Deep-Ocean Tides in the South-West Indian Ocean . . .
181
2. Badulin, S. I., Shrira, V. I., & Tsimring, L. S. (1985). The trapping and vertical focusing of
internal waves in a pycnocline due to the horizontal inhomogeneities of density and currents.
Journal of Fluid Mechanics, 158, 199–218.
3. Berry, M. (1987). The Bakerian lecture 1987: quantum chaology. Proceedings of the Royal
Society of London A, 413, 183–198.
4. Bewley, G. P., Lathrop, D. P., Maas, L. R. M., & Sreenivasan, K. R. (2007). Inertial waves in
rotating grid turbulence. Physics of Fluids, 19(7), 071701.
5. Boisson, J., Lamriben, C., Maas, L. R. M., Cortet, P. P., & Moisy, F. (2012). Inertial waves and
modes excited by the libration of a rotating cube. Physics of Fluids, 24(7), 076602.
6. Cartwright, D. E. (2000). Tides: A scientific history. Cambridge: Cambridge University Press.
7. Cartwright, D. E., & Ray, R. D. (1990). Oceanic tides from Geosat altimetry. Journal of Geophysical Research: Oceans, 95(C3), 3069–3090.
8. da Silva, J. C. B., New, A. L., & Magalhães, J. M. (2009). Internal solitary waves in the
Mozambique Channel: observations and interpretation. Journal of Geophysical Research, 114,
C05001. https://doi.org/10.1029/2008JC005125.
9. da Silva, J. C. B., New, A. L., & Magalhães, J. (2011). On the structure and propagation of
internal solitary waves generated at the Mascarene Plateau in the Indian Ocean. Deep-Sea
Research I, 58, 229–240.
10. Defant, A. (1961). Physical oceanography (Vol. 2).
11. Dewey, R. K. (1999). Mooring design and dynamics: A Matlab package for designing and
analyzing oceanographic moorings. Marine Models, 1(1), 103–157.
12. Egbert, G. D., & Erofeeva, S. Y. (2002). Efficient inverse modeling of barotropic ocean tides.
Journal of Atmospheric and Oceanic Technology, 19, 183–204.
13. Harlander, U., Ridderinkhof, H., Schouten, M. W. & de Ruijter, W. P. M. (2009). Long-term
observations of transport, eddies, and Rossby waves in the Mozambique Channel, Journal of
Geophysical Research, 114(C02003), 1–15.
14. Hendershott, M. C. (1981). Long waves and ocean tides. In Evolution of physical oceanography
(pp. 292–341).
15. Hutter, K., Wang, Y., & Chubarenko, I. P. (2011). Physics of lakes. Springer.
16. Konyaev, K. V., Sabinin, K. D., & Serebryany, A. N. (1995). Large-amplitude internal waves at
the Mascarene Ridge in the Indian Ocean. Deep Sea Research Part I: Oceanographic Research
Papers, 42(11–12), 20752083–20812091.
17. Kunze, E. (1985). Near-inertial wave propagation in geostrophic shear. Journal of Physical
Oceanography, 15, 544–565.
18. Lamriben, C., Cortet, P. P., Moisy, F., & Maas, L. R. M. (2011). Excitation of inertial modes
in a closed grid turbulence experiment under rotation. Physics of Fluids, 23(1), 015102.
19. LeBlond, P. H., & Mysak, L. A. (1981). Waves in the ocean. Elsevier.
20. Maas, L. R. M. (1997). On the nonlinear Helmholtz response of almost-enclosed tidal basins
with sloping bottoms. Journal of Fluid Mechanics, 349, 361–380.
21. Maas, L. R. M. (2003). On the amphidromic structure of inertial waves in a rectangular parallelepiped. Fluid Dynamics Research, 33, 373–401.
22. Maas, L. R. M. (2011). Topographies lacking tidal conversion. Journal of Fluid Mechanics,
684, 5–24.
23. Manders, A. M. M., Maas, L. R. M., & Gerkema, T. (2004). Observations of internal tides in
the Mozambique Channel. Journal of Geophysical Research: Oceans, 109(C12).
24. Moum, J. N., & Nash, J. D. (2008). Seafloor pressure measurements of nonlinear internal
waves. Journal of Physical Oceanography, 38(2), 481–491.
25. Morozov, E. G. (1995). Semidiurnal internal wave global field. Deep Sea Research Part I:
Oceanographic Research Papers, 42(1), 135–148.
26. Munk, W. H., & Cartwright, D. E. (1966). Tidal spectroscopy and prediction. Philosophical
Transactions of the Royal Society of London, 259(1105), 533–581.
27. Nurijanyan, S., Bokhove, O., & Maas, L. R. M. (2013). A new semi-analytical solution for
inertial waves in a rectangular parallelepiped. Physics of Fluids, 25(12), 126601.
Précédent

- 184/610

Suivant