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A spatial distribution model of cork oak (Quercus suber) in southwestern Spain : A suitable tool for reforestationHIDALGO, P. J; MARIN, J. M; QUIJADA, J et al.Forest ecology and management. 2008, Vol 255, Num 1, pp 25-34, issn 0378-1127, 10 p.Article

A conservative adaptive wavelet method for the shallow-water equations on staggered gridsDUBOS, T; KEVLAHAN, N. K-R.Quarterly Journal of the Royal Meteorological Society. 2013, Vol 139, Num 677, pp 1997-2020, issn 0035-9009, 24 p., bArticle

Regional climate modellingLANRISE, René.Journal of computational physics (Print). 2008, Vol 227, Num 7, pp 3641-3666, issn 0021-9991, 26 p.Article

Impact of dust particle non-sphericity on climate simulationsRÄISÄNEN, P; HAAPANALA, P; CHUNG, C. E et al.Quarterly Journal of the Royal Meteorological Society. 2013, Vol 139, Num 677, pp 2222-2232, issn 0035-9009, 11 p., bArticle

Can we believe predictions of climate change?MITCHELL, John F. B.Quarterly Journal of the Royal Meteorological Society. 2004, Vol 130, Num 602, pp 2341-2360, issn 0035-9009, 20 p., AArticle

Introduction to special section : Regional climate modeling revisitedGIORGI, F; MEARNS, L. O.Journal of geophysical research. 1999, Vol 104, Num D6, pp 6335-6352, issn 0148-0227Article

Of entropy production by radiative processes in a conceptual climate modelPELKOWSKI, Joachim.Meteorologische Zeitschrift (Stuttgart). 2012, Vol 21, Num 5, pp 439-457, issn 0941-2948, 19 p.Article

Present and future offshore wind power potential in northern Europe based on downscaled global climate runs with adjusted SST and sea ice coverBARSTAD, Idar; SORTEBERG, Asgeir; DOS-SANTOS MESQUITA, Michel et al.Renewable energy. 2012, Vol 44, pp 398-405, issn 0960-1481, 8 p.Article

On the statistical evaluation of climate model experiments : An editorial commentMEARNS, L. O.Climatic change. 1997, Vol 37, Num 3, pp 443-448, issn 0165-0009Article

Earth system models of intermediate complexity: closing the gap in the spectrum of climate system modelsCLAUSSEN, M; MYSAK, L. A; CALOV, R et al.Climate dynamics. 2002, Vol 18, Num 7, pp 579-586, issn 0930-7575Article

Organizational structure and the behavior of firms : Implications for integrated assessmentDECANIO, Stephen J; DIBBLE, Catherine; AMIR-ATEFI, Keyvan et al.Climatic change. 2001, Vol 48, Num 2-3, pp 487-514, issn 0165-0009Article

Climate simulation over CORDEX Africa domain using the fifth-generation Canadian Regional Climate Model (CRCM5)HERNANDEZ-DIAZ, Leticia; LAPRISE, René; SUSHAMA, Laxmi et al.Climate dynamics. 2013, Vol 40, Num 5-6, pp 1415-1433, issn 0930-7575, 19 p.Article

Impact of anthropogenic absorbing aerosols on clouds and precipitation: A review of recent progressesWAN, Chien.Atmospheric research. 2013, Vol 122, pp 237-249, issn 0169-8095, 13 p.Article

A comparison of two numerical weather prediction methods for diagnosing fast-physics errors in climate modelsKLOCKE, D; RODWELL, M. J.Quarterly Journal of the Royal Meteorological Society. 2014, Vol 140, Num 679, pp 517-524, issn 0035-9009, 8 p., bArticle

Development of local climate model : On nesting methodsKIDA, H.Kyoto Daigaku Bōsai Kenkyūjo nenpō. 1995, Num 38, pp 249-258, issn 0386-412X, B2Article

Seasonality of polar surface warming amplification in climate simulationsJIANHUA LU; MING CAI.Geophysical research letters. 2009, Vol 36, Num 16, issn 0094-8276, L16704.1-L16704.6Article

Dynamical Downscaling over the Gulf of St. Lawrence using the Canadian Regional Climate ModelLANLI GUO; PERRIE, Will; ZHENXIA LONG et al.Atmosphere-ocean. 2013, Vol 51, Num 3, pp 265-283, issn 0705-5900, 19 p.Article

Interactions between tropospheric chemistry and climate model temperature and humidity biasesO'CONNOR, F. M; JOHNSON, C. E; MORGENSTEM, O et al.Geophysical research letters. 2009, Vol 36, Num 16, issn 0094-8276, L16801.1-L16801.6Article

Mathematical and physical basis of general circulation models of climateHUNT, J. C. R; MITCHELL, J. F. B; TETT, S. F. B et al.Zeitschrift für angewandte Mathematik und Mechanik. 1996, Vol 76, pp 501-508, issn 0044-2267, SUP4Conference Paper

Managing Software Complexity and Variability in Coupled Climate Models : CLIMATE CHANGE: SCIENCE AND SOFTWARERUGABER, Spencer; DUNLAP, Rocky; MARK, Leo et al.IEEE software. 2011, Vol 28, Num 6, pp 43-48, issn 0740-7459, 6 p.Article

Dynamics of a global-scale vegetation modelHUGHES, John K; VALDES, Paul J; BETTS, Richard et al.Ecological modelling. 2006, Vol 198, Num 3-4, pp 452-462, issn 0304-3800, 11 p.Article

The climatology of explosive cyclogenesis in two general circulation modelsSANDERS, F; MULLEN, S. L.Monthly weather review. 1996, Vol 124, Num 9, pp 1948-1954, issn 0027-0644Article

Modèles climatiques sur supercalculateurs massivement parallèles = Climate model on massively parallel computersVITART, F; ROUVILLOIS, P.Chocs (Villeneuve-Saint-Georges). 1993, Num 9, pp 91-96, issn 1157-741XArticle

Simplifying the task of generating climate simulations and visualizationsMICKELSON, Sheri A; TAYLOR, John A; DVORAK, Mike et al.Lecture notes in computer science. 2002, issn 0302-9743, isbn 3-540-43591-3, 3Vol, vol. 2, 758-766Conference Paper

Dissipative heating in climate modelsFIEDLER, B. H.Quarterly Journal of the Royal Meteorological Society. 2000, Vol 126, Num 564, pp 925-939, issn 0035-9009, AArticle

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