Geoscience Reference
In-Depth Information
32.
Chubarenko, B.V., Lund-Hansen, L.Ch., and Beloshitski, A.A., Comparative analysis
of potential wind-wave impact on bottom sediment in the Vistula and Curonian
lagoons, in Baltica: An International Year-Book on Geology, Geomorphology and
Palaeogeography of the Baltic Sea , 15, 31, 2002.
33.
Sly, P.G., Sedimentary processes in lakes, in Lakes: Chemistry, Geology, Physics,
Springer-Verlag, Heidelberg, 1978, p. 65.
34.
Mortimer, C.H., Lake hydrodynamics, Mitt. Internat. Verein Limnol. , 20, 124, 1974.
35.
Ford, D.E. and Johnson, M.C., An Assessment of Reservoir Mixing Processes, Tech-
nical Report E-86-7, U.S. Army Engineers Waterways Experiment Station, Vicksburg,
MS, 1986.
36.
Fisher, H.B., List, E.J., Koh, R.C.Y., Imberger, J., and Brooks, N.H., Mixing in Inland
and Coastal Waters , Academic Press, New York, 1979.
37.
MIKE21 Training Guide. Danish Hydraulic Institute, Hörsholm, Denmark, June 1993.
38.
Chubarenko, B.V., Wang, Y., Chubarenko, I.P., and Hutter, K., Barothropic wind-
driven circulation pattern in a closed rectangular basin of variable depth influenced
by a peninsula or an island, Ann. Geophysicae, 18, 706, 2000.
39.
Hutter, K., Ed., Hydrodynamics of Lakes: CISM Lectures , Springer-Verlag, New York,
1984, p. 19.
40.
Chubarenko, B.V. and Chubarenko, I.P., The transport of Baltic water along the deep,
channel in the Gulf of Kaliningrad and its influence on fields of salinity and suspended
solids, in ICES Cooperative Research Report , N 257, Dahlin, H., Dybern, B., and
Petersson, S., Eds., Copenhagen, 2003, p. 151.
41.
Chubarenko, I.P., Adequate numerical modeling—the question of specifically orien-
tated field experiment, Presentation at the Baltic Sea Science Conference, November
23-27, 1998, Rostok-Warnemuende.
42.
Kahaner, D., Moler, C., and Nash, S., Numerical Methods and Software , Prentice
Hall, New York, 1989.
43.
Woods, J.D., Sub-grid movement parameterization, in Modelling and Prediction of
the Upper Layers of the Ocean : Proceedings of a NATO Advanced Study Institute ,
Kraus, E.B., Pergamon Press, New York, 1976, p. 146.
44.
Barretta-Bekker, H.J., Duursma, E.K., and Kuipers, B.R., Eds., Encyclopaedia of
Marine Sciences, 2nd ed., Springer-Verlag, Heidelberg, 1998.
45.
Roed, L.P. and Cooper, C.K., A study of various open boundary conditions for wind-
forced barotropic numerical ocean models, in Three-Dimensional Models of Marine
and Estuarine Dynamics, Nihoul, J. and Jamart, B., Eds., Elsevier Oceanographic
Series 45, Elsevier, Amsterdam, 1987, p. 305.
46.
Smagorinsky, J., General circulation experiment with the primitive equations, Monthly
Weather Review , 91(3), 99, 1963.
47.
Abbott, M.B. and Larsen, J., Modelling circulations in depth-integrated flows, J.
Hydraul. Res. , 23, 309-326 and 397-420, 1985.
48.
Wen-Sen, C., Remaining problems in the practical application of numerical models
to coastal waters, in Application in Coastal Modelling , Lakhan, V.C. and Trenhaile,
A.S., Eds., Elsevier Oceanography Series 49, Elsevier, Amsterdam, 1989, p. 355.
49.
Ditmars, J.D., Adams, E.E., Bedford, K.W., and Ford, D.E., Performance evaluation
of surface water transport and dispersion models, J. Hydraul. Eng ., ASCE, 113, 1961.
Search WWH ::




Custom Search