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1

Whetton, Peter. Australian Region intercomparison of the results of some general circulation models used in enhanced greenhouse experiments. Australia: CSIRO, 1991.

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2

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

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3

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

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4

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

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5

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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6

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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7

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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8

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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9

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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10

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

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11

Vychislenie dostupnoĭ potent͡s︡ialʹnoĭ ėnergii v dvusloĭnoĭ modeli Mint͡s︡a-Arakavy. Moskva: Vychislitelʹnyĭ t͡s︡entr AN SSSR, 1987.

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12

Enting, I. G. Calculating future atmospheric CO2 concentrations. Australia: CSIRO, 1991.

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13

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

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14

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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15

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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16

Roesch, Andreas Carl. Comparison and sensitivity studies of the land-surface schemes in the ECHAM general circulation model and the Europa-modell. Hamburg: Max-Planck-Institut für Meteorologie, 1997.

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17

L, Stenchikov G., and Turkov D. V, eds. Raschet vlii͡a︡nii͡a︡ svoĭstv podstilai͡u︡shcheĭ poverkhnosti na formirovanie klimaticheskikh poleĭ. Moskva: Vychislitelʹnyĭ t͡s︡entr AN SSSR, 1987.

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18

Swart, H. E. de. Vacillation and predictability properties of low-order atmospheric spectral models. Amsterdam, the Netherlands: Centrum voor Wiskunde en Informatica, 1989.

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19

Langematz, Ulrike. Eine dreidimensionale Modellsimulation der Zirkulation in der Mittleren Atmosphäre mit Aspekten troposphärisch-stratosphärischer Wechselwirkungen: (DK 551.506.7/551.510.53 ... Berlin: D. Reimer, 1991.

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20

Borodulin, A. I. Modelirovanie rasprostranenii︠a︡ primeseĭ v atmosfernom pogranichnom sloe: Monografii︠a︡. Novosibirsk: Novosibirskiĭ gos. universitet, 2007.

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21

Borodulin, A. I. Modelirovanie rasprostranenii︠a︡ primeseĭ v atmosfernom pogranichnom sloe: Monografii︠a︡. Novosibirsk: Novosibirskiĭ gos. universitet, 2007.

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22

Roesch, Andreas Carl. Assessment of the land surface scheme in climate models with focus on surface albedo and snow cover. Zürich: Geographisches Institut ETH, 2000.

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23

1936-, Zilitinkevich S. S., and Fedorovich E. E, eds. Modeling air-lake interaction: Physical background. Berlin: Springer-Verlag, 1991.

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24

Bünzli, Daniel. The influence of subgridscale surface variations on the atmospheric boundary layer flow: A modelling study. Zürich: Geographisches Institut ETH, 1995.

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25

Mashkovich, Semen Aleksandrovich. Spektralʹnye modeli obshcheĭ t͡s︡irkuli͡a︡t͡s︡ii atmosfery i chislennogo prognoza pogody. Moskva: Gidrometeoizdat, 1986.

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26

Kouker, Wolfgang. Eine Studie zur Klimatologie der mittleren Atmosphäre mit Hilfe eines 3-D Zirkulationsmodells. Berlin: D. Reimer, 1988.

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27

Parkhomenko, V. P. Chislennye ėksperimenty na sovmestnoĭ modeli obshcheĭ t︠s︡irkuli︠a︡t︠s︡ii atmosfery i termokhalinnoĭ t︠s︡irkuli︠a︡t︠s︡ii okeana. Moskva: Vychislitelʹnyĭ T︠S︡entr im. A.A. Dorodnit︠s︡yna Rossiĭskoĭ akademii nauk, 2011.

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28

Vincent, Dayton G. Observational and modeling studies of heat, moisture, precipitation and global-scale circulation patterns: Final technical report, July 20, 1990 - January 19, 1994. [Washington, DC: National Aeronautics and Space Administration, 1994.

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29

Fundamentals of ocean climate models. Princeton, N.J: Princeton University Press, 2004.

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30

Indo-US Seminar on Parameterization of Sub-grid Scale Processes in Dynamical Models of Medium Range Prediction and Global Climate (1990 Pune, India). Physical processes in atmospheric models: Collection of papers presented at the Indo-US Seminar on Parameterization of Sub-grid Scale Processes in Dynamical Models of Medium Range Prediction and Global Climate, IITM, Pune, India, 6-10 August 1990. New York: Wiley, 1992.

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31

Justus, C. G. The NASA/MSFC global reference atmospheric model--1990 version (GRAM-90). Atlanta, Ga: School of Earth and Atmospheric Sciences, Georgia Institue of Technology, 1990.

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32

Kowalczyk, E. A. A soil-canopy scheme for use in a numerical model of the atmosphere - 1D stand alone model. Australia: CSIRO, 1991.

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33

Läuter, Matthias. Grossäumige Zirkulationsstrukturen in einem nichtlinearen adaptiven atmosphärenmodell =: Large-scale circulation structures in a nonlinear adaptive model of the atmosphere. Bremerhaven: Alfred-Wegener-Institut für Polar- und Meeresforschung, 2005.

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34

Janis, Michael J. Multivariate spatial interpolation of monthly precipitation. Elmer, N.J: C.W. Thornthwaite Associates, Laboratory of Climatology, 1995.

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35

Kowalczyk, E. A. A soil-canopy scheme for use in a numerical model of the atmosphere - 1D stand alone model. Australia: CSIRO, 1991.

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36

Kowalczyk, E. A. Implementation of a soil-canopy scheme into the CSIRO GCM - regional aspects of the model response. [Melbourne]: Commonwealth Scientific and Industrial Research Organization, 1994.

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37

Sonechkin, D. M., and N. S. Sidorenkov. Dinamika klimata. Sankt-Peterburg: Gidrometeoizdat, 2000.

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38

P, Kurbatkin G., ed. Modelirovanie krupnomasshtabnoĭ dinamiki atmosfery: Chislennye metody. Novosibirsk: Akademii͡a︡ nauk SSSR, Sibirskoe otd-nie, Vychislitelʹnyĭ t͡s︡entr, 1991.

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39

P, Kurbatkin G., ed. Modelirovanie krupnomasshtabnoĭ dinamiki atmosfery: Metody diagnoza obshcheĭ t͡s︡irkuli͡a︡t͡s︡ii. Novosibirsk: Akademii͡a︡ nauk SSSR, Sibirskoe otd-nie, Vychislitelʹnyĭ t͡s︡entr, 1990.

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40

Menzel, Lucas. Modellierung der Evapotranspiration im System Boden-Pflanze-Atmosphäre. Zürich: Geographisches Institut ETH, 1997.

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41

1956-, Hamilton Kevin, and Ohfuchi Wataru 1963-, eds. High resolution numerical modelling of the atmosphere and ocean. New York: Springer, 2008.

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42

United States. National Environmental Satellite, Data, and Information Service. Atlas of surface marine data 1994. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1994.

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43

Justino, Flávio. The influence of boundary conditions on the last glacial maximum. Aachen: Shaker, 2004.

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44

Grotch, Stanley L. Regional intercomparisons of general circulation model predictions and historical climate data. Washington, D.C: U.S. Dept. of Energy, Office of Energy Research, Office of Basic Energy Sciences, Carbon Dioxide Research Division, 1988.

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45

Zhu, Yong. Geostrophic wave circulations. 2nd ed. Boston: New Knowledge Pub., 2002.

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46

NATO Advanced Research Workshop "Atmospheric Boundary Layers - Modelling and Applications to Environmental Security" (2006 Dubrovnik, Croatia). Atmospheric boundary layers: Nature, theory and applications to environmental modelling and security. Edited by Baklanov Alexander, Grisogono B. (Branko), and Zilitinkevich, S. S. (Sergei Sergeevich), 1936-. New York: Springer, 2011.

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47

NATO Advanced Research Workshop "Atmospheric Boundary Layers: Modelling and Applications to Environmental Security" (2006 Dubrovnik, Croatia). Atmospheric boundary layers: Nature, theory, and application to environmental modelling and security. Edited by Baklanov Alexander and Grisogono B. New York: Springer Science+Business Media, 2007.

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48

Enting, I. G. Future emissions and concentrations of carbon dioxide: Key ocean/atmosphere/land analyses. Australia: CSIRO, 1994.

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49

Friederichs, Petra. Interannuelle und Dekadische Variabilität der Atmosphärischen Zirkulation in Gekoppelten und SST-Getriebenen GCM-Experimenten. Bonn: Asgard Verlag, 2000.

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50

E, Schlesinger M., ed. Physically-based modelling and simulation of climate and climatic change. Dordrecht: Kluwer Academic Publishers, 1988.

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