CMIP6 CMIP NASA-GISS GISS-E2-1-G-CC historical r1i1p1f1 Amon pr gn v20190815

NASA Goddard Institute for Space Studies (NASA/GISS)

Dataset
Summary
[ Derived from parent entry - See data hierarchy tab ]

These data include the subset used by IPCC AR6 WGI authors of the datasets originally published in ESGF for 'CMIP6.CMIP.NASA-GISS.GISS-E2-1-G-CC.historical' 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 GISS-E2-1-G-CC climate model, released in 2019, includes the following components: aerosol: varies with physics-version (p==1 none, p==3 OMA, p==4 TOMAS, p==5 MATRIX), atmos: GISS-E2.1 (2 x 2.5 degrees; 144 x 90 longitude/latitude; 40 levels; top level 0.1 hPa), atmosChem: varies with physics-version (p==1 Non-interactive, p>1 GPUCCINI), land: GISS LSM, landIce: Fixed, ocean: GISS Ocean (1 deg; 360 x 180 longitude/latitude; 40 levels; top grid cell 0-10m), ocnBgchem: NOBM (NASA Ocean Biogeochemistry Model; same grid as ocean), seaIce: GISS SI (same grid as ocean). The model was run by the Goddard Institute for Space Studies, New York, NY 10025, USA (NASA-GISS) in native nominal resolutions: aerosol: 250 km, atmos: 250 km, atmosChem: 250 km, land: 250 km, landIce: 250 km, ocean: 100 km, ocnBgchem: 100 km, seaIce: 100 km.
Project
IPCC-AR6_CMIP6 (Coupled Model Intercomparison Project Phase 6 (CMIP6) datasets)
Location(s)
global
Spatial Coverage
Longitude 0 to 360 Latitude -90 to 90
Temporal Coverage
1850-01-16 to 2014-12-16 (gregorian)
Use constraints
Creative Commons Zero CC0 1.0 Universal (CC0 1.0) Public Domain Dedication (https://creativecommons.org/publicdomain/zero/1.0/)
Data Catalog
World Data Center for Climate
Access constraints
registered users
Size
98.01 MiB (102768896 Byte)
Format
NetCDF
Status
completely archived
Creation Date
Future Review Date
2032-08-15
Download Permission
Please login to check permission and download options
Cite as
[ Derived from parent entry - See data hierarchy tab ]
NASA Goddard Institute for Space Studies (NASA/GISS) (2023). IPCC DDC: NASA-GISS GISS-E2-1-G-CC model output prepared for CMIP6 CMIP historical. World Data Center for Climate (WDCC) at DKRZ. https://doi.org/10.26050/WDCC/AR6.C6CMGIGE1hi

BibTeX RIS
VariableCodeAggregationUnit
precipitation_fluxCF
pr (IPCC_DDC_AR6: 780)
monkg m-2 s-1

Is source of

[1] IPCC. (2023). Figure 3.15 | Observed and simulated time series of anomalies in zonal average annual mean precipitation. In IPCC, 2023: Chapter 3. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-3/figure-3-15
[2] IPCC. (2023). Figure 10.11 | Attribution of historic precipitation change in the Sahelian West African monsoon during June to September. In IPCC, 2023: Chapter 10. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-10/figure-10-11
[3] IPCC. (2023). Figure 3.42 | Relative space–time root-mean-square deviation (RMSD) calculated from the climatological seasonal cycle of the CMIP simulations (1980–1999) compared to observational datasets. In IPCC, 2023: Chapter 3. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-3/figure-3-42
[4] IPCC. (2023). Figure 10.12 | South-Eastern South America positive mean precipitation trend and its drivers during 1951–2014. In IPCC, 2023: Chapter 10. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-10/figure-10-12
[5] IPCC. (2023). Figure 10.13 | Attribution of the south-western North America precipitation decline during the 1983–2014 period. In IPCC, 2023: Chapter 10. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-10/figure-10-13
[6] IPCC. (2023). Figure 3.13 | Annual-mean precipitation rate (mm day–1) for the period 1995–2014. In IPCC, 2023: Chapter 3. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-3/figure-3-13
[7] IPCC. (2023). Figure 3.17 | Model evaluation of global monsoon domain, intensity, and circulation. In IPCC, 2023: Chapter 3. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-3/figure-3-17
[8] IPCC. (2023). Figure 3.43 | Centred pattern correlations between models and observations for the annual mean climatology over the period 1980–1999. In IPCC, 2023: Chapter 3. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-3/figure-3-43
[9] IPCC. (2023). Figure 4.2 | Selected indicators of global climate change from CMIP6 historical and scenario simulations. In IPCC, 2023: Chapter 4. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-4/figure-4-2
[10] IPCC. (2023). Figure 4.4 | CMIP6 annual mean precipitation changes (%) from historical and scenario simulations. In IPCC, 2023: Chapter 4. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-4/figure-4-4
[11] IPCC. (2023). Figure 10.6 | Illustration of some model biases in simulations performed with dynamical models. In IPCC, 2023: Chapter 10. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-10/figure-10-6
[12] IPCC. (2023). Figure 3.41 | Summary figure showing simulated and observed changes in key large-scale indicators of climate change across the climate system, for continental, ocean basin and larger scales. In IPCC, 2023: Chapter 3. https://www.ipcc.ch/report/ar6/wg1/figures/chapter-3/figure-3-41
[13] DOI Bock, L. (2023). Chapter 3 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 3.42 (v20211001). doi:10.5285/e3d21f98cc764d1185b0d6e662532831
[14] DOI Bock, L. (2023). Chapter 3 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 3.15 (v20211001). doi:10.5285/a6b79b1abac64d72a1a3f2fcf62ee81e
[15] DOI Bock, L. (2023). Chapter 3 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 3.43 (v20211001). doi:10.5285/80c10f8aeb7049778c5a15ede4917128
[16] DOI Jury, M.; Sörensson, A. (2023). Chapter 10 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 10.12 (v20220622). doi:10.5285/b981b3f983df4aa48a16ddbe3d8bf38d
[17] DOI Jury, M.; Doblas-Reyes, F. (2023). Chapter 10 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 10.6 (v20220113). doi:10.5285/2dc808195d984efe8de7b52942796924
[18] DOI Bock, L. (2023). Chapter 3 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 3.13 (v20211001). doi:10.5285/ba3ac68281b94c7b9963278681ee8ee5
[19] DOI Bock, L. (2023). Chapter 3 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 3.41 (v20211028). doi:10.5285/43b0c376ad184543a1bbceeceec0e85d
[20] DOI Kosaka, Y.; Kazeroni, R. (2023). Chapter 3 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 3.17 (v20211208). doi:10.5285/71c2e401df5e4798b917ae4a353daff1
[21] DOI Jury, M.; Turner, A.; Shonk, J. (2023). Chapter 10 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 10.11 (v20220622). doi:10.5285/970847e5690c4f9e8c4ad455641bd558
[22] DOI Jury, M.; Terray, L. (2023). Chapter 10 of the Working Group I Contribution to the IPCC Sixth Assessment Report - data for Figure 10.13 (v20220622). doi:10.5285/5d64c2103c534f83b8ec11a2a4cab10d
[23] IPCC. (2023). Code for Figure 3.15 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-3_Fig15
[24] IPCC. (2023). Code for Figure 3.13 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-3_Fig13
[25] IPCC. (2023). Code for Figure 3.17 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-3_Fig17
[26] IPCC. (2023). Code for Figure 3.41 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-3_Fig41
[27] IPCC. (2023). Code for Figure 3.42 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-3_Fig42
[28] IPCC. (2023). Code for Figure 3.43 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-3_Fig43
[29] IPCC. (2023). Code for Figure 10.6 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-10_Fig06
[30] IPCC. (2023). Code for Figure 10.11 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-10_Fig11
[31] IPCC. (2023). Code for Figure 10.12 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-10_Fig12
[32] IPCC. (2023). Code for Figure 10.13 of the Working Group I Contribution to the IPCC Sixth Assessment Report. https://github.com/IPCC-WG1/Chapter-10_Fig13
[33] DOI Bock, L.; Eyring, V.; Morgenstern, O. (2022). IPCC AR6 WGI - Figure 3.43. doi:10.5281/zenodo.6656917
[34] DOI Bock, L.; Barreiro, M.; Eyring, V. (2022). IPCC AR6 WGI - Figure 3.13. doi:10.5281/zenodo.6778032
[35] DOI Bock, L.; Barreiro, M.; Eyring, V. (2022). IPCC AR6 WGI - Figure 3.15. doi:10.5281/zenodo.6656240
[36] DOI Kosaka, Y.; Kazeroni, R. (2022). IPCC AR6 WGI - Figure 3.17. doi:10.5281/zenodo.6778101
[37] DOI Bock, L.; Gillett, N. (2022). IPCC AR6 WGI - Figure 3.41. doi:10.5281/zenodo.6656913
[38] DOI Bock, L.; Eyring, V.; Morgenstern, O. (2022). IPCC AR6 WGI - Figure 3.42. doi:10.5281/zenodo.6656806
[39] DOI Jury, M.W.; Turner, A. (2022). IPCC AR6 WGI - Figure 10.11. doi:10.5281/zenodo.6787495
[40] DOI Jury, M.W.; Sörensson, A.A. (2022). IPCC AR6 WGI - Figure 10.12. doi:10.5281/zenodo.6787503
[41] DOI Jury, M.W.; Terray, L. (2022). IPCC AR6 WGI - Figure 10.13. doi:10.5281/zenodo.6787506
[42] DOI Jury, M.W.; Doblas-Reyes, F.J. (2022). IPCC AR6 WGI - Figure 10.6. doi:10.5281/zenodo.6787483

Parent

CMIP6 CMIP NASA-GISS GISS-E2-1-G-CC historical
Details
[Entry acronym: C6CMGIGE1hir111Amprgn90815] [Entry id: 3957069]