Geoscience Reference
In-Depth Information
9.
Zimmerman, J., Estuarine residence times, in Hydrodynamics of Estuaries , Vol. 1,
Estuarine Physics , Kjerfve, B., Ed., CRC Press, Boca Raton, FL, 1988, p. 75.
10.
Bolin, B. and Rodhe, H., A note on the concept of age distribution and transit time
in natural reservoirs, Tellus , 25, 58, 1973.
11.
Takeoka, H., Fundamental concepts of exchange and transport time scales in a coastal
sea, Continental Shelf Research , 3, 311, 1984.
12.
Koutitonsky, V.G., Guyondet, K.T., St. Hillaire, A., Courtenay, S., and Bohgen, A.,
Water renewal estimates for aquaculture developments in the Richibucto estuary,
Canada, Estuaries , 27(5), 839, 2004.
13.
Ekman, V.W., On the influence of the Earth's rotation on the ocean currents, Ark
Math. Astr. Fyzik , 2, 1, 1905.
14.
Madsen, O.S., A realistic model of the wind-induced Ekman boundary layer, J. Phys.
Oceanogr. , 7, 248, 1977.
15.
Massel, S.R., Fluid Mechanics for Marine Ecologists , Springer-Verlag, Heidelberg,
1999, chap. 7.3; (a) chap 14.14.
16.
Felzenbaum, A.I., Theoretical Background and Methods for Steady Marine Currents
Calculations, USSR Academy of Sciences, Moscow, 1960 [in Russian].
17.
Kundu, P.K., A numerical investigation of mixed layer dynamics, J. Phys. Oceanogr. ,
10, 220, 1980.
18.
Gill, A.E., Atmosphere-Ocean Dynamics , Academic Press, New York, 1982, chap. 6.
19.
Dmitriev, N.V., Mathematical Modelling of the Vertical Turbulence Mixing in the
Upper Ocean Layer , Novosibirsk, 1993, p. 47 [in Russian].
20.
Connor, J.J. and Brebbia, C.A., Finite Element Techniques for Fluid Flow , Butter-
worth, London, 1976, p. 208.
21.
Smith, S.D., Wind stress and heat flux over the ocean in gale force winds, J. Phys.
Oceanogr. , 10, 709, 1980.
22.
Hutter, K., Hydrodynamic modelling of lakes, Encyclopedia of Fluid Mechanics ,
Gulf Publishing Company, Houston, TX, 1986, chap. 22.
23.
Proudman, J., Dynamical Oceanography, John Wiley & Sons, New York, 1953.
24.
Watson, E.R., Movements of the water of Loch Ness, as indicated by temperature
observations, Geogr. J., 24. 430, 1904.
25.
Lazarenko, N.N. and Majewski, A., Eds., Hydrometeorological Regime of the Vistula
Lagoon , Hydrometeoizdat, Leningrad, 1971 [in Polish and Russian].
26.
Bishop, C. and Donelan, M., Wave prediction models, in Applications in Coastal
Modelling, Lakhan, V.C. and Trenhaile, A.S., Eds., Elsevier Oceanography Series 49,
Elsevier, Amsterdam, 1989, p. 75.
27.
U.S. Army Engineer Waterways Experimental Station, Coastal Engineering Research
Center, Shore Protection Manual, 4th ed., 2 vols, U.S. Army Engineers Waterways
Experiment Station, Vicksburg, MS, 1984.
28.
Matushevskiy, G.V. and Kabattchenko, I.M., Complex parametrical integral model
for wind wave simulation and its application, Russian Meteorology and Hydrology
c/c of Meteororlogiia i Gidrologiia), 15, 45, 1991 [in Russian].
29.
U.S. Navy Hydrographic Office, Techniques for Forecasting Wind Waves and Swell ,
Publ. N 604, Washington, D.C., 1951.
30.
Matushevskii, G.V., Ed., Calculations of the Marine Wind Wave Regime: Manual No.
42, Russian State Oceanographic Institute, Moscow, 1979, chap. 2 [in Russian].
31.
Floderus, S., On the spatial distribution of wave impact at the Kattegat seabed, Geogr.
Ann. A ., 70(3), 269, 1988.
Search WWH ::




Custom Search