Geoscience Reference
In-Depth Information
Egbert, G. D., and R. D. Ray (2000), Significant dissipation of
tidal energy in the deep ocean inferred from satellite altimeter
data, Nature , 405 , 775-778.
Ermanyuk, E. V., J.-B. Flor, and B. Voisin (2011), Spatial struc-
ture of first and higher harmonic internal waves from a
horizontally oscillating sphere, J. Fluid Mech. , 671 , 364-383.
Faris, G. W., and R. L. Byer (1988), Three-dimensional beam-
deflection optical tomography of a supersonic jet, Appl. Opt. ,
27 , 5202-5212.
Fincham, A., and G. Spedding (1997), Low cost, high resolution
DPIV for measurement of turbulent fluid flow, Expt. Fluids ,
23 , 449-462.
Fincham, A. M. (2006), Continuous scanning, laser imaging
velocimetry, J. Vis. , 9 , 247-255.
Flynn, M. R., K. Onu, and B. R. Sutherland (2003), Inter-
nal wave generation by a vertically oscillating sphere, J. Fluid
Mech. , 494 , 65-93.
Goldhahn, E., and J. Seume (1988), The background ori-
ented schlieren technique: Sensitivity, accuracy, resolutionand
application to a three-dimensional density field, Exp. Fluids ,
43 , 241-249.
Golub, G. H., and C. F. van Loan (1996), Matrix computations ,
3rd ed., Johns Hopkins Univ. Press, London.
Görtler, H. (1943), Über eine schwingungserscheinung in flüs-
sigkeiten mit stabiler dichteschichtung, Z. Angew. Math.
Mech. , 23 , 65-71.
Gostiaux, L., H. Didelle, S. Mercier, and T. Dauxois (2007),
A novel internal waves generator, Exp. Fluids , 42 , 123-130,
doi:10.1007/s00348-006-0225-7.
Gregory, K., and B. R. Sutherland (2010), Transmission and
reflection of internal wave beams, Phys. Fluids , 22 ,Art.No.
106,601, doi:10.1063/1.3486613.
Grue, J., A. Jensen, P.-O. Rusas, and J. K. Sveen (2000), Breaking
and broadening of internal solitary waves, J.FluidMech. , 413 ,
181-217.
Hazewinkel, J., P. van Breevoort, S. B. Dalziel, and L. R. M.
Maas (2008), Observations on the wavenumber spectrum and
evolution of an internal wave attractor, J. Fluid Mech. , 598 ,
373-382.
Hazewinkel, J., L. R. M. Maas, and S. B. Dalziel (2011),
Tomographic reconstruction of internal wave patterns in a
paraboloid, Exp. Fluids , 50 , 247-258.
Hopfinger, E. J., J.-B. Flor, J. M. Chomaz, and P. Bonneton
(1991), Internal waves generated by a moving sphere and its
wake in a stratified fluid, Exp. Fluids , 11 , 255-261.
Howes, W. L. (1984), Rainbow schlieren and its application,
Appl. Opt. , 23 , 2449-2460.
Hurley, D. G. (1997), The generation of internal waves by vibrat-
ing elliptic cylinders. Part 1: Inviscid solution, J. Fluid Mech. ,
351 , 105-118.
Hurley, D. G., and G. Keady (1997), The generation of inter-
nal waves by vibrating elliptic cylinders. Part 2: Approximate
viscous solution, J. Fluid Mech. , 351 , 119-138.
King, B., H. P. Zhang, and H. L. Swinney (2009), Tidal flow
over three-dimensional topography in a stratified fluid, Phys.
Fluids , 21 , 116,601.
Klymak, J. M., and M. C. Gregg (2004), Tidally generated tur-
bulence over the Knight Inlet sill, J. Phys. Ocean. , 34 (5),
1135-1151.
Klymak, J. M., R. Pinkel, C. T. Liu, A. K. Liu, and L. David
(2006), Prototypical solitons in the South China Sea, Geophys.
Res. Lett. , 33 (11), L11,607.
Klymak,J.M.,M.H.Alford,R.Pinkel,R.-C.Lien,Y.J.Yang,
and T.-Y. Tang (2011), The breaking and scattering of the
internal tide on a continental slope, J. Phys. Oceanogr. , 41 ,
926-945.
Koop, C. G., and B. McGee (1986), Measurements of internal
gravity waves in a continuously stratified shear flow, J. Fluid
Mech. , 172 , 453-480.
Larsen, L. H. (1969), Internal waves incident upon a knife edge
barrier, Deep Sea Res. , 16 , 411-419.
Ledwell, J. R., E. Montgomery, K. Polzin, L. C. St. Laurent,
R. Schmitt, and J. Toole (2000), Evidence for enhanced mix-
ing over rough topography in the abyssal ocean, Nature , 403 ,
179-182.
Legg, S. (2004), Internal tides generated on a corrugated slope.
Part I: Cross-slope barotropic forcing, J. Phys. Oceanogr. , 34 ,
156-173.
Li, Q., and D. M. Farmer (2011), The generation and evolution
of nonlinear internal waves in the deep basin of the South
China Sea, J. Phys. Oceanogr. , 41 , 1345-1363.
Lighthill, M. J. (1978), Waves in Fluids , Cambridge Univ. Press,
Cambridge, England.
Llewellyn-Smith, S. G., and W. R. Young (2002), Conversion of
the barotropic tide, J. Phys. Oceanogr. , 32 , 1554-1566.
Maas, L. R. M., and F.-P. A. Lam (1995), Geometric focusing of
internal waves, J. Fluid Mech. , 300 , 1-41.
Maas, L. R. M., D. Benielli, J. Sommeria, and F.-P. A. Lam
(1997), Observation of an internal wave attractor in a confined
stably stratified fluid, Nature , 388 , 557-561.
MacKinnon, J. A., and K. B. Winters (2005), Subtrop-
ical catastrophe: Significant loss of low-mode tidal
energy at 28.9 , Geophys. Res. Lett. , 32 , L15,605-1-5,
doi:10.1029/2005GL023376.
Mathur, M., and T. Peacock (2009), Internal wave beam prop-
agation in non-uniform stratifications, J. Fluid Mech. , 639 ,
133-152.
Mathur, M., and T. Peacock (2010), Internal wave interferome-
try, Phys. Rev. Lett. , 104 , 118,501-1-4.
Meier, G. (2002), Computerized background oriented schlieren,
Exp. Fluids , 33 , 181-187.
Mercier, M. J., N. B. Garnier, and T. Dauxois (2008),
Reflection and diffraction of internal waves analyzed with
the Hilbert transform, Phy. Fluids , 20 , Art. No. 086,601,
doi:10.1063/1.2963136.
Mercier, M. J., D. Martinand, M. Mathur, L. Gostiaux,
T. Peacock, and T. Dauxois (2010), New wave generation, J.
Fluid Mech. , 657 , 308-334.
Michallet, H., and E. Barthélemy (1997), Ultrasonic probes and
data processing to study interfacial solitary waves, Exp.Fluids ,
22 , 380-386.
Michallet, H., and E. Barthélemy (1998), Experimental study
of interfacial solitary waves, J. Fluid Mech. , 366 ,159-
177.
Mowbray, D. E., and B. S. H. Rarity (1967), A theoretical and
experimental investigation of the phase configuration of inter-
nal waves of small amplitude in a density stratified liquid,
J. Fluid Mech. , 28 , 1-16.
 
Search WWH ::




Custom Search