WRCPPCMDIBADCWDCC

DOI for 'CMIP6.ScenarioMIP.MPI-M.MPI-ESM1-2-LR.ssp585'

doi:10.22033/ESGF/CMIP6.6705

Name
CMIP6.ScenarioMIP.MPI-M.MPI-ESM1-2-LR.ssp585
Abstract
Coupled Model Intercomparison Project Phase 6 (CMIP6) datasets.
These data include all datasets published for 'CMIP6.ScenarioMIP.MPI-M.MPI-ESM1-2-LR.ssp585' with the full Data Reference Syntax following the template 'mip_era.activity_id.institution_id.source_id.experiment_id.member_id.table_id.variable_id.grid_label.version'.

The MPI-ESM1.2-LR climate model, released in 2017, includes the following components:
aerosol: none, prescribed MACv2-SP, atmos: ECHAM6.3 (spectral T63; 192 x 96 longitude/latitude; 47 levels; top level 0.01 hPa), land: JSBACH3.20, landIce: none/prescribed, ocean: MPIOM1.63 (bipolar GR1.5, approximately 1.5deg; 256 x 220 longitude/latitude; 40 levels; top grid cell 0-12 m), ocnBgchem: HAMOCC6, seaIce: unnamed (thermodynamic (Semtner zero-layer) dynamic (Hibler 79) sea ice model).
The model was run by the Max Planck Institute for Meteorology, Hamburg 20146, Germany (MPI-M) in native nominal resolutions: aerosol: 250 km, atmos: 250 km, land: 250 km, landIce: none, ocean: 250 km, ocnBgchem: 250 km, seaIce: 250 km.

Project: These data have been generated as part of the internationally-coordinated Coupled Model Intercomparison Project Phase 6 (CMIP6; see also GMD Special Issue: http://www.geosci-model-dev.net/special_issue590.html). The simulation data provides a basis for climate research designed to answer fundamental science questions and serves as resource for authors of the Sixth Assessment Report of the Intergovernmental Panel on Climate Change (IPCC-AR6).

CMIP6 is a project coordinated by the Working Group on Coupled Modelling (WGCM) as part of the World Climate Research Programme (WCRP). Phase 6 builds on previous phases executed under the leadership of the Program for Climate Model Diagnosis and Intercomparison (PCMDI) and relies on the Earth System Grid Federation (ESGF) and the Centre for Environmental Data Analysis (CEDA) along with numerous related activities for implementation. The original data is hosted and partially replicated on a federated collection of data nodes, and most of the data relied on by the IPCC is being archived for long-term preservation at the IPCC Data Distribution Centre (IPCC DDC) hosted by the German Climate Computing Center (DKRZ).

The project includes simulations from about 120 global climate models and around 45 institutions and organizations worldwide. - Project website: https://pcmdi.llnl.gov/CMIP6.
Subjects
CMIP6.ScenarioMIP.MPI-M.MPI-ESM1-2-LR.ssp585 (DRS: http://github.com/WCRP-CMIP/CMIP6_CVs)
CMIP6
climate
Rights
Creative Commons Attribution 4.0 International License (CC BY 4.0)
License
CMIP6 model data is evolving, new versions are added when datasets are changed or additions are made. Cite this data collection according to the Data Citation Guidelines (http://bit.ly/2gBCuqM) and be sure to include the version number (e.g. v20210101). Individuals using the data must abide by terms of use for CMIP6 data (https://pcmdi.llnl.gov/CMIP6/TermsOfUse). The original license restrictions on these datasets were recorded as global attributes in the data files, but these may have been subsequently updated. - Here is the history of licenses governing these datasets: 2019-07-10: initially published under CC BY-SA 4.0; 2022-06-16: relaxed to CC BY 4.0
Contacts
Wieners, Karl-Hermann
 Karl-Hermann.Wieners@nullmpimet.mpg.de

Giorgetta, Marco
 marco.giorgetta@nullmpimet.mpg.de

Jungclaus, Johann
 johann.jungclaus@nullmpimet.mpg.de

Reick, Christian
 christian.reick@nullmpimet.mpg.de

Esch, Monika
 monika.esch@nullmpimet.mpg.de

Bittner, Matthias
 matthias.bittner@nullmpimet.mpg.de

Gayler, Veronika
 veronika.gayler@nullmpimet.mpg.de

Haak, Helmuth
 helmuth.haak@nullmpimet.mpg.de

de Vrese, Philipp
 philipp.de-vrese@nullmpimet.mpg.de

Raddatz, Thomas
 thomas.raddatz@nullmpimet.mpg.de

Mauritsen, Thorsten
 thorsten.mauritsen@nullmpimet.mpg.de

von Storch, Jin-Song
 jin-song.von.storch@nullmpimet.mpg.de

Behrens, Jörg
 behrens@nulldkrz.de

Brovkin, Victor
 victor.brovkin@nullmpimet.mpg.de

Claussen, Martin
 martin.claussen@nullmpimet.mpg.de

Crueger, Traute
 traute.crueger@nullmpimet.mpg.de

Fast, Irina
 fast@nulldkrz.de

Fiedler, Stephanie
 stephanie.fiedler@nullmpimet.mpg.de

Hagemann, Stefan
 stefan.hagemann@nullhereon.de

Hohenegger, Cathy
 cathy.hohenegger@nullmpimet.mpg.de

Jahns, Thomas
Kloster, Silvia
 silvia.kloster@nullmpimet.mpg.de

Kinne, Stefan
 stefan.kinne@nullmpimet.mpg.de

Lasslop, Gitta
 gitta.lasslop@nullsenckenberg.de

Kornblueh, Luis
 luis.kornblueh@nullmpimet.mpg.de

Marotzke, Jochem
 jochem.marotzke@nullmpimet.mpg.de

Matei, Daniela
 daniela.matei@nullmpimet.mpg.de

Meraner, Katharina
 katharina.meraner@nullmpimet.mpg.de

Mikolajewicz, Uwe
 uwe.mikolajewicz@nullmpimet.mpg.de

Modali, Kameswarrao
 modali@nulldkrz.de

Müller, Wolfgang
 wolfgang.mueller@nullmpimet.mpg.de

Nabel, Julia
 julia.nabel@nullmpimet.mpg.de

Notz, Dirk
 dirk.notz@nullmpimet.mpg.de

Peters-von Gehlen, Karsten
 peters@nulldkrz.de

Pincus, Robert
 Robert.Pincus@nullcolorado.edu

Pohlmann, Holger
 holger.pohlmann@nullmpimet.mpg.de

Pongratz, Julia
 julia.pongratz@nullgeographie.uni-muenchen.de

Rast, Sebastian
 sebastian.rast@nullmpimet.mpg.de

Schmidt, Hauke
 hauke.schmidt@nullmpimet.mpg.de

Schnur, Reiner
 reiner.schnur@nullmpimet.mpg.de

Schulzweida, Uwe
 uwe.schulzweida@nullmpimet.mpg.de

Six, Katharina
 katharina.six@nullmpimet.mpg.de

Stevens, Bjorn
 bjorn.stevens@nullmpimet.mpg.de

Voigt, Aiko
 aiko.voigt@nullkit.edu

Roeckner, Erich
 erich.roeckner@nullmpimet.mpg.de
Cite as
Wieners, Karl-Hermann; Giorgetta, Marco; Jungclaus, Johann; Reick, Christian; Esch, Monika; Bittner, Matthias; Gayler, Veronika; Haak, Helmuth; de Vrese, Philipp; Raddatz, Thomas; Mauritsen, Thorsten; von Storch, Jin-Song; Behrens, Jörg; Brovkin, Victor; Claussen, Martin; Crueger, Traute; Fast, Irina; Fiedler, Stephanie; Hagemann, Stefan; Hohenegger, Cathy; Jahns, Thomas; Kloster, Silvia; Kinne, Stefan; Lasslop, Gitta; Kornblueh, Luis; Marotzke, Jochem; Matei, Daniela; Meraner, Katharina; Mikolajewicz, Uwe; Modali, Kameswarrao; Müller, Wolfgang; Nabel, Julia; Notz, Dirk; Peters-von Gehlen, Karsten; Pincus, Robert; Pohlmann, Holger; Pongratz, Julia; Rast, Sebastian; Schmidt, Hauke; Schnur, Reiner; Schulzweida, Uwe; Six, Katharina; Stevens, Bjorn; Voigt, Aiko; Roeckner, Erich (2019). MPI-M MPI-ESM1.2-LR model output prepared for CMIP6 ScenarioMIP ssp585. Version YYYYMMDD[1].Earth System Grid Federation. https://doi.org/10.22033/ESGF/CMIP6.6705

BibTeX RIS
[1] Please use the latest dataset version or if not available the latest data download date as version in your data citation.

Data Access

https://esgf-data.dkrz.de/search/cmip6-dkrz/?mip_era=CMIP6&activity_id=ScenarioMIP&institution_id=MPI-M&source_id=MPI-ESM1-2-LR&experiment_id=ssp585
http://esgf-node.llnl.gov/search/cmip6/?mip_era=CMIP6&activity_id=ScenarioMIP&institution_id=MPI-M&source_id=MPI-ESM1-2-LR&experiment_id=ssp585

Related Data

MPI-M MPIESM1.2-LR model output prepared for CMIP6 ScenarioMIP
Show

Metadata Export

XMLJSON
#NamePIDAffiliation
1Wieners, Karl-Hermann 0000-0003-3797-7694Max Planck Institute for Meteorology
2Giorgetta, Marco-Max Planck Institute for Meteorology
3Jungclaus, Johann 0000-0002-3849-4339Max Planck Institute for Meteorology
4Reick, Christian-Max Planck Institute for Meteorology
5Esch, Monika-Max Planck Institute for Meteorology
6Bittner, Matthias 0000-0002-7368-9764Max Planck Institute for Meteorology
7Gayler, Veronika-Max Planck Institute for Meteorology
8Haak, Helmuth 0000-0002-9883-5086Max Planck Institute for Meteorology
9de Vrese, Philipp-Max Planck Institute for Meteorology
10Raddatz, Thomas-Max Planck Institute for Meteorology
11Mauritsen, Thorsten 0000-0003-1418-4077Max Planck Institute for Meteorology
12von Storch, Jin-Song 0000-0002-2308-6834Max Planck Institute for Meteorology
13Behrens, Jörg-Deutsches Klimarechenzentrum
14Brovkin, Victor 0000-0001-6420-3198Max Planck Institute for Meteorology
15Claussen, Martin-Max Planck Institute for Meteorology
16Crueger, Traute-Max Planck Institute for Meteorology
17Fast, Irina-Deutsches Klimarechenzentrum
18Fiedler, Stephanie 0000-0001-8898-9949Max Planck Institute for Meteorology
19Hagemann, Stefan 0000-0001-5444-2945Helmholtz-Zentrum Hereon
20Hohenegger, Cathy-Max Planck Institute for Meteorology
21Jahns, Thomas-Deutsches Klimarechenzentrum
22Kloster, Silvia-Max Planck Institute for Meteorology
23Kinne, Stefan-Max Planck Institute for Meteorology
24Lasslop, Gitta 0000-0001-9939-1459Senckenberg Biodiversity and Climate Research Institue (BiK-F)
25Kornblueh, Luis-Max Planck Institute for Meteorology
26Marotzke, Jochem 0000-0001-9857-9900Max Planck Institute for Meteorology
27Matei, Daniela 0000-0002-3735-8802Max Planck Institute for Meteorology
28Meraner, Katharina-Max Planck Institute for Meteorology
29Mikolajewicz, Uwe-Max Planck Institute for Meteorology
30Modali, Kameswarrao 0000-0001-9364-6844Deutsches Klimarechenzentrum
31Müller, Wolfgang-Deutscher Wetterdienst
32Nabel, Julia 0000-0002-8122-5206Max Planck Institute for Meteorology
33Notz, Dirk 0000-0003-0365-5654Max Planck Institute for Meteorology
34Peters-von Gehlen, Karsten 0000-0003-0158-2957Deutsches Klimarechenzentrum
35Pincus, Robert 0000-0002-0016-3470University of Colorado
36Pohlmann, Holger 0000-0003-1264-0024Max-Planck-Institut fuer Meteorologie
37Pongratz, Julia 0000-0003-0372-3960Ludwig-Maximilians-University Munich
38Rast, Sebastian-Max Planck Institute for Meteorology
39Schmidt, Hauke-Max Planck Institute for Meteorology
40Schnur, Reiner-Max Planck Institute for Meteorology
41Schulzweida, Uwe-Max Planck Institute for Meteorology
42Six, Katharina 0000-0002-4594-2793Max Planck Institute for Meteorology
43Stevens, Bjorn 0000-0003-3795-0475Max Planck Institute for Meteorology
44Voigt, Aiko-Karlsruhe Institute of Technology
45Roeckner, Erich-Max Planck Institute for Meteorology
IsCitedBy  Ocean, Cryosphere and Sea Level Change. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Fox-Kemper, B.; Hewitt, H.T.; Xiao, C.; Aðalgeirsdóttir, G.; Drijfhout, S.S.; Edwards, T.L.; Golledge, N.R.; Hemer, M.; Kopp, R.E.; Krinner, G.; Mix, A.; Notz, D.; Nowicki, S.; Nurhati, I.S.; Ruiz, L.; Sallée, J.-B.; Slangen, A.B.A.; Yu, Y.. DOI:10.1017/9781009157896.011
IsCitedBy  Future Global Climate: Scenario-Based Projections and Near-Term Information. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Lee, J.-Y.; Marotzke, J.; Bala, G.; Cao, L.; Corti, S.; Dunne, J.P.; Engelbrecht, F.; Fischer, E.; Fyfe, J.C; Jones, C.; Maycock, A.; Mutemi, J.; Ndiaye, O.; Panickal, S.; Zhou,T.. DOI:10.1017/9781009157896.006
IsCitedBy  Human Influence on the Climate System. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Eyring, V.; Gillett, N.P.; Achuta Rao, K.M.; Barimalala, R.; Barreiro Parrillo, M.; Bellouin, N.; Cassou, C.; Durack, P.J.; Kosaka, Y.; McGregor, S.; Min, S.; Morgenstern, O.; Sun, Y.. DOI:10.1017/9781009157896.005
IsCitedBy  Linking Global to Regional Climate Change. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Doblas-Reyes, F.J.; Sörensson, A.A.; Almazroui, M.; Dosio, A.; Gutowski, W.J.; Haarsma, R.; Hamdi, R.; Hewitson, B.; Kwon, W.-T.; Lamptey, B.L.; Maraun, D.; Stephenson, T.S.; Takayabu, I.; Terray, L.; Turner, A.; Zuo, Z.. DOI:10.1017/9781009157896.012
IsCitedBy  Weather and Climate Extreme Events in a Changing Climate. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Seneviratne, S.I.; Zhang, X.; Adnan, M.; Badi, W.; Dereczynski, C.; Di Luca, A.; Ghosh, S.; Iskandar, I.; Kossin, J.; Lewis, S.; Otto, F.; Pinto, I.; Satoh, M.; Vicente-Serrano, S.M.; Wehner, M.; Zhou, B.. DOI:10.1017/9781009157896.013
IsCitedBy  Atlas. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Gutiérrez, J.M.; Jones, R.G.; Narisma, G.T.; Alves, L.M.; Amjad, M.; Gorodetskaya, I.V.; Grose, M.; Klutse, N.A.B.; Krakovska, S.; Li, J.; Martínez-Castro, D.; Mearns, L.O.; Mernild, S.H.; Ngo-Duc, T.; van den Hurk, B.; Yoon, J.-H.. DOI:10.1017/9781009157896.021
IsCitedBy  Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Intergovernmental Panel on Climate Change (IPCC). DOI:10.1017/9781009157896
IsCitedBy  The impact of stratospheric aerosol intervention on the North Atlantic and Quasi-Biennial Oscillations in the Geoengineering Model Intercomparison Project (GeoMIP) G6sulfur experiment. Jones, Andy; Haywood, Jim M.; Scaife, Adam A.; Boucher, Olivier; Henry, Matthew; Kravitz, Ben; Lurton, Thibaut; Nabat, Pierre; Niemeier, Ulrike; Séférian, Roland; Tilmes, Simone; Visioni, Daniele. DOI:10.5194/acp-22-2999-2022
IsCitedBy  A dependent multimodel approach to climate prediction with Gaussian processes. Thompson, Marten; Braverman, Amy; Chatterjee, Snigdhansu. DOI:10.1017/eds.2022.24
IsCitedBy  Global Carbon and other Biogeochemical Cycles and Feedbacks. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Canadell, J.G.; Monteiro, P.M.S; Costa, M.H.; Cotrim da Cunha, L.; Cox, P.M.; Eliseev, A.V.; Henson, S.; Ishii, M.; Jaccard, S.; Koven, C.; Lohila, A.; Patra, P.K.; Piao, S.; Rogelj, J.; Syampungani, S.; Zaehle, S.; Zickfeld, K.. DOI:10.1017/9781009157896.007
IsCitedBy  Water Cycle Changes. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte, V., P. Zhai, A. Pirani, S.L. Connors, C. Péan, S. Berger, N. Caud, Y. Chen, L. Goldfarb, M.I. Gomis, M. Huang, K. Leitzell, E. Lonnoy, J.B.R. Matthews, T.K. Maycock, T. Waterfield, O. Yelekçi, R. Yu, and B. Zhou (eds.)]. Douville, H.; Raghavan, K.; Renwick, J.; Allan, R.P.; Arias, P.A.; Barlow, M.; Cerezo-Mota, R.; Cherchi, A.; Gan, T.Y.; Gergis, J.; Jiang, D.; Khan, A.; Pokam Mba, W.; Rosenfeld, D.; Tierney, J.; Zolina, O.. DOI:10.1017/9781009157896.010
IsCitedBy  Time of emergence of compound events: contribution of univariate and dependence properties. François, Bastien; Vrac, Mathieu. DOI:10.5194/nhess-23-21-2023
IsCitedBy  Climate-change impacts on offshore wind resources in the Mediterranean Sea. Martinez, A.; Iglesias, G.. DOI:10.1016/j.enconman.2023.117231
IsCitedBy  Cushion bog plant community responses to passive warming in southern Patagonia. Pancotto, Verónica; Holl, David; Escobar, Julio; Castagnani, María Florencia; Kutzbach, Lars. DOI:10.5194/bg-18-4817-2021
IsCitedBy  Arctic Ocean acidification over the 21st century co-driven by anthropogenic carbon increases and freshening in the CMIP6 model ensemble. Terhaar, Jens; Torres, Olivier; Bourgeois, Timothée; Kwiatkowski, Lester. DOI:10.5194/bg-18-2221-2021
IsCitedBy  Arctic Ocean acidification over the 21st century co-driven by anthropogenic carbon increases and freshening in the CMIP6 model ensemble. Terhaar, Jens; Torres, Olivier; Bourgeois, Timothée; Kwiatkowski, Lester. DOI:10.5194/bg-2020-456
IsCitedBy  Intermodel Spread in Walker Circulation Responses Linked to Spread in Moist Stability and Radiation Responses. Duffy, Margaret L.; O’Gorman, Paul A.. DOI:10.1029/2022jd037382
IsCitedBy  Energy‐mediated responses to changing prey size and distribution in marine top predator movements and population dynamics. Gallagher, Cara A.; Chimienti, Marianna; Grimm, Volker; Nabe‐Nielsen, Jacob. DOI:10.1111/1365-2656.13627
IsCitedBy  Attribution of air temperature and precipitation to the future global drought events. Fu, Rui; Wang, Changjing; Ma, Dujuan; Gu, Hongfan; Xie, Qiaoyun; Liu, Guoxiang; Yin, Gaofei. DOI:10.1088/2515-7620/acde37
IsCitedBy  Development of enthalpy-based climate indicators for characterizing building cooling and heating energy demand under climate change. Tian, Chuyin; Huang, Guohe; Lu, Chen; Zhou, Xiong; Duan, Ruixin. DOI:10.1016/j.rser.2021.110799
IsCitedBy  Soil heat extremes can outpace air temperature extremes. García-García, Almudena; Cuesta-Valero, Francisco José; Miralles, Diego G.; Mahecha, Miguel D.; Quaas, Johannes; Reichstein, Markus; Zscheischler, Jakob; Peng, Jian. DOI:10.1038/s41558-023-01812-3
IsCitedBy  Dynamic sea-level changes and potential implications for storm surges in the UK: a storylines perspective. Bulgin, Claire E; Mecking, Jennifer V; Harvey, Ben J; Jevrejeva, Svetlana; McCarroll, Niall F; Merchant, Christopher J; Sinha, Bablu. DOI:10.1088/1748-9326/acc6df
IsReferencedBy  The impact of stratospheric aerosol intervention on the North Atlantic and Quasi-Biennial Oscillations in the Geoengineering Model Intercomparison Project (GeoMIP) G6sulfur experiment. Jones, Andy; Haywood, Jim M.; Scaife, Adam A.; Boucher, Olivier; Henry, Matthew; Kravitz, Ben; Lurton, Thibaut; Nabat, Pierre; Niemeier, Ulrike; Séférian, Roland; Tilmes, Simone; Visioni, Daniele. DOI:10.5194/acp-2021-898
IsReferencedBy  Opposite response of strong and moderate positive Indian Ocean Dipole to global warming. Cai, Wenju; Yang, Kai; Wu, Lixin; Huang, Gang; Santoso, Agus; Ng, Benjamin; Wang, Guojian; Yamagata, Toshio. DOI:10.1038/s41558-020-00943-1
IsReferencedBy  Inter-decadal variability of the heat source over the Tibetan Plateau. Liu, Jingchen; Guan, Xiaodan; Gao, Zhaokui; Huang, Xiaoqian; Ma, Jieru; He, Yongli; Xie, Tiejun. DOI:10.1007/s00382-021-05929-z
IsReferencedBy  Increase in Arctic coastal erosion and its sensitivity to warming in the twenty-first century. Nielsen, David Marcolino; Pieper, Patrick; Barkhordarian, Armineh; Overduin, Paul; Ilyina, Tatiana; Brovkin, Victor; Baehr, Johanna; Dobrynin, Mikhail. DOI:10.1038/s41558-022-01281-0
IsReferencedBy  CMIP6 Models Predict Significant 21st Century Decline of the Atlantic Meridional Overturning Circulation. Weijer, W.; Cheng, W.; Garuba, O. A.; Hu, A.; Nadiga, B. T.. DOI:10.1029/2019gl086075
IsReferencedBy  Projected changes in wind speed and wind energy potential over West Africa in CMIP6 models. Akinsanola, Akintomide Afolayan; Ogunjobi, Kehinde O; Abolude, Akintayo T; Salack, Seyni. DOI:10.1088/1748-9326/abed7a
IsReferencedBy  Deep Learning-Based Projection of Occurrence Frequency of Forest Fires under SSP Scenario: Exploring the Link between Drought Characteristics and Forest Fires. Sung, Jang Hyun; Seo, Seung Beom; Ryu, Young. DOI:10.3390/su14095494
IsReferencedBy  Climate change projections in Guatemala: temperature and precipitation changes according to CMIP6 models. Rivera, Paris. DOI:10.1007/s40808-023-01881-5
IsReferencedBy  Probabilistic projections of El Niño Southern Oscillation properties accounting for model dependence and skill. Olson, Roman; Kim, Soong-Ki; Fan, Yanan; An, Soon-Il. DOI:10.1038/s41598-022-26513-3
IsReferencedBy  Statistically Downscaled CMIP6 Projections Show Stronger Warming for Germany. Kreienkamp, Frank; Lorenz, Philip; Geiger, Tobias. DOI:10.3390/atmos11111245
IsReferencedBy  High-resolution CMIP6 climate projections for Ethiopia using the gridded statistical downscaling method. Rettie, Fasil M.; Gayler, Sebastian; Weber, Tobias K. D.; Tesfaye, Kindie; Streck, Thilo. DOI:10.1038/s41597-023-02337-2
IsReferencedBy  Time of Emergence of compound events: contribution of univariate and dependence properties. François, Bastien; Vrac, Mathieu. DOI:10.5194/nhess-2022-127
IsReferencedBy  First Application of Artificial Neural Networks to Estimate 21st Century Greenland Ice Sheet Surface Melt. Sellevold, Raymond; Vizcaino, Miren. DOI:10.1029/2021gl092449
IsReferencedBy  Projected Changes of Wind Energy Input to Surface Waves in the North Indian Ocean Based on CMIP6. Li, Juan; Zhao, Yuexuan; Wang, Menglu; Tan, Wei; Yin, Jiyuan. DOI:10.3390/atmos15010139