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Record #150527:
Reassessment of ice-age cooling of the tropical ocean and atmosphere / S.W. Hostetler, A.C. Mix.
Title: | Reassessment of ice-age cooling of the tropical ocean and atmosphere / S.W. Hostetler, A.C. Mix. |
Author(s): | Hostetler, S. W. Mix, A. C. |
Date: | 1999. |
In: | Nature. (1999.), Vol. 399(6737) (1999) |
Abstract: | Uses variation of foraminiferal species through time in reassessment of sea-surface temperature reconstruction. Explores climatic implications of this revised sea-surface field for Last Glacial Maximum using atmospheric general circulation model. Cooler equatorial oceans modify seasonal air temperatures of South America, Africa and southeast Asia, causing changes in regional moisture patterns. Suggests wind-related mechanism for enhancing export of water vapour from Atlantic to Indo-Pacific oceans, possibly linking variations in deep-water production and high-latitude climate changes to equatorial sea-surface temperatures. |
Notes: | Nature. Vol. 399(6737) :673-676 (1999). |
Keywords: | 551.32 -- Glaciology. 551.58 -- Climatology. 551.583 -- Climatic changes. 551.5 -- Meteorology. 551.51 -- Atmosphere. Structure, mechanics and thermodynamics. 551.513 -- Atmosphere, general circulation. 551.46 -- Oceanography, physical. 551.463.6 -- Sea water, thermal properties and heat flux. 551.526 -- Water surface, temperature. 551.791 -- Pleistocene. 593.12 -- Foraminifera and amoebozoa. 519.673 -- Modelling. E9 -- Glaciology: meteorology and climatology. |
SPRI record no.: | 150527 |
LDR 01860naa#a2200000#a#4500 001 SPRI-150527 005 20240419045704.0 007 ta 008 240419s1999####xx#a##|##|###|0||#0|eng#d 035 ## ‡aSPRI-150527 040 ## ‡aUkCU-P‡beng‡eaacr 100 1# ‡aHostetler, S. W. 245 10 ‡aReassessment of ice-age cooling of the tropical ocean and atmosphere /‡cS.W. Hostetler, A.C. Mix. 260 ## ‡a[S.l.] :‡b[s.n.],‡c1999. 300 ## ‡ap. 673-676 :‡bdiags., table. 500 ## ‡aNature. Vol. 399(6737) :673-676 (1999). 520 3# ‡aUses variation of foraminiferal species through time in reassessment of sea-surface temperature reconstruction. Explores climatic implications of this revised sea-surface field for Last Glacial Maximum using atmospheric general circulation model. Cooler equatorial oceans modify seasonal air temperatures of South America, Africa and southeast Asia, causing changes in regional moisture patterns. Suggests wind-related mechanism for enhancing export of water vapour from Atlantic to Indo-Pacific oceans, possibly linking variations in deep-water production and high-latitude climate changes to equatorial sea-surface temperatures. 650 07 ‡a551.32 -- Glaciology.‡2udc 650 07 ‡a551.58 -- Climatology.‡2udc 650 07 ‡a551.583 -- Climatic changes.‡2udc 650 07 ‡a551.5 -- Meteorology.‡2udc 650 07 ‡a551.51 -- Atmosphere. Structure, mechanics and thermodynamics.‡2udc 650 07 ‡a551.513 -- Atmosphere, general circulation.‡2udc 650 07 ‡a551.46 -- Oceanography, physical.‡2udc 650 07 ‡a551.463.6 -- Sea water, thermal properties and heat flux.‡2udc 650 07 ‡a551.526 -- Water surface, temperature.‡2udc 650 07 ‡a551.791 -- Pleistocene.‡2udc 650 07 ‡a593.12 -- Foraminifera and amoebozoa.‡2udc 650 07 ‡a519.673 -- Modelling.‡2udc 650 07 ‡aE9 -- Glaciology: meteorology and climatology.‡2local 700 1# ‡aMix, A. C. 773 0# ‡7nnas ‡tNature. ‡gVol. 399(6737) (1999) ‡wSPRI-1046 917 ## ‡aUnenhanced record from Muscat, imported 2019 948 3# ‡a20240419