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- 1
-
P. Caillol and V. Zeitlin,
``Kinetic equations and stationary energy spectra of weakly nonlinear
internal gravity waves,''
Dyn. Atmos. Oceans 32, 81 (2000).
- 2
-
K. Hasselmann,
``Feynman diagrams and interaction rules of wave-wave scattering
processes,''
Rev. Geophys. 4, 1 (1966).
- 3
-
K. E. Kenyon,
Wave-wave scattering for gravity waves and rossby waves,
PhD thesis, UCSD, 1966.
- 4
-
K. E. Kenyon,
``Wave-wave interactions of surface and internal waves,''
J. Mar. Res. 26, 208 (1968).
- 5
-
Y. V. Lvov and E. G. Tabak,
``Hamiltonian formalism and the Garrett-Munk spectrum of internal
waves in the ocean,''
Phys. Rev. Lett. 87, 168501 (2001).
- 6
-
C. H. McComas and F. P. Bretherton,
``Resonant interaction of oceanic internal waves,''
J. Geophys. Res. 82, 1397 (1977).
- 7
-
D. M. Milder,
``The effects of truncation on surface-wave Hamiltonian,''
J. Fluid Mech. 216, 249 (1990).
- 8
-
P. M. D. J. Olbers,
``On the dynamics of internal waves in the deep ocean,''
J. Geophys. Res. 80, 3848 (1975).
- 9
-
D. J. Olbers,
``On the energy balance of small scale internal waves in the deep sea,''
Hamburg, Geophys. Einzelschriftern 27 (1974).
- 10
-
D. J. Olbers,
``Nonlinear energy transfer and the energy balance of the internal wave
field in the deep ocean,''
J. Fluid Mech. 74, 375 (1976).
- 11
-
E. N. Pelinovsky and M. A. Raevsky,
``Weak turbulence of the internal waves of the ocean,''
Atm. Ocean Phys.-Izvestija 13, 187 (1977).
- 12
-
N. Pomphrey, J. D. Meiss, and K. M. Watson,
``Description of nonlinear internal wave interactions using Langevin
methods,''
J. Geophys. Res 85, 1085 (1980).
- 13
-
A. G. Voronovich,
``Hamiltonian formalism for internal waves in the ocean,''
Izvestiya, Atmospheric and Oceanic Physics 15, 52 (1979).
- 14
-
V. E. Zakharov, V. S. L'vov, and G. Falkovich,
Kolmogorov Spectra of Turbulence I: Wave Turbulence,
Springer-Verlag, Berlin, 1992.
- 15
-
K. Polzin,
``A heuristic description of internal wave dynamics,''
J. Phys. Oceanogr. 34, 214 (2004).
- 16
-
C. H. McComas and P. Müller,
``Time scales of resonant interactions among oceanic internal waves,''
J. Phys. Oceanogr. 11, 139 (1981).
- 17
-
Y. V. Lvov, K. L. Polzin, and N. Yokoyama,
``Wave-wave interactions in stratified fluids: A comparison of
approaches,''
(submitted to J. Phys. Oceanogr.).
- 18
-
P. G. Müller, G. Holloway, F. Henyey, and N. Pomphrey,
``Nonlinear interactions among internal gravity waves,''
Reviews of geophysics 24, 493 (1986).
- 19
-
K. L. Polzin, Y. V. Lvov, and E. G. Tabak,
``Towards regional characterization of internal wave fields,''
(in preparation).
- 20
-
P. Müller, D. J. Olbers, and J. Willebrand,
``The IWEX spectrum,''
J. Geophys. Res. 83, 479 (1978).
- 21
-
M. D. Levine, C. A. Paulson, and J. H. Morison,
``Observations of internal gravity waves under the arctic pack ice,''
J. Geophys. Res. 92, 779 (1987).
- 22
-
M. D. D'Asaro, E. A. & Morehead,
``Internal waves and velocity fine structure in the Arctic Ocean,''
J. Geophys. Res. 96, 12725 (1991).
- 23
-
R. A. Weller, K. L. Polzin, D. L. Rundnick, C. C. Eriksen, and N. S. Oakey,
``Forced ocean response during the Frontal Air-Sea Interaction
Experiment,''
J. Geophys. Res. 96, 8611 (1991).
- 24
-
C. Eriksen, D. Rudnick, R. Weller, R. T. Pollard, and L. Regier,
``Ocean frontal variability in the Frontal Air-Sea Interaction
Experiment,''
J. Geophys. Res. 96, 8569 (1991).
- 25
-
J. T. Sherman and R. Pinkel,
``Estimates of the vertical wavenumber-frequency spectra of vertical
shear and strain,''
J. Phys. Oceanogr. 21, 292 (1991).
- 26
-
S. Anderson,
Shear, strain, and thermohaline vertical fine structure in the
upper ocean,
PhD thesis, UCSD, 1992.
- 27
-
K. L. Polzin, E. Kunze, J. M. Toole, and R. W. Schmitt,
``The partition of finescale energy into internal waves and subinertial
motions,''
J. Phys. Oceanogr. 33, 234 (2003).
- 28
-
R. A. Weller, P. W. Furey, M. A. Spall, and R. E. Davis,
``The large-scale cotext for oceanic subduction in the northeast
atlantic,''
Deep-Sea Res. I 51, 665 (2004).
- 29
-
R. W. Schmitt, J. R. Ledwell, E. T. Montgomery, K. L. Polzin, and J. M. Toole,
``Enhanced diapycnal mixing by salt fingers in the thermocline of the
tropical atlantic,''
Science 308, 685 (2005).
- 30
-
T. Keffer,
``The baroclinic stability of the atlantic north equatorial current,''
J. Phys. Oceanogr. 13, 624 (1983).
- 31
-
N. P. Foffonoff,
``Spectral characteristics of internal waves in the ocean,''
Deep Sea Res. Suppl. to 16, 58 (1969).
- 32
-
E. A. D'Asaro,
``Wind forced internal waves in the North Pacific and Sargasso Sea,''
J. Phys. Oceanogr. 14, 781 (1984).
- 33
-
E. A. D'Asaro,
``A collection of papers on the ocean storms experiment,''
J. Phys. Oceanogr. 25, 2817 (1995).
- 34
-
Y. V. Lvov, K. L. Polzin, and E. G. Tabak,
``Energy spectra of the ocean's internal wave field: theory and
observations,''
Phys. Rev. Lett. 92, 128501 (2004).
- 35
-
V. E. Zakharov,
``Stability of periodic waves of finite amplitude on the surface of a
deep fluid,''
J. Appl. Mech. Tech. Phys. 2, 190 (1968).
- 36
-
V. E. Zakharov,
``The instability of waves in nonlinear dispersive media,''
Sov. Phys. JETP 24, 740 (1967).
- 37
-
E. A. Kuznetsov,
``On turbulence of ion sound in plasma in a magnetic field,''
Zh. Eksper. Teoret. Fiz 62, 584 (1972).
- 38
-
Y. V. Lvov and N. Yokoyama,
``Nonlinear wave-wave interactions in stratified flows: Direct
numerical simulations,''
(submitted to Phys. Fluids).
Dr Yuri V Lvov
2008-07-08