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      On the fidelity of shell-derived δ18Oseawater estimates

      , , ,
      Earth and Planetary Science Letters
      Elsevier BV

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          The surface of the ice-age Earth.

          (1976)
          In the Northern Hemisphere the 18,000 B.P. world differed strikingly from the present in the huge land-based ice sheets, reaching approximately 3 km in thickness, and in a dramatic increase in the extent of pack ice and marine-based ice sheets. In the Southern Hemisphere the most striking contrast was the greater extent of sea ice. On land, grasslands, steppes, and deserts spread at the expense of forests. This change in vegetation, together with extensive areas of permanent ice and sandy outwash plains, caused an increase in global surface albedo over modern values. Sea level was lower by at least 85 m. The 18,000 B.P. oceans were characterized by: (i) marked steepening of thermal gradients along polar frontal systems, particularly in the North Atlantic and Antarctic; (ii) an equatorward displacement of polar frontal systems; (iii) general cooling of most surface waters, with a global average of -2.3 degrees C; (iv) increased cooling and up-welling along equatorial divergences in the Pacific and Atlantic; (v) low temperatures extending equatorward along the western coast of Africa, Australia, and South America, indicating increased upwelling and advection of cool waters; and (vi) nearly stable positions and temperatures of the central gyres in the subtropical Atlantic, Pacific, and Indian oceans.
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            The role of ocean-atmosphere reorganizations in glacial cycles

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              Climate Impact of Late Quaternary Equatorial Pacific Sea Surface Temperature Variations

              D. W. Lea (2000)
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                Author and article information

                Journal
                Earth and Planetary Science Letters
                Earth and Planetary Science Letters
                Elsevier BV
                0012821X
                December 2010
                December 2010
                : 300
                : 3-4
                : 185-196
                Article
                10.1016/j.epsl.2010.10.035
                dc1609cb-2478-45ae-ab55-f95fb808a016
                © 2010

                http://www.elsevier.com/tdm/userlicense/1.0/

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