Published June 27, 2022 | Version v1.0

Relative importance of meridional and zonal sea surface temperature gradients for the onset of the ice ages and Pliocene-Pleistocene climate evolution

Authors/Creators

  • 1. Brierley
  • 2. Fedorov

Contributors

Contact person:

  • 1. Brierley

Description

Climatologies from the 3 different model simulations performed for the paper published in Paleoceanography (2010, v25, issue 2, https://doi.org/10.1029/2009PA001809). This table shows how the names of the simulations provided here relate to the names in the paper:

Simulation names for cross-referencing
Name of Files Name in Article
EPSST_T_85.*.nc Early Pliocene Simulation
New_MZSST_T_85.*.nc Modern Zonal Simulation
ctl_85_Kerry.*.nc Modern Control Simulation

Additionally the NCL script originally used to create all the figures is included. It is called paleoc_onsetNHG_rev.ncl. The abstract of the paper is below:

"During the early Pliocene (roughly 4 Myr ago), the ocean warm water pool extended over most of the tropics. Subsequently, the warm pool gradually contracted toward the equator, while midlatitudes and subpolar regions cooled, establishing a meridional sea surface temperature (SST) gradient comparable to the modern about 2 Myr ago (as estimated on the eastern side of the Pacific). The zonal SST gradient along the equator, virtually nonexistent in the early Pliocene, reached modern values between 1 and 2 Myr ago. Here, we use an atmospheric general circulation model to investigate the relative roles of the changes in the meridional and zonal temperature gradients for the onset of glacial cycles and for Pliocene-Pleistocene climate evolution in general. We show that the increase in the meridional SST gradient reduces air temperature and increases snowfall over most of North America, both factors favorable to ice sheet inception. The impacts of changes in the zonal gradient, while also important over North America, are somewhat weaker than those caused by meridional temperature variations. The establishment of the modern meridional and zonal SST distributions leads to roughly 3.2°C and 0.6°C decreases in global mean temperature, respectively. Changes in the two gradients also have large regional consequences, including aridification of Africa (both gradients) and strengthening of the Indian monsoon (zonal gradient). Ultimately, this study suggests that the growth of Northern Hemisphere ice sheets is a result of the global cooling of Earth's climate since 4 Myr rather than its initial cause. Thus, reproducing the correct changes in the SST distribution is critical for a model to simulate the transition from the warm early Pliocene to a colder Pleistocene climate."

 

Notes

Financial support was provided by the grants to A.V.F. from the National Science Foundation (OCE-0550439 and OCE-0901921), Department of Energy Office of Science (DE-FG02-06ER64238, DE-FG02-08ER64590), and the David and Lucile Packard Foundation. This work was supported in part by the Yale University Faculty of Arts and Sciences High Performance Computing facility.

Files

Files (1.1 GB)

Name Size
md5:2a56b70bc832c1afb2413bab3fb1429f
119.8 MB Download
md5:546a09efbccf13d71717d07efd84cd60
119.8 MB Download
md5:7bd39df585e6c8226b6d213ba5ede5fd
119.8 MB Download
md5:c6d4340c4bba4bbbedd9836242708d00
119.8 MB Download
md5:50ad10d8accf249fd4ca8b7a188ffbfb
119.8 MB Download
md5:1e41c9539730bb0c84012dd2c3720ce8
119.8 MB Download
md5:e79546e2621daf052ec2db077429e093
119.8 MB Download
md5:1c26b2af31c1738c47f493b0cdc92051
119.8 MB Download
md5:66bdb419bf67ab0ddb66269afd2d64c6
119.8 MB Download
md5:944949c77fd38061b47c77654bc6d1f6
59.2 kB Download

Additional details

Related works

Is described by
Journal article: 10.1029/2009PA001809 (DOI)

References

  • Brierley, C. M., & Fedorov, A. V. (2010). Relative importance of meridional and zonal sea surface temperature gradients for the onset of the ice ages and Pliocene‐Pleistocene climate evolution. Paleoceanography, 25(2).