ModelE AR5 Simulations: Past Climate Change and Future Climate Predictions

Line Plots as Function of Latitude

Please read the instructions below.


Select time frequency: M10: decade monthly S10: decade seasonal A10: decade annual
Select spatial domains: Global Continents Oceans

Select additive decades to left and subtractive decade (none) to right

185X 186X 187X 188X 189X
190X 191X 192X 193X 194X
195X 196X 197X 198X 199X
200X 201X 202X 203X 204X
205X 206X 207X 208X 209X

Select additive months to left and subtractive month (none) to right

Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec

Select displayed model GISS-E2 simulations to left and subtractive simulation (none) to right

  Non-Interactive Chemistry, Aerosols & Dust + Indirect Effect on Clouds
1850 Control NINT-Control TCAD-Control TCADI-Control
1850-2005 NINT-Historical TCAD-Historical TCADI-Historical
RCP 2.6 NINT-RCP2.6 TCAD-RCP2.6 TCADI-RCP2.6
RCP 4.5 NINT-RCP4.5 TCAD-RCP4.5 TCADI-RCP4.5
RCP 6.0 NINT-RCP6.0 TCAD-RCP6.0 TCADI-RCP6.0
RCP 8.5 NINT-RCP8.5 TCAD-RCP8.5 TCADI-RCP8.5

Select model climate variables to left and subtractive variable (none) to right

Temperature Radiation Heat Flux Water Water Pressure Chemistry Forcing
T100 RSPI HPRE Q100 RUNS PS MO3 FTO3
T500 RSPA HSEN Q500 RUNT PVS MClOx FSO3
T850 ALBP HWV Q850 MRVRO PSL OH FTBCI
TS RTPE HS QS MSWG     FSBCI
TSMIN CLDT   MWV MLAK Height Forcing FTBCB
TSMAX RSSI   PREC SIC Z100 FTCH4 FSBCB
TSRD RSSA Velocity PRECNV MSI Z500 FTN2O FSAER
TG ALBS WS EVAP MFORBI Z850 FTCF11 FTAER
TG6 RTSD USMA SNOWC     FTCF12 AEROD
TOS RTSE VSMA MSNOW

Select additive climatological observations to left and subtractive observation (none) to right

Temperature Radiation Radiation HeatFlux Water Pressure
T100.NCEP RSPI.ERBE RSSI.ISCCP HSEN.GSSTF Q500.NCEP PS.NCEP
T500.NCEP RSPI.ISCCP RSSI.LANG HLAT.GSSTF Q850.NCEP PVS.CRU
T850.NCEP RSPA.ERBE RSSA.ISCCP   QS.GSSTF PSL.SHEA
TS.NCEP RSPA.ISCCP RSSA.LANG Velocity PREC.DEKLIM
TS.LEG ALBP.ERBE ALBS.ISCCP WS.CRU PREC.GPCP Height
TS.SHEA ALBP.ISCCP ALBS.LANG USMA.GSSTF PREC.LEG Z100.NCEP
TS.MAY RTPE.ERBE RTSD.ISCCP VSMA.GSSTF PREC.SHEA Z500.NCEP
TS.CRU RTPE.ISCCP RTSD.LANG   PREC.CRU Z850.NCEP
TSRD.MAY CLDT.ISCCP RTSE.ISCCP   SNOWC.ROB
TSRD.CRU CLDT.CRU RTSE.LANG   SIC.AMIP
TOS.AMIP       SIC.GSFC
TOS.WOA
TOS.ROBB
TOS.SHEA

Select additive transient observations to left and subtractive observation (none) to right

Temperature Temperature Water Pressure Height Chemistry
T100.NCEP T100.ERA Q100.ERA PS.NCEP Z100.NCEP MO3.ERA
T500.NCEP T500.ERA Q500.NCEP PVS.CRU Z100.ERA
T850.NCEP T850.ERA Q500.ERA PSL.ERA Z500.NCEP
TS.NCEP TS.ERA Q850.NCEP   Z500.ERA
TS.CRU TOS.AMIP Q850.ERA Clouds Z850.NCEP
TSDR.CRU   PREC.DEKLIM CLDT.CRU Z850.ERA
    SIC.AMIP

Instructions

Line plot comparisons of Model and observed past climate change and future climate predictions can be displayed from this web page.

  • Multiple spatial domains, multiple additive decades, multiple additive months, multiple additive Model simulations, and multiple additive observations produce separate lines. Only the first eight lines are generated.
  • For annual data, months are ignored.
  • For seasonal data, seasons are designated by checking the center month. Multiple seasons may not overlap.
  • Transient observations are available from the 1950s through the 2000s. Climatological observations ignore decade requests.
  • If any climatological observation is checked, then subtractive decades, subtractive Model simulations, subtractive Model climate variables, and subtractive transient observations are ignored.
  • If any transient observation is checked, then subtractive Model simulations and subtractive Model climate variables are ignored.
  • If subtractive transient observations are checked, then additive decades are curtailed to be within the range of the observations.
  • Be aware that some observations are defined only over limited spatial domains. Consequently, different lines in a LinePlot may be averaging their data over different spatial domains.

Contact

Please address questions about these AR5 webpages to Dr. Gary Russell.

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