# | Title | Journal | Year | Citations |
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1 | Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization | Geoscientific Model Development | 2016 | 5,303 |
2 | Root mean square error (RMSE) or mean absolute error (MAE)? – Arguments against avoiding RMSE in the literature | Geoscientific Model Development | 2014 | 3,175 |
3 | The Model of Emissions of Gases and Aerosols from Nature version 2.1 (MEGAN2.1): an extended and updated framework for modeling biogenic emissions | Geoscientific Model Development | 2012 | 2,535 |
4 | The Scenario Model Intercomparison Project (ScenarioMIP) for CMIP6 | Geoscientific Model Development | 2016 | 2,084 |
5 | Description and evaluation of the Model for Ozone and Related chemical Tracers, version 4 (MOZART-4) | Geoscientific Model Development | 2010 | 1,590 |
6 | System for Automated Geoscientific Analyses (SAGA) v. 2.1.4 | Geoscientific Model Development | 2015 | 1,475 |
7 | GLEAM v3: satellite-based land evaporation and root-zone soil moisture | Geoscientific Model Development | 2017 | 1,352 |
8 | The Fire INventory from NCAR (FINN): a high resolution global model to estimate the emissions from open burning | Geoscientific Model Development | 2011 | 1,278 |
9 | Development and evaluation of an Earth-System model – HadGEM2 | Geoscientific Model Development | 2011 | 1,141 |
10 | MIROC-ESM 2010: model description and basic results of CMIP5-20c3m experiments | Geoscientific Model Development | 2011 | 1,070 |
11 | Historical (1750–2014) anthropogenic emissions of reactive gases and aerosols from the Community Emissions Data System (CEDS) | Geoscientific Model Development | 2018 | 1,058 |
12 | The Joint UK Land Environment Simulator (JULES), model description – Part 1: Energy and water fluxes | Geoscientific Model Development | 2011 | 993 |
13 | Development of the GEOS-5 atmospheric general circulation model: evolution from MERRA to MERRA2 | Geoscientific Model Development | 2015 | 822 |
14 | Toward a minimal representation of aerosols in climate models: description and evaluation in the Community Atmosphere Model CAM5 | Geoscientific Model Development | 2012 | 807 |
15 | The Joint UK Land Environment Simulator (JULES), model description – Part 2: Carbon fluxes and vegetation dynamics | Geoscientific Model Development | 2011 | 804 |
16 | The HadGEM2-ES implementation of CMIP5 centennial simulations | Geoscientific Model Development | 2011 | 803 |
17 | The HadGEM2 family of Met Office Unified Model climate configurations | Geoscientific Model Development | 2011 | 765 |
18 | The Norwegian Earth System Model, NorESM1-M – Part 1: Description and basic evaluation of the physical climate | Geoscientific Model Development | 2013 | 725 |
19 | Regional climate modeling on European scales: a joint standard evaluation of the EURO-CORDEX RCM ensemble | Geoscientific Model Development | 2014 | 711 |
20 | High Resolution Model Intercomparison Project (HighResMIP v1.0) for CMIP6 | Geoscientific Model Development | 2016 | 643 |
21 | CAM-chem: description and evaluation of interactive atmospheric chemistry in the Community Earth System Model | Geoscientific Model Development | 2012 | 633 |
22 | The Canadian Earth System Model version 5 (CanESM5.0.3) | Geoscientific Model Development | 2019 | 581 |
23 | A simple two-dimensional parameterisation for Flux Footprint Prediction (FFP) | Geoscientific Model Development | 2015 | 579 |
24 | The shared socio-economic pathway (SSP) greenhouse gas concentrations and their extensions to 2500 | Geoscientific Model Development | 2020 | 539 |
25 | The SURFEXv7.2 land and ocean surface platform for coupled or offline simulation of earth surface variables and fluxes | Geoscientific Model Development | 2013 | 527 |
26 | Global emissions pathways under different socioeconomic scenarios for use in CMIP6: a dataset of harmonized emissions trajectories through the end of the century | Geoscientific Model Development | 2019 | 496 |
27 | The detailed snowpack scheme Crocus and its implementation in SURFEX v7.2 | Geoscientific Model Development | 2012 | 459 |
28 | The Beijing Climate Center Climate System Model (BCC-CSM): the main progress from CMIP5 to CMIP6 | Geoscientific Model Development | 2019 | 458 |
29 | ECCO version 4: an integrated framework for non-linear inverse modeling and global ocean state estimation | Geoscientific Model Development | 2015 | 450 |
30 | The libRadtran software package for radiative transfer calculations (version 2.0.1) | Geoscientific Model Development | 2016 | 447 |
31 | Description and basic evaluation of simulated mean state, internal variability, and climate sensitivity in MIROC6 | Geoscientific Model Development | 2019 | 439 |
32 | PISCES-v2: an ocean biogeochemical model for carbon and ecosystem studies | Geoscientific Model Development | 2015 | 422 |
33 | Assessing the impacts of 1.5 °C global warming – simulation protocol of the Inter-Sectoral Impact Model Intercomparison Project (ISIMIP2b) | Geoscientific Model Development | 2017 | 410 |
34 | Harmonization of global land use change and management for the period 850–2100 (LUH2) for CMIP6 | Geoscientific Model Development | 2020 | 408 |
35 | Description and evaluation of GLOMAP-mode: a modal global aerosol microphysics model for the UKCA composition-climate model | Geoscientific Model Development | 2010 | 406 |
36 | Incremental testing of the Community Multiscale Air Quality (CMAQ) modeling system version 4.7 | Geoscientific Model Development | 2010 | 404 |
37 | The Met Office Unified Model Global Atmosphere 6.0/6.1 and JULES Global Land 6.0/6.1 configurations | Geoscientific Model Development | 2017 | 401 |
38 | Development cycle 2 of the Modular Earth Submodel System (MESSy2) | Geoscientific Model Development | 2010 | 398 |
39 | CHIMERE 2013: a model for regional atmospheric composition modelling | Geoscientific Model Development | 2013 | 392 |
40 | The Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP): overview and description of models, simulations and climate diagnostics | Geoscientific Model Development | 2013 | 388 |
41 | Modeling global water use for the 21st century: the Water Futures and Solutions (WFaS) initiative and its approaches | Geoscientific Model Development | 2016 | 379 |
42 | The Met Office Unified Model Global Atmosphere 7.0/7.1 and JULES Global Land 7.0 configurations | Geoscientific Model Development | 2019 | 372 |
43 | Design and implementation of the infrastructure of HadGEM3: the next-generation Met Office climate modelling system | Geoscientific Model Development | 2011 | 371 |
44 | The OASIS3 coupler: a European climate modelling community software | Geoscientific Model Development | 2013 | 360 |
45 | Historical greenhouse gas concentrations for climate modelling (CMIP6) | Geoscientific Model Development | 2017 | 350 |
46 | Climate forcing reconstructions for use in PMIP simulations of the last millennium (v1.0) | Geoscientific Model Development | 2011 | 349 |
47 | The Land Use Model Intercomparison Project (LUMIP) contribution to CMIP6: rationale and experimental design | Geoscientific Model Development | 2016 | 343 |
48 | SEAS5: the new ECMWF seasonal forecast system | Geoscientific Model Development | 2019 | 331 |
49 | Historic global biomass burning emissions for CMIP6 (BB4CMIP) based on merging satellite observations with proxies and fire models (1750–2015) | Geoscientific Model Development | 2017 | 322 |
50 | Description and evaluation of a new four-mode version of the Modal Aerosol Module (MAM4) within version 5.3 of the Community Atmosphere Model | Geoscientific Model Development | 2016 | 313 |