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BibEntryCargo > Journal: Geoscientific Model Development & Volume : 8 or 9

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Firstname:
Adhikari, Surendra; Ivins, Erik R.; Larour, Eric; (1) · Akoglu, E.; Libralato, S.; Salihoglu, B.; Oguz, T.; Solidoro, C.; (1) · Archer-Nicholls, S.; Lowe, D.; Darbyshire, E.; Morgan, W. T.; Bela, M. M.; Pereira, G.; Trembath, J.; Kaiser, J. W.; Longo, K. M.; Freitas, S. R.; Coe, H.; McFiggans, G.; (1) · Aumont, O.; Ethé, C.; Tagliabue, A.; Bopp, L.; Gehlen, M.; (1) · Beecham, Jonathan; Bruggeman, Jorn; Aldridge, John; Mackinson, Steven; (1) · Bueler, E.; van Pelt, W.; (1) · Cai, X.; Yang, Z.-L.; Fisher, J. B.; Zhang, X.; Barlage, M.; Chen, F.; (1) · Dupont, F.; Higginson, S.; Bourdallé-Badie, R.; Lu, Y.; Roy, F.; Smith, G. C.; Lemieux, J.-F.; Garric, G.; Davidson, F.; (1) · Gallice, Aurélien; Bavay, Mathias; Brauchli, Tristan; Comola, Francesco; Lehning, Michael; Huwald, Hendrik; (1) · Goto, D.; Dai, T.; Satoh, M.; Tomita, H.; Uchida, J.; Misawa, S.; Inoue, T.; Tsuruta, H.; Ueda, K.; Ng, C. F. S.; Takami, A.; Sugimoto, N.; Shimizu, A.; Ohara, T.; Nakajima, T.; (1) · Hu, Zhiyuan; Zhao, Chun; Huang, Jianping; Leung, L. Ruby; Qian, Yun; Yu, Hongbin; Huang, Lei; Kalashnikova, Olga V.; (1) · Katragkou, E.; García-Díez, M.; Vautard, R.; Sobolowski, S.; Zanis, P.; Alexandri, G.; Cardoso, R. M.; Colette, A.; Fernandez, J.; Gobiet, A.; Goergen, K.; Karacostas, T.; Knist, S.; Mayer, S.; Soares, P. M. M.; Pytharoulis, I.; Tegoulias, I.; Tsikerdekis, A.; Jacob, D.; (1) · Kerry, Colette; Powell, Brian; Roughan, Moninya; Oke, Peter; (1) · Larour, Eric; Utke, Jean; Bovin, Anton; Morlighem, Mathieu; Perez, Gilberto; (1) · Le Morzadec, K.; Tarasov, L.; Morlighem, M.; Seroussi, H.; (1) · Mallard, M. S.; Nolte, C. G.; Spero, T. L.; Bullock, O. R.; Alapaty, K.; Herwehe, J. A.; Gula, J.; Bowden, J. H.; (1) · Mar, Kathleen A.; Ojha, Narendra; Pozzer, Andrea; Butler, Tim M.; (1) · Orr, J. C.; Epitalon, J.-M.; (1) · Rae, J. G. L.; Hewitt, H. T.; Keen, A. B.; Ridley, J. K.; West, A. E.; Harris, C. M.; Hunke, E. C.; Walters, D. N.; (1) · Stegehuis, A. I.; Vautard, R.; Ciais, P.; Teuling, A. J.; Miralles, D. G.; Wild, M.; (1) · Tessum, C. W.; Hill, J. D.; Marshall, J. D.; (1) · Tucker, Gregory E.; Hobley, Daniel E. J.; Hutton, Eric; Gasparini, Nicole M.; Istanbulluoglu, Erkan; Adams, Jordan M.; Nudurupati, Sai Siddartha; (1) · Volker, P. J. H.; Badger, J.; Hahmann, A. N.; Ott, S.; (1) · West, Alex E.; McLaren, Alison J.; Hewitt, Helene T.; Best, Martin J.; (1) · Westermann, S.; Langer, M.; Boike, J.; Heikenfeld, M.; Peter, M.; Etzelmüller, B.; Krinner, G.; (1) · Wickert, A. D.; (2) · Zhong, Min; Saikawa, Eri; Liu, Yang; Naik, Vaishali; Horowitz, Larry W.; Takigawa, Masayuki; Zhao, Yu; Lin, Neng-Huei; Stone, Elizabeth A.; (1) · von Boetticher, Albrecht; Turowski, Jens M.; McArdell, Brian W.; Rickenmann, Dieter; Kirchner, James W.; (1)
Title:
<i>Couplerlib</i>: a metadata-driven library for the integration of multiple models of higher and lower trophic level marine systems with inexact functional group matching (1) · A high-resolution ocean and sea-ice modelling system for the Arctic and North Atlantic oceans (1) · A new sub-grid surface mass balance and flux model for continental-scale ice sheet modelling: testing and last glacial cycle (1) · Air quality modeling with WRF-Chem v3.5 in East Asia: sensitivity to emissions and evaluation of simulated air quality (1) · An approach to computing discrete adjoints for MPI-parallelized models applied to Ice Sheet System Model 4.11 (1) · An observation-constrained multi-physics WRF ensemble for simulating European mega heat waves (1) · Application of a global nonhydrostatic model with a stretched-grid system to regional aerosol simulations around Japan (1) · CellLab-CTS 2015: continuous-time stochastic cellular automaton modeling using Landlab (1) · Characterising Brazilian biomass burning emissions using WRF-Chem with MOSAIC sectional aerosol (1) · DebrisInterMixing-2.3: a finite volume solver for three-dimensional debris-flow simulations with two calibration parameters – Part 1: Model description (1) · Development and evaluation of a high-resolution reanalysis of the East Australian Current region using the Regional Ocean Modelling System (ROMS 3.4) and Incremental Strong-Constraint 4-Dimensional Variational (IS4D-Var) data assimilation (1) · Development of the Global Sea Ice 6.0 CICE configuration for the Met Office Global Coupled model (1) · EwE-F 1.0: an implementation of Ecopath with Ecosim in Fortran 95/2003 for coupling and integration with other models (1) · ISSM-SESAW v1.0: mesh-based computation of gravitationally consistent sea-level and geodetic signatures caused by cryosphere and climate driven mass change (1) · Improved routines to model the ocean carbonate system: mocsy 2.0 (1) · Integration of nitrogen dynamics into the Noah-MP land surface model v1.1 for climate and environmental predictions (1) · Mass-conserving subglacial hydrology in the Parallel Ice Sheet Model version 0.6 (1) · Open-source modular solutions for flexural isostasy: gFlex v1.0 (2) · Ozone air quality simulations with WRF-Chem (v3.5.1) over Europe: model evaluation and chemical mechanism comparison (1) · PISCES-v2: an ocean biogeochemical model for carbon and ecosystem studies (1) · Regional climate hindcast simulations within EURO-CORDEX: evaluation of a WRF multi-physics ensemble (1) · Simulating the thermal regime and thaw processes of ice-rich permafrost ground with the land-surface model CryoGrid 3 (1) · StreamFlow 1.0: an extension to the spatially distributed snow model Alpine3D for hydrological modelling and deterministic stream temperature prediction (1) · Technical challenges and solutions in representing lakes when using WRF in downscaling applications (1) · The Explicit Wake Parametrisation V1.0: a wind farm parametrisation in the mesoscale model WRF (1) · The location of the thermodynamic atmosphere–ice interface in fully coupled models – a case study using JULES and CICE (1) · Trans-Pacific transport and evolution of aerosols: evaluation of quasi-global WRF-Chem simulation with multiple observations (1) · Twelve-month, 12 km resolution North American WRF-Chem v3.4 air quality simulation: performance evaluation (1)
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URL:
https://gmd.copernicus.org/articles/8/1085/2015/ (1) · https://gmd.copernicus.org/articles/8/1613/2015/ (1) · https://gmd.copernicus.org/articles/8/2285/2015/ (1) · https://gmd.copernicus.org/articles/8/2465/2015/ (1) · https://gmd.copernicus.org/articles/8/957/2015/ (1) · https://gmd.copernicus.org/articles/9/1/2016/ (1) · https://gmd.copernicus.org/articles/9/1201/2016/ (1) · https://gmd.copernicus.org/articles/9/1725/2016/ (1) · https://gmd.copernicus.org/articles/9/2909/2016/ (1) · https://gmd.copernicus.org/articles/9/3779/2016/ (1) · https://gmd.copernicus.org/articles/9/947/2016/ (1) · https://gmd.copernicus.org/articles/9/997/2016/ (1) · https://www.geosci-model-dev.net/8/1577/2015/ (1) · https://www.geosci-model-dev.net/8/2221/2015/ (1) · https://www.geosci-model-dev.net/8/235/2015/ (1) · https://www.geosci-model-dev.net/8/2687/2015/ (1) · https://www.geosci-model-dev.net/8/3199/2015/ (1) · https://www.geosci-model-dev.net/8/3715/2015/ (1) · https://www.geosci-model-dev.net/8/485/2015/ (1) · https://www.geosci-model-dev.net/8/549/2015/ (1) · https://www.geosci-model-dev.net/8/603/2015/ (1) · https://www.geosci-model-dev.net/9/1087/2016/ (1) · https://www.geosci-model-dev.net/9/1125/2016/ (1) · https://www.geosci-model-dev.net/9/3699/2016/ (1) · https://www.geosci-model-dev.net/9/3907/2016/ (1) · https://www.geosci-model-dev.net/9/4491/2016/ (1) · https://www.geosci-model-dev.net/9/523/2016/ (1) · https://www.geosci-model-dev.net/9/823/2016/ (1) · https://www.geosci-model-dev.net/9/997/2016/ (1)
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