Livrables
Report on model configurations for Stream 1 integrations agreed by all partners and published on project website
Assessment of processes benefitting from increased resolutionAssessment of the impact of large-scale drivers (from WP5) on processes that benefit from increased resolution across the multi-model ensemble, and their sensitivity to climate change based on the WP6 Stream 1 simulations
Statistics and representation of events in CMIP5, CORDEX and first PRIMAVERA output.Report on statistics and representation of relevant extreme and compound events in CMIP5, CORDEX and from first PRIMAVERA output
Document impact of sea ice and snow changesReport documenting the impact of sea ice and snow changes on European climate of the most recent period and its sensitivity to resolution and physics choices
Comparison case study for GovernmentComparison case study for Government of forms of climate information available from PRIMAVERA and from other sources
Data Management PlanProduce the data management plan document and post on the project website
Conclusions on minimum requirement for resolutionConclusions on the minimum requirements in terms of model resolution for a reliable representation of the North Atlantic, Arctic and Pacific climates, the tropical cyclones and their impact on the European climate and on their projected changes in future based on Stream 2 simulations from WP6
Report on end-user requirementsReport for WP leaders documenting end-user requirements for climate information and preferred delivery and visualisation methods
Document detailing where PRIMAVERA outcomes have been presented to end-usersDocument on public web site detailing all meetings and workshops where PRIMAVERA outcomes have been presented and which key end-users were present (M48)
Publication of PRIMAVERA Stream 1 data setPublication of PRIMAVERA data set for Stream 1 through data DOIs and data description publication
Review of DMP and lessons learnt for future projectsReview of outcomes of the DMP and document lessons for future EU and international big data projects
Quantification of aerosol-radiation-cloud interactions.Quantification of robustness of aerosol-radiation-cloud interactions across models and resolutions
Description of use cases identifiedReport describing the use cases, identified by policymakers and end-user needs for information on future extremes and compound events
Assessment of benefits of increased ocean resolutionAssessment of the benefits of increased resolution on the North Atlantic ocean dynamics and processes and the Arctic sea ice conditions and their robustness across the pre-PRIMAVERA multi-model ensemble listed in milestone MS1
Document protocol for forced and coupled sensitivity experimentsReport documenting the selected protocol for both forced and coupled sensitivity experiments in tasks 5.1 and 5.2
Physics of extreme and compound events from PRIMAVERA output.Report on physics of extreme and compound events from PRIMAVERA output
Quantify impact of resolution on European climate changeQuantify and further consolidate the impact of resolution on future European climate change (including changes in extreme and compound events in cooperation with WP2,10) obtained from all three approaches, and develop a novel measure of European modelling uncertainty by comparing the spread in climate projections from the ensemble of core integrations with that obtained from the multi-model runs performed here
Document impacts of AMV and IPVReport documenting the impacts of AMV and IPV, and changes in direct radiative forcing, on the European climate of the most recent period and sensitivity to resolution and physics choices
Scientific input for risk assessmentReport with scientific input for risk assessments for policymaker and each end-user
Exploitation of project data by the climate research communityAn important action for the PRIMAVERA project is to ensure the climate research community has access to project data for use in research in their areas of specialism. This Deliverable builds on the Data Policies devised for the Stream 1 and Stream 2 datasets and describes a management framework under which data can be disseminated, climate researchers can engage to access data, and policies with respect to intellectual property rights of the data are in place. The success of PRIMAVERA depends on broader engagement with the extra-EU research community – many groups, with foci and expertise complementary to that in PRIMAVERA, would like to analyse PRIMAVERA data. A robust set of guidelines will be developed for how outsiders can collaborate substantively with PRIMAVERA beyond simply downloading the HighResMIP data from the ESGF. The guidelines will indicate points of contact, potential collaboration opportunities, and rules of engagement, including protection of intellectual property rights. The PRIMAVERA data use and engagement guidelines should remain valid beyond the end date of the project to ensure the outcomes endure.
Evaluation report of project outcomes by end-usersEvaluation report of project outcomes by end-users: A user-driven evaluation to summarise a) the user needs for 2050 climate projections, their mode of delivery and their communication within the identified sectors, b) how PRIMAVERA 2050 projections advance CMIP5 2050 projections to answer the user needs and c) how the project outcomes strengthen the competitiveness and growth of companies/organisations and policy. The annex of the report will also contain the minutes of meetings that have been conducted.
Quantification of benefits of increased atmosphere resolutionQuantification of the benefits of increased resolution in the atmosphere only versus in the coupled system as well as their robustness across the WP6 Stream 1 simulations for processes which impact European weatherand climate such as atmospheric blocking oceanseaiceatmosphere interactions in the Arctic region and for tropical cyclones and their extratropical transition
Documenting scenarios for 2015-34 European climateReport documenting scenarios for European climate in 2015-34, taking into account the potential impacts of oceanic modes, regional phenomena, direct radiative effects due to anthropogenic forcing and the sensitivity of responses to resolution and physics choices.
Report on strategy for integrating metrics softwareReport for distribution to WP leaders on strategy for integrating metrics software into different partner institutions
Final summary and synthesis of resultsFinal Summary Report: This report will synthesise the results, and will quantify and assess the robustness of climate variability and change over Europe to the representation of small scales. This will combine the approaches used in WP2, 3, 4, 5, the metrics from WP1 and model integrations from WP4 and 6, to assess the consequent climate risks to sectors represented in WP10, 11.
Quantification of land-atmosphere coupling strength responseQuantification and attribution of land-atmosphere coupling strength response to atmospheric resolution, forcing (including the temporal distribution of precipitation), land surface physics and robustness across multi-model resolution ensemble
PRIMAVERA Review paperPRIMAVERA review paper describing the key findings of the project, the role of resolution, physics and sub-grid variability, to inform scientific community via HighResMIP and governments via IPCC AR6 process
First examples of common process-based metrics applicationFirst examples of the application of common process-based metrics to existing climate experiments with a focus on European climate variability and change
Assessment of improved representation of atmospheric processesAssessment of an improved representation of atmospheric microphysical processes at km-scales, thereby permitting a direct representation of lightning, and the impacts on European climate via cloud-aerosol- microphysics-precipitation interactions. Implications for climate risk due to changes in electrical storms in present day and future climate
End-user Dissemination and Communication planInitial plan for communication and dissemination with various user audiences.
Quantification of effect of improved sea ice processesQuantification of the effect of improved sea ice processes on representing Arctic sea ice and the impact on European climate and robustness across multi-model resolution ensemble
Progress summary following review of WPsProgress Summary Report: Following the Scientific Coordinators review of work package progress at M24, and the Intra-Project Workshop that will be held, they will produce a report detailing the progress of PRIMAVERA so far and the approach that will be taken for Stream2 of the project.
Assessment of representation of convection influencesAssess the representation of convection influences on the diurnal cycle phase and its impacts on land-surface–atmosphere fluxes, with potential implications for climate change impacts over Southern Europe. Use standard models with parameterised atmospheric convection, stochastic physics models and models with ~5km atmosphere resolution
Quantification of benefits of enhanced upper ocean mixing processesQuantification of the effect of improved sea ice processes on representing Arctic sea ice and the impact on European climate and robustness across multi-model resolution ensemble
Quantification of the relative cost/performance of different approaches to going beyond simple parameterisationQuantify the relative cost/performance of the different approaches to going beyond simple parameterisation (making use of the simulated historical period and comparing with observations), the relative strengths and weaknesses of each approach, the consequences for representing particular climate extremes, their impacts on climate risks and sectors considered in WP10,11
Quantification based on WP2 findings and initial sensitivity experiments in WP3Based on WP2 findings and initial sensitivity experiments performed in WP3, quantification of the relative merits of increased resolution and model developments on the North Atlantic, Arctic, Pacific and tropical climates and their robustness across the PRIMAVERA models to provide recommendations to WP6 for the Stream 2 design
Policy briefings for governments, detailing the significance of PRIMAVERA results
PRIMAVERA User Interface PlatformSector specific case studies and climate projection factsheets
Communication material: Online delivery of sector specific case studies and climate projection factsheets, via the UIP to a wide end-user cross-sectoral audience
Strategy and package of metrics, in project repository coded using freely available software, for the analysis of the PRIMAVERA and CMIP6 experiments, with a focus on European climate variability and change
Datasets from all model integrations: fully documented with appropriate meta-dataDatasets from all model integrations, fully documented with appropriate meta-data, available in standard data format, together with methods for accessing from the central JASMIN platform to comply with Open Data Access requirements and for HighResMIP contribution (suitably subsetted or regridded as necessary)
Stream 2 historical AMIP runsHistorical AMIP runs completed at high and low resolution
Stream 1 future AMIP runsFuture AMIP runs completed at high and low resolution
Stream 2 future AMIP runsFuture AMIP runs completed at high and low resolution.
Tools for data conversion to CMOR formatTools for data conversion to CMOR format and validation procedures for model datasets
Stream 1 control and historic coupled runsCoupled runs, both control and historic, completed at both high and low resolution
Tools for assessment of climate experimentsTools for the processbased assessment of the PRIMAVERA climate experiments
PRIMAVERA Public websitePublicfaccing website for PRIMAVERA as part of project communications
Stream 1 historical AMIP runsFuture AMIP runs completed at high and low resolution
Stream 2 control and historic coupled runsCoupled runs, both control and historic, completed at both high and low resolution
Initial training for JASMIN usersDeliver initial training for users of the JASMIN platform to include onsite training course and webbased documentation the latter to also support Open Data Access
Answering user needs with a visual prototype: Online delivery of a sector-specific prototype, via the UIP to a wide end-user audience
Publication of PRIMAVERA data set for Stream 2 through data DOIs and data description publication
Publications
Auteurs:
Kristian Strommen, Tim N. Palmer
Publié dans:
Quarterly Journal of the Royal Meteorological Society, Numéro 145/718, 2019, Page(s) 147-163, ISSN 0035-9009
Éditeur:
Royal Meteorological Society
DOI:
10.1002/qj.3414
Auteurs:
Koenigk, T., Fuentes-Franco, R., Meccia, V., Gutjahr, O., Jackson, L. C., New, A. L., Ortega, P., Roberts, C., Roberts, M., Arsouze, T., Iovino, D., Moine, M.-P., and Sein, D. V.
Publié dans:
Ocean Science discussions, 2020, ISSN 1866-3516
Éditeur:
Copernicus Publications
DOI:
10.5194/os-2020-41
Auteurs:
Leandro Ponsoni, François Massonnet, David Docquier, Guillian Van Achter, Thierry Fichefet
Publié dans:
The Cryosphere, Numéro 14/7, 2020, Page(s) 2409-2428, ISSN 1994-0424
Éditeur:
CERN
DOI:
10.5194/tc-14-2409-2020
Auteurs:
Axel Lauer, Veronika Eyring, Omar Bellprat, Lisa Bock, Bettina K. Gier, Alasdair Hunter, Ruth Lorenz, Núria Pérez-Zanón, Mattia Righi, Manuel Schlund, Daniel Senftleben, Katja Weigel, Sabrina Zechlau
Publié dans:
Geoscientific Model Development, Numéro 13/9, 2020, Page(s) 4205-4228, ISSN 1991-9603
Éditeur:
European Geosciences Union
DOI:
10.5194/gmd-13-4205-2020
Auteurs:
K. Strommen, P. A. G. Watson, T. N. Palmer
Publié dans:
Journal of Geophysical Research: Atmospheres, Numéro 124/23, 2019, Page(s) 12726-12740, ISSN 2169-897X
Éditeur:
Wiley
DOI:
10.1029/2019jd030732
Auteurs:
Tido Semmler, Sergey Danilov, Paul Gierz, Helge F. Goessling, Jan Hegewald, Claudia Hinrichs, Nikolay Koldunov, Narges Khosravi, Longjiang Mu, Thomas Rackow, Dmitry V. Sein, Dmitry Sidorenko, Qiang Wang, Thomas Jung
Publié dans:
Journal of Advances in Modeling Earth Systems, Numéro 12/9, 2020, ISSN 1942-2466
Éditeur:
American Geophysical Union
DOI:
10.1029/2019ms002009
Auteurs:
Daniel T. McCoy, Paul Field, Hamish Gordon, Gregory S. Elsaesser, Daniel P. Grosvenor
Publié dans:
Atmospheric Chemistry and Physics, Numéro 20/7, 2020, Page(s) 4085-4103, ISSN 1680-7324
Éditeur:
European Geosciences Union
DOI:
10.5194/acp-20-4085-2020
Auteurs:
Virna L. Meccia, Federico Fabiano, Paolo Davini, Susanna Corti
Publié dans:
Geophysical Research Letters, Numéro 47/3, 2020, ISSN 0094-8276
Éditeur:
American Geophysical Union
DOI:
10.1029/2019gl085951
Auteurs:
Eveline C. van der Linden, Reindert J. Haarsma, Gerard van der Schrier
Publié dans:
Hydrology and Earth System Sciences, Numéro 23/1, 2019, Page(s) 191-206, ISSN 1607-7938
Éditeur:
Copernicus Publications
DOI:
10.5194/hess-23-191-2019
Auteurs:
Eduardo Moreno-Chamarro, Pablo Ortega, and François Massonnet
Publié dans:
Geoscientific Model Development discussion, 2019, ISSN 1866-3516
Éditeur:
Copernicus Publications
DOI:
10.5194/gmd-2019-325
Auteurs:
Rein Haarsma, Mario Acosta, Rena Bakhshi, Pierre-Antoine Bretonnière, Louis-Philippe Caron, Miguel Castrillo, Susanna Corti, Paolo Davini, Eleftheria Exarchou, Federico Fabiano, Uwe Fladrich, Ramon Fuentes Franco, Javier García-Serrano, Jost von Hardenberg, Torben Koenigk, Xavier Levine, Virna Loana Meccia, Twan van Noije, Gijs van den Oord, Froila M. Palmeiro, Mario Rodrigo, Yohan Ruprich-Rober
Publié dans:
Geoscientific Model Development, Numéro 13/8, 2020, Page(s) 3507-3527, ISSN 1991-9603
Éditeur:
Copernicus Publications
DOI:
10.5194/gmd-13-3507-2020
Auteurs:
Alba de la Vara, William Cabos, Dmitry V. Sein, Dmitry Sidorenko, Nikolay V. Koldunov, Shunya Koseki, Pedro M. M. Soares, Sergey Danilov
Publié dans:
Climate Dynamics, Numéro 54/11-12, 2020, Page(s) 4733-4757, ISSN 0930-7575
Éditeur:
Springer Verlag
DOI:
10.1007/s00382-020-05256-9
Auteurs:
Paolo Davini, Jost von Hardenberg, Susanna Corti, Hannah M. Christensen, Stephan Juricke, Aneesh Subramanian, Peter A. G. Watson, Antje Weisheimer, Tim N. Palmer
Publié dans:
Geoscientific Model Development, Numéro 10/3, 2017, Page(s) 1383-1402, ISSN 1991-9603
Éditeur:
Copernicus Publications
DOI:
10.5194/gmd-10-1383-2017
Auteurs:
Paula L. M. Gonzalez, David J. Brayshaw, Giuseppe Zappa
Publié dans:
Climate Dynamics, Numéro 53/7-8, 2019, Page(s) 4095-4113, ISSN 0930-7575
Éditeur:
Springer Verlag
DOI:
10.1007/s00382-019-04776-3
Auteurs:
Ramón Fuentes-Franco, Torben Koenigk
Publié dans:
Climate Dynamics, Numéro 53/3-4, 2019, Page(s) 1765-1781, ISSN 0930-7575
Éditeur:
Springer Verlag
DOI:
10.1007/s00382-019-04735-y
Auteurs:
Joël J.‐M. Hirschi, Bernard Barnier, Claus Böning, Arne Biastoch, Adam T. Blaker, Andrew Coward, Sergey Danilov, Sybren Drijfhout, Klaus Getzlaff, Stephen M. Griffies, Hiroyasu Hasumi, Helene Hewitt, Doroteaciro Iovino, Takao Kawasaki, Andrew E. Kiss, Nikolay Koldunov, Alice Marzocchi, Jennifer V. Mecking, Ben Moat, Jean‐Marc Molines, Paul G. Myers, Thierry Penduff, Malcolm Roberts, Anne‐M
Publié dans:
Journal of Geophysical Research: Oceans, Numéro 125/4, 2020, ISSN 2169-9275
Éditeur:
American Geophysical Union
DOI:
10.1029/2019JC015522
Auteurs:
David Docquier, Ramón Fuentes-Franco, Torben Koenigk, Thierry Fichefet
Publié dans:
Frontiers in Earth Science, Numéro 8, 2020, ISSN 2296-6463
Éditeur:
CERN
DOI:
10.3389/feart.2020.00172
Auteurs:
Doug M. Smith; James A. Screen; Clara Deser; Judah Cohen; John C. Fyfe; Javier García-Serrano; Thomas Jung; Vladimir Kattsov; Daniela Matei; Rym Msadek; Yannick Peings; Michael Sigmond; Jinro Ukita; Jin-Ho Yoon; Xiangdong Zhang
Publié dans:
Geoscientific Model Development, Vol 12, Pp 1139-1164 (2019), Numéro 5, 2018, ISSN 1866-3516
Éditeur:
Copernicus Pubications
DOI:
10.5194/gmd-2018-82
Auteurs:
L. C. Jackson, M. J. Roberts, H. T. Hewitt, D. Iovino, T. Koenigk, V. L. Meccia, C. D. Roberts, Y. Ruprich-Robert, R. A. Wood
Publié dans:
Climate Dynamics, Numéro 55/7-8, 2020, Page(s) 1711-1732, ISSN 0930-7575
Éditeur:
Springer Verlag
DOI:
10.1007/s00382-020-05345-9
Auteurs:
Dmitry V. Sein, Nikolay V. Koldunov, Sergey Danilov, Dmitry Sidorenko, Claudia Wekerle, William Cabos, Thomas Rackow, Patrick Scholz, Tido Semmler, Qiang Wang, Thomas Jung
Publié dans:
Journal of Advances in Modeling Earth Systems, Numéro 10/8, 2018, Page(s) 2026-2041, ISSN 1942-2466
Éditeur:
American Geophysical Union
DOI:
10.1029/2018ms001327
Auteurs:
François Massonnet, Martin Ménégoz, Mario Acosta, Xavier Yepes-Arbós, Eleftheria Exarchou, Francisco J. Doblas-Reyes
Publié dans:
Geoscientific Model Development, Numéro 13/3, 2020, Page(s) 1165-1178, ISSN 1991-9603
Éditeur:
European Geosciences Union
DOI:
10.5194/gmd-13-1165-2020
Auteurs:
Malcolm John Roberts, Joanne Camp, Jon Seddon, Pier Luigi Vidale, Kevin Hodges, Benoit Vanniere, Jenny Mecking, Rein Haarsma, Alessio Bellucci, Enrico Scoccimarro, Louis-Philippe Caron, Fabrice Chauvin, Laurent Terray, Sophie Valcke, Marie-Pierre Moine, Dian Putrasahan, Christopher Roberts, Retish Senan, Colin Zarzycki, Paul Ullrich
Publié dans:
Journal of Climate, Numéro 33/7, 2020, Page(s) 2557-2583, ISSN 0894-8755
Éditeur:
American Meteorological Society
DOI:
10.1175/JCLI-D-19-0639.1
Auteurs:
Julien Boé, Laurent Terray, Marie-Pierre Moine, Sophie Valcke, Alessio Bellucci, Sybren Drijfhout, Rein Haarsma, Katja Lohmann, Dian A. Putrasahan, Chris Roberts, Malcom Roberts, Enrico Scoccimarro, Jon Seddon, Retish Senan, Klaus Wyser
Publié dans:
Environmental Research Letters, Numéro 15/8, 2020, Page(s) 084038, ISSN 1748-9326
Éditeur:
Institute of Physics Publishing
DOI:
10.1088/1748-9326/ab8a89
Auteurs:
Mattia Righi, Bouwe Andela, Veronika Eyring, Axel Lauer, Valeriu Predoi, Manuel Schlund, Javier Vegas-Regidor, Lisa Bock, Björn Brötz, Lee de Mora, Faruk Diblen, Laura Dreyer, Niels Drost, Paul Earnshaw, Birgit Hassler, Nikolay Koldunov, Bill Little, Saskia Loosveldt Tomas, Klaus Zimmermann
Publié dans:
Geoscientific Model Development, Numéro 13/3, 2020, Page(s) 1179-1199, ISSN 1991-9603
Éditeur:
European Geosciences Union
DOI:
10.5194/gmd-13-1179-2020
Auteurs:
J. C. Acosta Navarro, P. Ortega, L. Batté, D. Smith, P. A. Bretonnière, V. Guemas, F. Massonnet, V. Sicardi, V. Torralba, E. Tourigny, F. J. Doblas‐Reyes
Publié dans:
Geophysical Research Letters, Numéro 47/5, 2020, ISSN 0094-8276
Éditeur:
American Geophysical Union
DOI:
10.1029/2019gl086753
Auteurs:
Malcolm J. Roberts, Laura C. Jackson, Christopher D. Roberts, Virna Meccia, David Docquier, Torben Koenigk, Pablo Ortega, Eduardo Moreno‐Chamarro, Alessio Bellucci, Andrew Coward, Sybren Drijfhout, Eleftheria Exarchou, Oliver Gutjahr, Helene Hewitt, Doroteaciro Iovino, Katja Lohmann, Dian Putrasahan, Reinhard Schiemann, Jon Seddon, Laurent Terray, Xiaobiao Xu, Qiuying Zhang, Ping Chang, Stephen
Publié dans:
Journal of Advances in Modeling Earth Systems, Numéro 12/8, 2020, ISSN 1942-2466
Éditeur:
American Geophysical Union
DOI:
10.1029/2019ms002014
Auteurs:
Jeremy P. Grist, Simon A. Josey, Adrian L. New, Malcolm Roberts, Torben Koenigk, Doroteaciro Iovino
Publié dans:
Journal of Geophysical Research: Oceans, Numéro 123/11, 2018, Page(s) 8624-8637, ISSN 2169-9275
Éditeur:
American Geophysical Union
DOI:
10.1029/2018jc014387
Auteurs:
Ivan M. Parras-Berrocal, Ruben Vazquez, William Cabos, Dmitry Sein, Rafael Mañanes, Juan Perez-Sanz, Alfredo Izquierdo
Publié dans:
Ocean Science, Numéro 16/3, 2020, Page(s) 743-765, ISSN 1812-0792
Éditeur:
European Geosciences Union
DOI:
10.5194/os-16-743-2020
Auteurs:
Reinhard Schiemann, Panos Athanasiadis, David Barriopedro, Francisco Doblas-Reyes, Katja Lohmann, Malcolm J. Roberts, Dmitry V. Sein, Christopher D. Roberts, Laurent Terray, Pier Luigi Vidale
Publié dans:
Weather and Climate Dynamics, Numéro 1/1, 2020, Page(s) 277-292, ISSN 2698-4016
Éditeur:
European Geosciences Union
DOI:
10.5194/wcd-1-277-2020
Auteurs:
Qiang Wang, Claudia Wekerle, Sergey Danilov, Nikolay Koldunov, Dmitry Sidorenko, Dmitry Sein, Benjamin Rabe, Thomas Jung
Publié dans:
Geophysical Research Letters, Numéro 45/10, 2018, Page(s) 4956-4964, ISSN 0094-8276
Éditeur:
American Geophysical Union
DOI:
10.1029/2018gl077901
Auteurs:
David Docquier, François Massonnet, Antoine Barthélemy, Neil F. Tandon, Olivier Lecomte, Thierry Fichefet
Publié dans:
The Cryosphere, Numéro 11/6, 2017, Page(s) 2829-2846, ISSN 1994-0424
Éditeur:
European Geosciences Union / Copernicus Publications
DOI:
10.5194/tc-11-2829-2017
Auteurs:
François Massonnet, Martin Vancoppenolle, Hugues Goosse, David Docquier, Thierry Fichefet, Edward Blanchard-Wrigglesworth
Publié dans:
Nature Climate Change, 2018, ISSN 1758-678X
Éditeur:
Nature Publishing Group
DOI:
10.1038/s41558-018-0204-z
Auteurs:
Neven S. Fučkar, François Massonnet, Virginie Guemas, Javier García-Serrano, Omar Bellprat, Mario Acosta, Francisco J. Doblas-Reyes
Publié dans:
Bulletin of the American Meteorological Society, Numéro 97/12, 2016, Page(s) S136-S140, ISSN 0003-0007
Éditeur:
American Meteorological Society
DOI:
10.1175/bams-d-16-0153.1
Auteurs:
Daniel T. McCoy, Paul R. Field, Anja Schmidt, Daniel P. Grosvenor, Frida A.-M. Bender, Ben J. Shipway, Adrian A. Hill, Jonathan M. Wilkinson, Gregory S. Elsaesser
Publié dans:
Atmospheric Chemistry and Physics, Numéro 18/8, 2018, Page(s) 5821-5846, ISSN 1680-7324
Éditeur:
EGU Journals
DOI:
10.5194/acp-18-5821-2018
Auteurs:
C. Prodhomme, L. Batté, F. Massonnet, P. Davini, O. Bellprat, V. Guemas, F. J. Doblas-Reyes
Publié dans:
Journal of Climate, Numéro 29/24, 2016, Page(s) 9141-9162, ISSN 0894-8755
Éditeur:
American Meteorological Society
DOI:
10.1175/jcli-d-16-0117.1
Auteurs:
Sebastian Milinski, Jürgen Bader, Helmuth Haak, Angela Cheska Siongco, Johann H. Jungclaus
Publié dans:
Geophysical Research Letters, Numéro 43/19, 2016, Page(s) 10,455-10,462, ISSN 0094-8276
Éditeur:
American Geophysical Union
DOI:
10.1002/2016GL070530
Auteurs:
Daniel T. McCoy, Frida A.-M. Bender, Daniel P. Grosvenor, Johannes K. Mohrmann, Dennis L. Hartmann, Robert Wood, Paul R. Field
Publié dans:
Atmospheric Chemistry and Physics, Numéro 18/3, 2018, Page(s) 2035-2047, ISSN 1680-7324
Éditeur:
EGU Publications
DOI:
10.5194/acp-18-2035-2018
Auteurs:
Omar Bellprat, Javier García-Serrano, Neven S. Fučkar, François Massonnet, Virginie Guemas, Francisco J. Doblas-Reyes
Publié dans:
Bulletin of the American Meteorological Society, Numéro 97/12, 2016, Page(s) S36-S41, ISSN 0003-0007
Éditeur:
American Meteorological Society
DOI:
10.1175/BAMS-D-16-0159.1?af=R
Auteurs:
Mark M. Dekker, Reindert J. Haarsma, Hylke de Vries, Michiel Baatsen, Aarnout J. van Delden
Publié dans:
Climate Dynamics, Numéro 50/1-2, 2018, Page(s) 445-455, ISSN 0930-7575
Éditeur:
Springer Verlag
DOI:
10.1007/s00382-017-3619-8
Auteurs:
Sebastian Scher, Reindert J. Haarsma, Hylke de Vries, Sybren S. Drijfhout, Aarnout J. van Delden
Publié dans:
Journal of Advances in Modeling Earth Systems, Numéro 9/2, 2017, Page(s) 1186-1194, ISSN 1942-2466
Éditeur:
American Geophysical Union
DOI:
10.1002/2016MS000903
Auteurs:
Helene T. Hewitt, Michael J. Bella, Eric P.Chassignet, Arnaud Czaja, David Ferreira, Stephen M. Griffies, Pat Hyder, Julie L. McClean, Adrian L.New, Malcolm J.Roberts
Publié dans:
Ocean Modelling, Numéro Volume 120, 2017, Page(s) 120-136, ISSN 1463-5003
Éditeur:
Elsevier BV
DOI:
10.1016/j.ocemod.201711002
Auteurs:
M. J. Roberts, P. L. Vidale, C. Senior, H.T. Hewitt, C. Bates, S. Berthou, P. Chang, H. M. Christensen, S. Danilov, M.-E. Demory, S. M. Griffies, R. Haarsma, T. Jung, G. Martin, S. Minobe, T. Ringler, M. Satoh, R. Schiemann, E. Scoccimarro, G. Stephens, M. F. Wehner
Publié dans:
Bulletin of the American Meteorological Society, 2018, ISSN 0003-0007
Éditeur:
American Meteorological Society
DOI:
10.1175/bams-d-15-00320.1
Auteurs:
P. Davini, S. Corti, F. D'Andrea, G. Rivière, J. von Hardenberg
Publié dans:
Journal of Advances in Modeling Earth Systems, Numéro 9/7, 2017, Page(s) 2615-2634, ISSN 1942-2466
Éditeur:
American Geophysical Union
DOI:
10.1002/2017MS001082
Auteurs:
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Journal of Advances in Modeling Earth Systems, Numéro 9/7, 2017, Page(s) 2601-2614, ISSN 1942-2466
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American Geophysical Union
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American Geophysical Union
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Geoscientific Model Development Discussions, 2016, Page(s) 1-35, ISSN 1991-962X
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EGU Journals
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American Geophysical Union
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American Meteorological Society
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Geoscientific Model Development, Numéro 12/11, 2019, Page(s) 4875-4899, ISSN 1991-9603
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European Geosciences Union (EGU)
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10.5194/gmd-12-4875-2019
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American Geophysical Union
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European Geosciences Union (EGU)
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10.5194/gmd-12-2635-2019
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American Geophysical Union
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European Geophysical Union
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10.5194/gmd-11-3681-2018
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European Geophysical Union
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