2017
|
Sensitivities of the hydrologic cycle to model physics, grid resolution, and ocean type in the aquaplanet Community Atmosphere Model
published
| article-journal
| CC-BY-NC-ND
doi:10.1002/2016ms000891
|
2017-04-23
|
Fast and slow shifts of the zonal-mean intertropical convergence zone in response to an idealized anthropogenic aerosol
published
| article-journal
| CC-BY-NC-ND
doi:10.1002/2016ms000902
|
2016-05-12
|
The Cloud Feedback Model Intercomparison Project (CFMIP) contribution to CMIP6
published
| article-journal
| CC-BY
doi:10.5194/gmd-2016-70
|
2016-05-16
|
Clouds at Barbados are representative of clouds across the trade wind regions in observations and climate models
published
| article-journal
doi:10.1073/pnas.1521494113
|
2018
|
NCAR Release of CAM-SE in CESM2.0: A Reformulation of the Spectral Element Dynamical Core in Dry-Mass Vertical Coordinates With Comprehensive Treatment of Condensates and Energy
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2017ms001257
|
2016-11-12
|
The link between extreme precipitation and convective organization in a warming climate: Global radiative-convective equilibrium simulations
published
| article-journal
doi:10.1002/2016gl071285
|
2017-01-25
|
The Cloud Feedback Model Intercomparison Project (CFMIP) contribution to CMIP6
published
| article-journal
doi:10.5194/gmd-10-359-2017
|
2016-07-13
|
Thermodynamic control of anvil cloud amount
published
| article-journal
doi:10.1073/pnas.1601472113
|
2019-04-10
|
Model Hierarchies for Understanding Atmospheric Circulation
published
| article-journal
doi:10.1029/2018rg000607
|
2019-07-03
|
Investigating the influence of cloud radiative effects on the extratropical storm tracks
published
| article-journal
doi:10.1029/2019gl083542
|
2019-09-09
|
Atmospheric blocking and other large‐scale precursor patterns of landfalling atmospheric rivers in the North Pacific: A CESM2 study
published
| article-journal
doi:10.1029/2019jd030790
|
2016-05-12
|
The Cloud Feedback Model Intercomparison Project (CFMIP) contribution to CMIP6
unknown status
| post
doi:10.5194/gmd-2016-70-supplement
|
2002
|
(Table 2) Depth of preliminary control points of Atlantic and Pacific sediment cores
published
| dataset
| CC-BY
doi:10.1594/pangaea.844934
|
2002
|
(Appendix) Stacked benthic δ¹⁸O record for ODP Site 108-659
published
| dataset
| CC-BY
doi:10.1594/pangaea.844935
|
2002
|
(Appendix) Stacked benthic δ¹⁸O record for ODP Site 108-664
published
| dataset
| CC-BY
doi:10.1594/pangaea.844936
|
1986-10-03
|
(Appendix) Stacked benthic δ¹⁸O record for ODP Site 111-677
published
| dataset
| CC-BY
doi:10.1594/pangaea.844937
|
2002
|
(Appendix) Stacked benthic δ¹⁸O record for ODP Site 138-846
published
| dataset
| CC-BY
doi:10.1594/pangaea.844938
|
2002
|
(Appendix) Stacked benthic δ¹⁸O record for ODP Site 138-849
published
| dataset
| CC-BY
doi:10.1594/pangaea.844939
|
2002
|
(Appendix) Stacked benthic δ¹⁸O record for ODP Site 162-982
published
| dataset
| CC-BY
doi:10.1594/pangaea.844940
|
1981-07-31
|
(Appendix) Stacked benthic δ¹⁸O record for ODP DSDP 81-552
published
| dataset
| CC-BY
doi:10.1594/pangaea.844941
|
1983-07-06
|
(Appendix) Stacked benthic δ¹⁸O record for DSDP Site 94-607
published
| dataset
| CC-BY
doi:10.1594/pangaea.844942
|
1992-11-19
|
(Appendix) Stacked benthic δ¹⁸O record for sediment core TT013_72
published
| dataset
| CC-BY
doi:10.1594/pangaea.844943
|
2002
|
Constructing a stacked benthic δ¹⁸O record, supplement to: Karner, Daniel B; Levine, Jonathan; Medeiros, Brian P; Muller, Richard A (2002): Constructing a stacked benthic d18O record. Paleoceanography, 17(3), 2-1-2-16
published
| article
| CC-BY
doi:10.1594/pangaea.844944
|
2016
|
Larcform 1 - single column model intercomparison of Arctic air formation, link to model results in NetCDF format, supplement to: Pithan, Felix; Ackerman, Andrew; Angevine, Wayne; Hartung, Kerstin; Ickes, Luisa; Kelley, Maxwell; Medeiros, Brian P; Sandu, Irina; Steeneveld, Gert-Jan; Sterk, HAM; Svensson, Gunilla; Vaillancourt, Paul A; Zadra, Ayrton (2016): Strengths and biases of models in representing the Arctic winter boundary layer - the Larcform 1 single column model intercomparison. Journal of Advances in Modeling Earth Systems, 8(3), 1345-1357
published
| dataset
| CC-BY
doi:10.1594/pangaea.856770
|
2019-10-18
|
CESM2.1-CAM6-CLM4 2-degree amip-LGM
published
| dataset
| 1.0.0
| CC-BY
doi:10.5281/zenodo.3508439
|
2019-10-18
|
CESM2.1-CAM6-CLM4 2-degree amip-LGM
published
| dataset
| 1.0.0
| CC-BY
doi:10.5281/zenodo.3508440
|
2019-12-23
|
CESM2 cloud locking suite single-level fields
published
| dataset
| CC-BY
doi:10.5281/zenodo.3591995
|
2019-12-23
|
CESM2 cloud locking suite multi-level fields for FLOCK simulation
published
| dataset
| CC-BY
doi:10.5281/zenodo.3591978
|
2019-12-23
|
CESM2 cloud locking suite multi-level fields for FCTL simulation
published
| dataset
| CC-BY
doi:10.5281/zenodo.3591887
|
2019-12-23
|
CESM2 cloud locking suite single-level fields
published
| dataset
| CC-BY
doi:10.5281/zenodo.3591996
|
2019-12-23
|
CESM2 cloud locking suite multi-level fields for FCTL simulation
published
| dataset
| CC-BY
doi:10.5281/zenodo.3591886
|
2020-03-27
|
CO2 increase experiments using the Community Earth System Model (CESM): Relationship to climate sensitivity and comparison of CESM1 to CESM2
unknown status
| post
doi:10.1002/essoar.10502611.1
|
2020-04-09
|
Investigating the role of cloud-radiation interactions in subseasonal tropical disturbances
published
| article-journal
doi:10.1029/2019gl086817
|
2020-05-11
|
Aquaplanets as a framework for examination of aerosol effects
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2019ms001874
|
2020-06-02
|
An evaluation of the large scale atmospheric circulation and its variability in the Community Earth System Model 2 (CESM2) and other CMIP models
published
| article-journal
doi:10.1029/2020jd032835
|
2020-04-30
|
Supporting data for Aquaplanets as a framework for examination of aerosol effects
published
| dataset
| 1.0
| CC-BY
doi:10.5281/zenodo.3780047
|
2020-04-30
|
Supporting data for Aquaplanets as a framework for examination of aerosol effects
published
| dataset
| 1.0
| CC-BY
doi:10.5281/zenodo.3780046
|
2020-07-13
|
Characteristics of Future Warmer Base States in CESM2
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2020ea001296
|
2020-07-19
|
Quantifying the influence of cloud radiative feedbacks on Arctic surface warming using cloud locking in an earth system model
published
| article-journal
doi:10.1029/2020gl089207
|
2020-09-29
|
CESM2 CFMIP Experiment Supporting Material
published
| article
| 1.0.0
| CC-BY
doi:10.5281/zenodo.3996702
|
2020-09-29
|
CESM2 CFMIP Experiment Supporting Material
published
| article
| 1.0.0
| CC-BY
doi:10.5281/zenodo.3996703
|
2020-07-20
|
Clouds and Convective Self‐Aggregation in a Multi‐Model Ensemble of Radiative‐Convective Equilibrium Simulations
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2020ms002138
|
2020
|
Mean Climate and Tropical Rainfall Variability in Aquaplanet Simulations Using the Model for Prediction Across Scales‐Atmosphere
published
| article-journal
| CC-BY
doi:10.1029/2020ms002102
|
2021-11-15
|
Using radiative convective equilibrium to explore clouds and climate in the Community Atmosphere Model
published
| article-journal
doi:10.1029/2021ms002539
|
2022-02-24
|
On the effect of historical SST patterns on radiative feedback
unknown status
| post
doi:10.1002/essoar.10510623.2
|
2022-06-14
|
Project Raijin: Community geoscience analysis tools for unstructured grids
published
| graphic
| v1
doi:10.6084/m9.figshare.20067593.v1
|
2022-09-14
|
Evaluation of Native Earth System Model Output with ESMValTool v2.6.0
unknown status
| post
| CC-BY
doi:10.5194/gmd-2022-205
|
2023-03-01
|
Supporting data for Assessing clouds using satellite observations through three generations of global atmosphere models
published
| dataset
| CC-BY
doi:10.5281/zenodo.7688965
|
2023-07-26
|
Drivers of Dry Day Sensitivity to Increased CO<sub>2</sub>
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2023gl103200
|
2024-03-30
|
Observational Quantification of Tropical High Cloud Changes and Feedbacks
published
| article-journal
| CC-BY
doi:10.1029/2023jd039364
|
2024-08-30
|
uxarray
published
| article
| v2024.08.1
doi:10.5281/zenodo.13557516
|
2024-10-22
|
Examining Tropical Convection Features at Storm‐Resolving Scales Over the Maritime Continent Region
published
| article-journal
doi:10.1029/2024jd040976
|
2024-10-29
|
uxarray
published
| article
| v2024.10.1
doi:10.5281/zenodo.14008414
|
2025-01-20
|
UXarray: Extensions to Xarray to support unstructured grids
unknown status
| post
doi:10.5194/egusphere-egu24-20909
|
2024-12-20
|
uxarray
published
| article
| v2024.12.0
doi:10.5281/zenodo.14536703
|
2025-02-26
|
uxarray
published
| article
| v2025.02.1
doi:10.5281/zenodo.14933000
|
2025-04-23
|
uxarray
published
| article
| v2025.04.0
doi:10.5281/zenodo.15270528
|
2019
|
Replication Data for: Investigating the influence of cloud radiative effects on the extratropical storm tracks
published
| dataset
doi:10.18130/v3/oqn3j0
|
2020-10-14
|
CO
2
increase experiments using the Community Earth System Model (CESM): Relationship to climate sensitivity and comparison of CESM1 to CESM2
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2020ms002120
|
2020-11-25
|
Clouds, radiation, and atmospheric circulation in the present‐day climate and under climate change
published
| article-journal
| CC-BY
doi:10.1002/wcc.694
|
2022-01-13
|
When Will MISR Detect Rising High Clouds?
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2021jd035865
|
2022
|
Differences in Tropical Rainfall in Aquaplanet Simulations With Resolved or Parameterized Deep Convection
published
| article-journal
| CC-BY-NC-ND
doi:10.1029/2021ms002902
|
2022
|
On the effect of historical SST patterns on radiative feedback
unknown status
| post
doi:10.1002/essoar.10510623.3
|
2023
|
Assessing Clouds Using Satellite Observations Through Three Generations of Global Atmosphere Models
published
| article-journal
| CC-BY
doi:10.1029/2023ea002918
|
2023-08-08
|
Upstream surface roughness and terrain drive contrast in tornado potential between North and South America
unknown status
| post
| CC-BY
doi:10.21203/rs.3.rs-1886895/v1
|
2024-04-23
|
An overview of cloud–radiation denial experiments for the Energy Exascale Earth System Model version 1
published
| article-journal
| CC-BY
doi:10.5194/gmd-17-3111-2024
|
2024-08-29
|
uxarray
published
| article
| v2024.08.0
doi:10.5281/zenodo.13423128
|
2024-10-02
|
A new method for diagnosing effective radiative forcing from aerosol-cloud interactions in climate models
unknown status
| post
| CC-BY
doi:10.5194/egusphere-2024-3063
|
2024-11-20
|
uxarray
published
| article
| v2024.11.0
doi:10.5281/zenodo.14190064
|
2023-01-11
|
Evaluation of native Earth system model output with ESMValTool v2.6.0
published
| article-journal
| CC-BY
doi:10.5194/gmd-16-315-2023
|
2025-02-06
|
uxarray
published
| article
| v2025.02.0
doi:10.5281/zenodo.14822802
|
2025-03-15
|
UXarray: Extending Xarray for Enhanced Support of Unstructured Grids
unknown status
| post
doi:10.5194/egusphere-egu25-13873
|
2019-12-23
|
CESM2 cloud locking suite multi-level fields for FLOCK simulation
published
| dataset
| CC-BY
doi:10.5281/zenodo.3591979
|
2021-03-17
|
Investigating the impact of cloud-radiative feedbacks on tropical precipitation extremes
published
| article-journal
| CC-BY
doi:10.1038/s41612-021-00174-x
|
2022-02-24
|
On the effect of historical SST patterns on radiative feedback
unknown status
| post
doi:10.1002/essoar.10510623.1
|
2022-06-14
|
Project Raijin: Community geoscience analysis tools for unstructured grids
published
| graphic
doi:10.6084/m9.figshare.20067593
|
2022-08-19
|
On the effect of historical SST patterns on radiative feedback
published
| article-journal
doi:10.1029/2022jd036675
|
2023-06-14
|
Evaluating the Simulation of CONUS Precipitation by Storm Type in E3SM
published
| article-journal
| CC-BY-NC
doi:10.1029/2022gl102409
|
2023-09-01
|
An overview of cloud-radiation denial experiments for the Energy Exascale Earth System Model version 1
unknown status
| post
| CC-BY
doi:10.5194/egusphere-2023-1555
|
2024-06-18
|
Upstream surface roughness and terrain are strong drivers of contrast in tornado potential between North and South America
published
| article-journal
doi:10.1073/pnas.2315425121
|
2024-08-31
|
uxarray
published
| article
| v2024.08.2
doi:10.5281/zenodo.13623628
|
2024-10-10
|
uxarray
published
| article
| v2024.10.0
doi:10.5281/zenodo.13916496
|
2024-11-21
|
uxarray
published
| article
| v2024.11.1
doi:10.5281/zenodo.14196664
|
2025-01-23
|
uxarray
published
| article
| v2025.01.0
doi:10.5281/zenodo.14728564
|
2025-03-11
|
uxarray
published
| article
| v2025.03.0
doi:10.5281/zenodo.15007592
|