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Kagan, B.A., Romanenkov, D.A., Sofina, E.V. (2008). Tidal ice drift and ice-generated
changes in the tidal dynamics/energetics on the Siberian continental shelf. Continental
Shelf Research , 28 , 351-368
Kagan, B.A., Timofeev A.A. (2005). Dynamics and energetics of the surface and internal
semidiurnal tides in the White Sea. Izvestiya, Atmospheric and Oceanic Physics , 41 , 550-
566 (in Russian)
Kagan, B.A., Sűndermann, J. (1996). Dissipation of tidal energy, paleotides, and evolution of
the Earth-Moon system. Advances in Geophysics, 38 , 179-266
Katsumata, K. (2006). Two- and three-dimensional numerical tide generation at continental
slope. Ocean Modelling , 12 , 32-45
Klymak, J.M., Moum, J.N., Nash, J.D., Kunze, E., Girton, J.B., Carter, G.B., Lee, C.M.,
Sanford, T.B., Gregg, M.C. (2005). An estimate of energy lost to turbulence at the
Hawaiian Ridge. Journal of Physical Oceanography , 36 , 1148-1164
Konyaev, K.V. (2000). Internal tide at the critical latitude. Izvestiya, Atmospheric and
Oceanic Physics , 36 , 396-406 (in Russian)
Konyaev, K.V. (2002). Internal tide near the polar front of the Barents Sea from the data of a
density survey. In I.V. Lavrenov, E.G. Morozov , Surface and internal waves in the Arctic
Ocean, 320-321, St. Petersburg: Gidrometeoizdat (in Russian)
Konyaev, K.V., Plüddemann, A., Sabinin, K.D. (2000). Internal tide at the Ermak platea in
the Arctic Ocean. Izvestiya, Atmospheric and Oceanic Physics, 36, 542-552 (in Russian)
Kowalik, Z. (1981). A study of the M 2 tide in the ice-covered Arctic Ocean. Modeling ,
Identification and Control , 2 , 201-223
Kowalik, Z., Proshutinsky, A.Yu. (1991). The Arctic Ocean tides. In O.M. Johannessen et al.,
Geophysical Monograph Series ,
85 , 137-158, American Geophysical Union.
Washington. D.C.
Kozubskaya, G.I., Konyaev, K.V., Plüddemann, A., Sabinin, K.D. (1999). Internal waves at
the slope of the Medvezii island from the “Polar front of the Barets Sea (BFPS-92)
experimental data”. Okeanologiya , 39 , 165-175 (in Russian)
Kunze, E., Toole, J.M. (1977). Tidally driven vorticity, diurnal shear, and turbulence atop.
Fieberling seamount. Journal of Physical Oceanography , 27 , 2663-2693
Kunze, E., Rosenfield, L.K., Carter, G.S., Gregg, M.C. (2002). Internal waves in Monterey
Submarine Canyon. Journal of Physical Oceanography , 32 , 1890-1913
Ledwell, J.R., Watson, A.J. Law, C.S. (1993). Evidence for slow mixing across the
pycnocline from an open-ocean tracer release experiment. Nature , 364 , 701-703
Ledwell, J.R., Watson, A.J. Law, C.S. (1998). Mixing of a tracer released in the pycnocline.
Journal of Geophysical Research , 103 , 21499-21529
Ledwell, J.R., Montgomery, E.T., Polzin, K.L., St. Laurent, L.C., Schmitt, R.W., Toole, J.M.
(2000). Mixing over rough topography in the Brazil Basin. Nature , 403 , 179-184
Legg, S., Huijts, K.M.H. (2006). Preliminary simulation of internal waves and mixing
generated by finite amplitude tidal flow over isolated topography. Deep-Sea Research, II
53, 140-156
Levine, M.D. (1983). Internal waves in the ocean: A review. Review of Geophysics and
Space Physics , 21 , 1206-1216
Levine, M.D. (1990). Internal waves under the arctic pack ice during the Arctic Internal Wave
Experiment: The coherent structure. Journal of Geophysical Research , 95 , 7347-7357
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