Published December 2010 | Version Published
Journal Article Open

The Effect of Milankovitch Variations in Insolation on Equatorial Seasonality

  • 1. ROR icon Ben-Gurion University of the Negev
  • 2. ROR icon California Institute of Technology
  • 3. ROR icon University of Washington
  • 4. ROR icon Hebrew University of Jerusalem
  • 5. ROR icon Harvard University

Abstract

Although the sun crosses the equator 2 times per year at the equinoxes, at times in the past the equatorial insolation has had only one maximum and one minimum throughout the seasonal cycle because of Milankovitch orbital variations. Here a state-of-the-art coupled atmosphere–ocean general circulation model is used to study the effect of such insolation forcing on equatorial surface properties, including air and sea temperature, salinity, winds, and currents. It is shown that the equatorial seasonality is altered according to the insolation with, for example, either maximum sea surface temperature (SST) close to the vernal equinox and minimum SST close to the autumnal equinox or vice versa. The results may have important implications for understanding tropical climate as well as for the interpretation of proxy data collected from equatorial regions.

Additional Information

© 2010 American Meteorological Society. Received: March 1, 2010; Accepted: July 26, 2010. We thank the United States–Israel Binational Science Foundation for its financial support. Author IE is funded by a Prize Postdoctoral Fellowship through Caltech's Division of Geological and Planetary Sciences and a NOAA Climate and Global Change Postdoctoral Fellowship administered by the University Corporation for Atmospheric Research; ET is funded by the NSF P2C2 program through Grant ATM-0902844.

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Identifiers

Eprint ID
21928
Resolver ID
CaltechAUTHORS:20110131-084720321

Funding

United States–Israel Binational Science Foundation (BSF)
Caltech Division of Geological and Planetary Sciences Prize Postdoctoral Fellowship
NOAA Climate and Global Change Postdoctoral Fellowship
NSF P2C2
ATM-0902844

Dates

Created
2011-01-31
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Updated
2021-11-09
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