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1

Astrakhant︠s︡ev, G. P. Modelirovanie ėkosistem bolʹshikh stratifit︠s︡irovannykh ozer. Sankt-Peterburg: Nauka, 2003.

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2

1936-, Zilitinkevich S. S., e Fedorovich E. E, a cura di. Modeling air-lake interaction: Physical background. Berlin: Springer-Verlag, 1991.

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3

Bührer, H. Dynamische Simulation des Bodensee-Obersees und tolerierbare Phosphor-Fracht. [Reichenau]: Internationale Gewässerschutzkommission für den Bodensee, 1993.

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4

Marchuk, G. I. Mathematical modelling of the ocean circulation. Berlin: Springer-Verlag, 1988.

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5

A, Beckmann, a cura di. Numerical ocean circulation modeling. London: Imperial College Press, 1999.

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6

Oberhuber, Josef M. Simulation of the Atlantic circulation with a coupled sea ice-mixed layer-isopycnal general circulation model. Hamburg, Germany: Max-Planck-Institut fuer Meteorologie, 1990.

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7

Stanev, Emil V. Numerical study on the Black Sea circulation. Hamburg: Eigenverlag des Instituts für Meereskunde der Universität Hamburg, 1988.

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8

Enting, I. G. A strategy for calibrating atmospheric transport models. Melbourne: Commonwealth Scientific and Industrial Research Organization, Australia, 1985.

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9

Robbins, John A. Great Lakes regional fallout source functions. Ann Arbor, Mich: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1985.

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10

Karakawa, Masanori. A mathematical approach to cardiovascular disease: Mechanics of blood circulation. Tokyo: Kokuseido Pub. Co., 1998.

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11

Tsujino, Hiroyuki. Modelling study on thermohaline circulation in the Pacific Ocean. [Tokyo]: Center for Climate System Research, University of Tokyo, 1999.

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12

Lawrence, Wendy B. Measurements of a barotropic planetary vorticity mode in an eddy-resolving quasi-geostrophic model using acoustic tomography. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1988.

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13

Korotaev, G. K. Teoreticheskoe modelirovanie sinopticheskoĭ izmenchivosti okeana. Kiev: Nauk. dumka, 1988.

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14

Modeli okeanskikh prot︠s︡essov. Moskva: "Nauka", 1989.

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15

Enting, I. G. Preliminary studies with a two-dimensional model using transport fields derived from a GCM. Melbourne: Commonwealth Scientific and Industrial Research Organization, Australia, 1987.

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16

Berner, Judith. Detection and stochastic modeling of nonlinear signatures in the geopotential height field of an atmospheric general circulation model. St. Augustin [Germany]: Asgard Verlag, 2003.

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17

Leonard, Jenter Harry. Modelling bottom stress in depth-averaged flows: Doctoral dissertation. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1989.

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18

Mansbridge, J. V. Sensitivity studies in a two-dimensional atmospheric transport model. Australia: CSIRO, 1989.

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19

Sempf, Mario. Nichtlineare Dynamik atmosphärischer Zirkulationsregime in einem idealisierten Modell: Nonlinear dynamics of atmospheric circulation regimes in an idealized model. Bremerhaven: Alfred-Wegener-Institut für Polar- und Meeresforschung, 2006.

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20

Weisheimer, Antje. Niederfrequente Variabilität grossräumiger atmosphärischer Zirkulationsstrukturen in spektralen Modellen niederer Ordnung =: Ultra-low-frequency variability of large scale atmospheric circulation patterns in spectral low-order models. Bremerhaven: Alfred-Wegener-Institut für Polar- und Meeresforschung, 2000.

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21

Enting, I. G. Preliminary studies with a two-dimensional model using transport fields derived from a GCM. Melbourne: CISRO Australia, 1987.

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22

Seidov, D. G. Modelirovanie sinopticheskoĭ i klimaticheskoĭ izmenchivosti okeana. Leningrad: Gidrometeoizdat, 1985.

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23

S, Sarkisi͡a︡n A., a cura di. Matematicheskoe modelirovanie t͡s︡irkuli͡a︡t͡s︡ii okeana. Moskva: "Nauka", Glav. redakt͡s︡ii͡a︡ fiziko-matematicheskoĭ lit-ry, 1988.

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24

Hess, Kurt W. A sectorized stretched gridmesh for modeling San Francisco Bay and shelf circulation. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1987.

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25

Tsujino, Hiroyuki. Reference manual for the Meteoro Logical Research Institute community ocean model (MRI.COM) version 3. Tsukuba, Japan: Meteorological Research Institute, 2010.

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26

Wang, Xiao Hua. Open boundary conditions in a three dimentional coastal ocean model. Canberra, ACT, Australia: School of Geography and Oceanography, University College, The University of New South Wales, Australian Defence Force Academy, 1996.

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27

Leendertse, Jan J. Influence of the advection term approximation on computed tidal propagation and circulation. Santa Monica, CA: Rand Corporation, 1988.

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28

Tschuck, Peter. Atmospheric blocking in a general circulation model. Zürich: Geographisches Institut ETH, 1998.

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29

Wilton, Sturges, e American Geophysical Union, a cura di. Circulation in the Gulf of Mexico: Observations and models. Washington, DC: American Geophysical Union, 2005.

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30

Ballegooyen, R. C. Van. Dynamics relevant to modelling tidal and subtidal circulation in False Bay. Stellenbosch, South Africa: Marine Pollution Programme, Division of Earth, Marine and Atmospheric Science and Technology, CSIR, 1990.

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31

Beli︠a︡ev, K. P. Chislennoe modelirovanie klimaticheskikh prot︠s︡essov s primeneniem metodiki ansamblevykh ėksperimentov. Moskva: Vychislitelʹnyĭ T︠S︡entr im. A.A. Dorodnit︠s︡yna Rossiĭskoĭ akademii nauk, 2010.

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32

Parkhomenko, V. P. Chislennye ėksperimenty s ispolʹzovaniem globalʹnoĭ klimaticheskoĭ modeli. Moskva: Vychislitelʹnyĭ t︠s︡entr im. A.A. Dorodnit︠s︡yna Rossiĭskoĭ akademii nauk, 2010.

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33

Hess, Kurt W. Geographic display of circulation model data. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1989.

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34

Hess, Kurt W. Assessment model for estuarine circulation and salinity. Washington, DC: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1985.

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35

Burau, Jon R. A vertically averaged spectral model for tidal circulation in estuaries. Sacramento, Calif: Dept. of the Interior, U.S. Geological Survey, 1989.

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36

Robbins, John A. The coupled lakes model for estimating the long-term response of the Great Lakes to time-dependent loadings of particle-associated contaminants. Ann Arbor, Mich: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1985.

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37

Robbins, John A. The coupled lakes model for estimating the long-term response of the Great Lakes to time-dependent loadings of particle-associated contaminants. Ann Arbor, Mich: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1985.

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38

Robbins, John A. The coupled lakes model for estimating the long-term response of the Great Lakes to time-dependent loadings of particle-associated contaminants. Ann Arbor, Mich: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1985.

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39

Schodlok, Michael. Über die Tiefenwasserausbreitung im Weddellmeer und in der Scotia-See: Numerische Untersuchungen der Transport- und Austauschprozesse in der Weddell-Scotia-Konfluenz-Zone = On the spreading of deep water in the Weddell and Scotia seas : a numerical model approach to investigate the transport and exchange processes of the Weddell Scotia Confluence. Bremerhaven: Alfred-Wegener-Institut für Polar- und Meeresforschung, 2002.

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40

Degti︠a︡rev, A. I. Mussony v sisteme globalʹnoĭ t︠s︡irkuli︠a︡t︠s︡ii atmosfery: Diagnostika i modelirovanie. Moskva: Planeta, 2008.

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41

Chechelnitsky, Michael Y. Adaptive error estimation in linearized ocean general circulation models. Cambridge, Mass: Massachusetts Institute of Technology, 1999.

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42

Donner, Leo Joseph, Richard Somerville e Wayne H. Schubert. The development of atmospheric general circulation models: Complexity, synthesis, and computation. Cambridge: Cambridge University Press, 2011.

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43

NATO Advanced Study Institute on Cerebral Blood Flow: Mathematical Models, Instrumentation, and Imaging Techniques for the Study of CBF (1986 L'Aquila, Italy). Cerebral blood flow: Mathematical models, instrumentation, and imaging techniques. New York: Plenum Press, 1988.

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44

Russell, Gary M. Simulation of tidal flow and circulation patterns in the Loxahatchee River Estuary, southeastern Florida. Tallahassee, Fla: Dept. of the Interior, U.S. Geological Survey, 1987.

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45

Russell, Gary M. Simulation of tidal flow and circulation patterns in the Loxahatchee River Estuary, southeastern Florida. Tallahassee, Fla: Dept. of the Interior, U.S. Geological Survey, 1987.

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46

Russell, Gary M. Simulation of tidal flow and circulation patterns in the Loxahatchee River Estuary, southeastern Florida. Tallahassee, Fla: Dept. of the Interior, U.S. Geological Survey, 1987.

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47

1959-, Ottesen Johnny T., Olufsen Mette S e Larsen Jesper K, a cura di. Applied mathematical models in human physiology. Philadelphia: Society for Industrial and Applied Mathematics, 2004.

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48

Los, Hans. Eco-hydrodynamic modelling of primary production in coastal waters and lakes using BLOOM. Amsterdam: IOS Press, 2009.

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49

Effler, Steven W. Origins, behavior, and modeling of THM precursors in lakes and reservoirs. Denver, Colo: Awwa Research Foundation, 2005.

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50

Goldberg, Andrew V. Combinatorial algorithms for the generalized circulation problem. Stanford, Calif: Dept. of Computer Science, Stanford University, 1988.

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