R., Telionis D.P (1975) Boundary-layer separation in unsteady flow

SIAM J Appl Math 28: 215–235.

Seifert A., Bachar T., Koss D., Shepshelovich M., Wygnanski I (1993)

Os-cillatory blowing: A tool to delay boundary-layer separation, AIAA J 31:

2052–2060

Seifert A., Pack L.G (1999) Oscillatory excitation of unsteady compressible

flows over airfoils at high Reynolds number AIAA 99–0925.

Serrin J (1959) Mathematical principles of classic fluid dynamics In: Fl¨ugge

S (ed.) Handbuch der Physik VIII/1, Springer-Verlag, Berlin Heidelberg

New York 125–263

Serrin J (1972) The swirling vortex Phil Trans Roy Soc A271: 325.

Serrin J (ed.) (1986) New Prospective in Thermodynamics Springer-Verlag,

Berlin Heidelberg New York

Shankar P.N (1971) On acoustic refraction by duct shear layers J Fluid

Mech 47: 81–91.

Shariff K., Leonard A (1992) Vortex rings Annu Rev Fluid Mech 24: 235–

279

She Z.S (1997) Hierarchical structures and scaling in turbulence In:

Bo-ratav O., Eden A., Erzan A (eds.) Turbulence Modeling and Votex

Dynamics Lecture Notes in Physics, 491: 28–51 Springer, Berlin

Heidel-berg New York

She Z.S (1998) Universal laws of cascade of turbulent fluctuations Prog.

Theor Phys Supp 130: 87–102.

Trang 8

She Z.S., Jackson E., Orszag S.A (1990) Intermittent vortex structures in

homogeneous isotropic turbulence Nature, 344: 226–228.

She Z.S., Leveque E (1994) Universal scaling laws in fully developed

turbu-lence Phys Rev Lett 72: 336–339.

Shell M.J., Meiron D.I., Orszag S.A (1993) Dynamical aspects of vortex

re-connection of perturbed anti-parallel vortex tubes J Fluid Mech 246:

613–652

Shen S.F (1978) Unsteady separation according to boundary-layer equation

Adv Appl Mech 18: 177–220.

Shercliff J.A (1965) A Textbook of Magnetohydrodynamics Pergamon,

New York

Shi Z., Wu J.M., Wu J.Z (1991) Symmetric and asymmetric jets in a uniform

crossflow AIAA 91–0722.

Shur M., Spalart P.R., Strelets M., Travin A (1998) Detached-eddy

simu-lation of an airfoil at high angle of attack In: 4th Int Symp Engineering Turbulence Modeling and Measurements, Corsica, France, May 24–26.

Siggia E.D (1985) Collapse and amplification of a vortex filament Phys.

Fluids, 28: 794–805.

Sipp D., Jacquin L (1998) Elliptic instability in two-dimensional flatted

Taylor-Green vortices Phys Fluids, 10(4): 839–849.

Slezkin N.A (1934) On the motion of viscous fluid between two cones Res.

Rep Moscow State University, USSR, 2: 89–90 (In Russian).

Smith A.C (1973) On the stability of F¨oppl vortices J Appl Mech 40:

610–612

Smith C.R (1984) A synthesized model of the near-wall behavior in turbulent

boundary layers Proc Symp Turbul 8th, Rolla, Mo.

Smith F.T (1977) The laminar separation of an incompressible fluid streaming

past a smooth surface Proc Roy Soc London, A356: 443–463.

Smith F.T (1978) Three-dimensional viscous and inviscid separation of a

vortex sheet from a smooth non-slender body RAE TR 78095.

Smith F.T (1982) On high Reynolds theory of laminar flows IMA J Appl.

Math 131: 207–281.

Smith J.H.B (1968) Improved calculation of leading-edge separation from

slender, thin delta wings Proc R Soc London, A306: 67–90.

Smith J.H.B (1978) Inviscid fluid models, based on rolled-up vortex sheets,

for three-dimensional separation at high Reynolds number AGARD LS -94,

Paper 9

Smith J.H.B (1984) Theoretical modelling of three-dimensional vortex flows

in aerodynamics Aeronaut J 88: 101–116.

Smith R.A., Rosenbluth M.N (1990) Algebraic instability of hollow electron

columns and cylindrical vortices Phys Rev Lett 64: 649.

Song M., Bernal L.P., Tryggvason G (1992) Head-on collision of a large vortex

ring with a free surface Phys Fluids, A4(7): 1457–1466.

Sozou C., Wilkinson L.C., Shtern V.A (1994) On conical swirling flows in an

infinite fluid J Fluid Mech 276: 261–271.

Trang 9

Spalart P.R (1986) Numerical study of sink-flow boundary-layers, J Fluid

Mech 172: 306.

Spalart P.R., Allmaras S.R (1992) A one-equation turbulence model for

aero-dynamic flows AIAA 92–0439.

Sposito G (1997) On steady flows with Lamb surfaces Int J Engng Sci 35:

197–209

Squire H.B (1933) On the stability for three-dimensional disturbances of

vis-cous fluid between parallel walls Proc R Soc London, A142: 621–628.

Squire H.B (1956) Note on the motion inside a region of recirculation (cavity

flow) J.R Aeron Soc 60: 203.

Srygley R.B., Thomas A.L.R (2002) Unconventional lift-generating

mecha-nisms in free-flying butterflies Nature, 420: 660–664.

Staley D.O., Gall R.L (1984) Hydrodynamic instability of small eddies in a

tornado vortex J Atmos Sci 41: 422–429.

Starr V.P., Neiburger M (1940) Potential vorticity as a conservative property

J Marine Res 3: 202–210.

Stern M.F (1975) Minimal properties of planetary eddies J Mar Res 33:

1–13

Stewartson K., Hall M.G (1962) The inner viscous solution for the core of a

leading-edge vortex J Fluid Mech 15: 306–318.

Stewartson K., Williams P.G (1969) Self-induced separation Proc Roy Soc.

London, A312: 181–206.

Stoker J.J (1958) Water Waves: The Mathematical Theory with Applications,

Wiley, New York

Stokes G.G (1851) On the effect of internal friction of fluids on the motion

of pendulums Trans Camb Phil Soc 9: Part II, 8–106.

Strouhal V (1878) Uber eine besondere Art der Tonerregung Ann Phys.

Chem.(Liepzig), Neue Folge Bd 5(10): 216.

Stuart J.T (1963) Unsteady boundary layer In: Rosenhead L (ed.) Laminar Boundary Layers Oxford Clarendon Press, Oxford 349–408.

Stuart J.T (1967) On finite amplitude oscillations in laminar mixing layers

J Fluid Mech 29: 417–440.

Stuart J.T (1984) Instability of laminar flows, nonlinear growth of

fluctu-ations and transition to turbulence In: Tatsumi T.(ed.) Turbulence and Chaotic Phenomena in fluids, North-Holland Amsterdam, 17–26.

Stuart J.T (1987) A critical review of vortex breakdown theory Vortex

con-trol and breakdown behaviour, Second International Colloquim on Vortex Flows, Baden, Swotzerland, April 6–7, 1987.

Su W.D., Zhao H., Cai Q.D., Xiong A.K., Wu J.Z (2002) A diagnosis of linear

eddy-viscosity in turbulence modeling Phys Fluids, 14: 1284–1287.

Sugavanam A (1979) Numerical study of separated turbulent flow over

air-foils Ph.D thesis, Georgia Institute of Technology, Atlanta.

Sullivan R.D (1959) A two-cell solution of the Navier-Stokes equations

J Aero Space Sci 26: 767.

Trang 10

Sun M., Wu J.H (2004) Large aerodynamic force generation by a sweeping

wing at low Reynolds numbers Acta Mech Sinica, 20: 24–31.

Surana A., Grunberg O., Haller G (2005a) Exact theory of three-dimensional

flow separation Part I: steady separation Submitted to J Fluid Mech.

Surana A., Grunberg O., Haller G (2005b) Exact theory of three-dimensionalflow separation Part II: Fixed unsteady separation Preprint

Surana A., Jacobs G., Haller G (2005c) Exact separation patterns in cavityand backward-facing step flows Preprint

Sutyrin G.G (1988) Motion of an intense vortex on a rotating globe Fluid

Dyn 23(4): 215–233.

Sutyrin G.G., Flierl G.R (1994) Intense vortex motion on the beta plane:

development of the beta gyres J Atmos Sci 51: 773–790.

Swearingen J.D., Blackwelder R.F (1987) The growth and breakdown of

streamwise vortices in the presence of a wall J.Fluid Mech 182: 255–290.

Sychev V.V (1972) Laminar separation Mekh Zhid Gaza, (3), 47–59 English

translation: Fluid Dyn 7(3): 407–417.

Sychev V.V., Rubin A.I., Sychev Vic.V., Korolev G.L (1998) Asymptotic Theory of Separated Flows, Cambridge University Press, Cambridge Synge J.L (1933) The stability of heterogeneous liquids Trans Roy Soc.

Can 3: 1–18.

Ta Phuoc Loc., Bouard R (1985) Numerical solution of the early stage ofthe unsteady viscous flow around a circular cylinder: a comparison with

experimental visualization and measurement J Fluid Mech 160: 93–117.

Tabor M (1989) Chaos and Integrability in Nonlinear Dynamics, Willey, New

York

Taneda S (1956) Studies on wake vortices (III) Experimental investigation of

the wake behind a sphere at low Reynolds numbers Rep Res Inst Appl.

Mech Kyushu Univ., 4: 99–105.

Taneda S (1985) Flow field visualization In: Niordson F.I., Olhoff N (eds.)

Theoretical and Applied Mechanics Elsevier Sci 399–410.

Tani I (1969) Boundary layer transition Ann Rev Fluid Mech 1: 169–196.

Taylor G.I (1918) On the dissipation of eddies Rep Memo Advis Comm Aeronaut no 598.

Taylor G.I (1923) Experiments on the motion of solid bodies in rotating fluids

Proc R Soc A104: 213–218.

Telionis D.P (1981) Unsteady Viscous Flows Springer-Verlag, Berlin

Heidel-berg New York

Teng Y.G., Liu T.S., Zhou M.D (1987) An Experimental Study on the VortexControl on a Delta Wing In: Procedings of The First Chinese Symposium

on Unsteady Flow and Vortex Control, Beijing

Tennekes H., Lumley J.L (1972) A First Course in Turbulence, MIT Press,

Cambridge

Theoderson T (1952) Mechanism of Turbulence, Proc 2nd Midwestern Conf.

In Fluid Mechanics

Trang 11

Thomson, J.J (1883) A Treatise on the Motion of Vortex Rings London.

Thorpe A.J (1985) Diagosis of balanced vortex structure using potential

vor-ticity J Atmos Sci 42: 397–406.

Ting L (1971) Studies in the motion and decay of vortices In: Olsen J.H.,

Goldburg A., Rogers M (eds.) Aircraft Wake Turbulence, Plenum, New

York 11–39

Ting, L (1983) On the application of the integral invariants and decay laws

of vorticity distributions J Fluid Mech 127: 497–506.

Ting L., Klein R (1991) Viscous Vortex Flows Spinger-Verlag, Berlin

Heidel-berg New York

Ting L., Tung C (1965) Motion and decay of a vortex in a nonuniform stream

Phys Fluids, 8: 1039–1051.

Tobak M., Peake D.J (1982) Topology of three-dimensional separated flows

Annu Rev Fluid Mech 14: 61–85.

Tollmien W (1935) General instability criterion of laminar velocity

distribu-tions NACA TM 792.

Tong B.G., Cui R.J., Zhang B.X (1993) Unsteady Flow and Vortex Motion.

Defense Industrial Press (in Chinese)

Tong B.G., Yin X.Y., Zhu K.Q (1994) Theory of Vortex Motion University

of Science and Technology of China Press (in Chinese)

Tong Y., Lombeyda S., Hirani A.N., Desbrun M (2003) Discrete multiscale

vector field decomposition Proc SIGGRAPH 2003, ACM, San Diego, July

27–31

Townsend A.A (1976) The structure of turbulent shear flow Second edition,

Cambridge University Press, Cambridge

Trefethen L.N (1991) Pseudospectra of matrices In: Griffiths D.F., Watson

G.A (eds), Numerical Analysis, Longman, 234–266.

Trefethen L.N (1993) Non-normal operators and pseudospectra(summary)

Trefethen L.N (1997) Pseudospectral of linear operators SIAM Rev 39(3):

383–406

Trefethen L.N., Trefethen A.E., Reddy S.C., Driscoll T.A (1993)

Hydrody-namic stability without eigenvalues Science, 261: 578–584.

Triantafyllou G.S., Karniadakis G.E (1990) Computational reducibility of

unsteady viscous flow Phys Fluids, A2: 653–656.

Triantafyllou G.S., Triantafyllou M.S (1986) On the formation of vortex

streets behind stationary cylinders J Fluid Mech 170: 461–477.

Truesdell C (1953) Two measures of vorticity J Rat Mech Anal 2: 173–217.

Truesdell C (1954) The Kinematics of Vorticity Indiana University Press,

Bloomington, IN

Truesdell C., Toupin R (1960) The classic field theories In: Fl¨ugge S (ed.)

Handbuch der Physik III/1, Springer-Verlag, Berlin Heidelberg New York

223–793

Tryggvason G (1988) Numerical simulation of the Rayleigh-Taylor instability

J Comput Phys 75: 253–282.

Trang 12

Tryggvason G (1989) Vortex dynamics of stratified flows In: Caflish R.E.

(ed.) Mathematical aspects of vortex dynamics SIAM, Philadelphia, 160–

170

Tryggvason G., Abdollahi-Alibreik J., Willmarth W.W., Hirsa A (1992)

Col-lision of a vortex pair with a contaminated free surface Phys Fluids, A4:

1215–1229

Tsai C.Y., Widnall S.E (1976) The stability of short waves on a straight

filament in a weak externally imposed strain field J Fluid Mech 73: 721–

733

Tung C., Ting L (1966) Motion and decay of a vortex ring Phys Fluids, 10:

901–910

Van Dommenlen L.L., Cowley S.J (1990) On the Lagrangian description of

unsteady boundary-layer separation Part 1 General theory J Fluid Mech.

210: 593–626.

Van Dommenlen L.L., Shen S.F (1982) The genesis of separation In: Cebici

T (ed.) Numerical and Physical Aspects of Aerodynamic Flows, Springer,

Berlin Heidelberg New York 293–311

Van Dyke M (1970) Extension of Goldstein’s series for the Oseen drag of a

sphere J Fluid Mech 44: 365–372.

Van Dyke M (1975) Perturbation Methods in Fluid Mechanics, Academic

Press, San Diego

Van Dyke M (1982) An Album of Fluid Motion The Parabolic stanford.

Varty R.L., Currie I.G (1984) Measurements near a laminar separation point

J Fluid Mech 138: 1–19.

Virk D., Hussain F (1993) Influence of initial conditions on compressible

vorticity dynamics Theor Comput Fluid Dyn 5: 309–334.

Vladimirov V.A., Ilin K.I (1988) Nonlinear stability of fluid flows: from Kelvin

to Arnold In: Tang Y.A., Zhao D.G (eds.) Proceedings of the Third national Conference on Fluid Mechanics, Beijing, 1988, Beijing Institute of

Inter-Technology Press

Voropayev S.I., Afanasyev Y.D (1994) Vortex Structures in a Stratified Fluid,

Chapman and Hall

Waleffe F (1990) On the three-dimensional instability of strained vortices

Phys Fluids A2: 76–80.

Waleffe F (1992) The nature of triad interactions in homogeneous turbulence

Phys Fluids A4: 350–363.

Waleffe F (1993) Inertial transfers in the helical decomposition Phys Fluids.

A5: 677–685.

Waleffe F (1995a) Hydrodynamic stability and turbulence: Beyond transients

to a self-sustaining process Studies Appl Math 55: 317–343.

Waleffe F (1995b) Transition in shear flows Nonlinear normality versus

non-normal linearity Phys Fluids 7: 3060–3066.

Waleffe F (1997) On a self-sustaining process in shear flows Phys Fluids.

9(4): 883–900.

Trang 13

Walsh M.J (1990) Riblets In: Bushnell D., Hefner J., Reston V.A (eds.)

Viscous Drag Reduction in Boundary Layers, Progress in Astronautics and Aeronautics, AIAA, 123.

Wang C.M., Wu J.C (1986) Numerical solution of Navier-Stokes problems

using integral representation with series expansion AIAA J 24: 1305–1312.

Wang C.Y (1989) Exact solutions of the unsteady Navier-Stokes equations

Appl Mech Rev 42: S269-S282.

Wang C.Y (1990) Exact solutions of the Navier-Stokes equations - the

gen-eralized Beltrami flows, review and extension Acta Mech 81: 69–74.

Wang C.Y (1991) Exact solutions of the steady Navier-Stokes equations

Annu Rev Fluid Mech 23: 159–177.

Wang K.C (1970) Three-dimensional boundary layer near the plane of

sym-metry of a spheroid at incidence J Fluid Mech 43: 187–209.

Wang K.C (1982) New developments in open separation In: Fernholz H.H.,

Krause E (eds.) Three-dimensional Turbulent Boundary Layers,

Proced-ings, IUTAM Symposium, Springer-Verlag, Berlin Heidelberg New York.94–105

Wang K.C (1997) Features of three-dimensional separation and separated

flow structure In: Schmitt H (ed.) Flow at Large Reynolds Numbers,

Com-put Mech Publications, 1–33

Wang K.C., Zhou H.C., Hu C.H., Harrington S (1990) Three-dimensional

separated flow structure over prolate spheroids Proc R Soc London,

A421: 73–90.

Wang S.X., Rusak Z (1996a) On the stability of an axisymmetric rotating

flow in a pipe Phys Fluids, 8(4): 1007–1016.

Wang S.X., Rusak Z (1996b) On the stability of non-columnar swirling flows

Phys Fluids, 8(4): 1017–1023.

Wang S.X., Rusak Z (1997a) The dynamics of a swirling flow in a pipe and

transition to axisymmetric vortex breakdown J Fluid Mech 340: 177–

223

Wang S.X., Rusak Z (1997b) The effect of slight viscosity on a near-critical

swirling flow in a pipe Phys Fluids, 9(7): 1914–1927.

Wang Y.-X., Lu X.-Y., Zhuang L.-X (2004) Numerical analysis of the rotating

viscous flow approaching a solid sphere Int J Numer Meth Fluids 44:

905–925

Weatherburn C.E (1961) Differential Geometry of Three Dimensions

Cam-bridge University Press, CamCam-bridge

Wehausen J.V., Laitone E.V (1960) Surface wave In: Fl¨ugge S (ed.)

Hund-buch der Physik, IX-III, Springer-Verlag, Berlin Heidelberg New York 446–

778

Weidemann M.S (1996) The weak wall-jet, Mater thesis, Department ofAerospace and Mechanical Engineering, the University of Arizona

Weisbrot I., Wygnanski I (1988) On coherent structures in a highly excited

turbulent mixing layer J Fluid Mech 195: 137–159.

Trang 14

Weiss J (1981) The dynamics of enstrophy transfer in two-dimensional drodynamics LJI-TN-81–121, La Jolla Inst La Jolla, California Published

hy-in Physica D, 48: 273–297.

Whitham G.B (1963) The Navier-Stokes equations of motion In: Rosenhead

L (ed.) Laminar Boundary Layers, Oxford University Press, New York

114–162

Widnall S.E., Bliss D.B (1971) Slender-body analysis of the motion and

sta-bility of a vortex filament containing an axial flow J Fluid Mech 50:

335–353

Williamson C.H.K (1989) Oblique and parallel modes of vortex shedding in

the wake of a circular cylinder at low Reynolds numbers J Fluid Mech.

206: 579–627.

Willaimson C.H.K (1996) Vortex dynamics in the cylinder wake Annu Rev.

Fluid Mech 28: 477–539.

Wiltse J.M., Glezer A (1993) Manipulation of free shear flows using

piezo-electric actuators J Fluid Mech 249: 261–285.

Wiltse J.M., Glezer A (1998) Direct excitation of small-scale motions in free

shear flows Phys Fluids, 10: 2026–2046.

Winant C.D., Browand F.K (1974) Vortex pairing - the mechanism of

tur-bulent mixing layer growth at moderate Reynolds number J.Fluid Mech.

Wu J.C (1982) Problems of general viscous flow In: Benerjee P.K (ed.)

Developments in Boundary Element Method, 2.

Wu J.C (1984) Fundamental solutions and numerical methods for flow

prob-lems Int J Numer Methods Fluids, 4: 185–201.

Wu J.C (2005) Elements of Vorticity Aerodynamics, Tsinghua University

Press, Tsinghua

Wu J.C., Gulcat U (1981) Separate treatment of attached and detached flow

regions in general viscous flows AIAA J 19: 20–27.

Wu J.C., Thomson J.F (1973) Numerical solutions of time-dependent pressible Navier-Stokes equations using an integral-differential formulation

incom-Computer & Fluids, 1: 197–215.

Wu J.C., Wang C.M., McAlister K.W (2002) Wake-integral determination of

aerodynamic drag, lift, and moment in three-dimensional flows AIAA 2002–

0555

Wu J.M., Ondrusek B., Wu J.Z (1996) Exact force and moment diagnostics

of vehicle based on wake-plane data AIAA 96–0559.

Wu J.M., Wu J.Z (1992) Vortex lift at a very high angle of attack with

massively separated unsteady flow In: Kuwamura R., Aihara Y (eds.) Fluid Dynamics of High Angles of Attack, Springer-Verlag, Berlin Heidelberg New

York 35–63

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