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Detailed Reference Information |
Hemleben, C., Meischner, D., Zahn, R., Almogi-Labin, A., Erlenkeuser, H. and Hiller, B. (1996). Three hundred eighty thousand year long stable isotope and faunal records from the Red Sea: Influence of global sea level change on hydrography. Paleoceanography 11: doi: 10.1029/95PA03838. issn: 0883-8305. |
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Stable isotope and faunal records from the central Red Sea show high-amplitude oscillations for the past 380,000 years. Positive Δ 18O anomalies indicate periods of significant salt buildup during periods of lowered sea level when water mass exchange with the Arabian Sea was reduced due to a reduced geometry of the Bab el Mandeb Strait. Salinities as high as 53? and 55? are inferred from pteropod and benthic foraminifera Δ 18O, respectively, for the last glacial maximum. During this period all planktonic foraminifera vanished from this part of the Red Sea. Environmental conditions improved rapidly after 13 ka as salinities decreased due to rising sea level. The foraminiferal fauna started to reappear and was fully reestablished between 9 ka and 8 ka. Spectral analysis of the planktonic Δ 18O record documents highest variance in the orbital eccentricity, obliquity, and precession bands, indicating a dominant influence of climatically--driven sea level change on environmental conditions in the Red Sea. Variance in the precession band is enhanced compared to the global mean marine climate record (SPECMAP), suggesting an additional influence of the Indian monsoon system on Red Sea climates. ¿ American Geophysical Union 1996 |
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Abstract |
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Keywords
Oceanography, General, Paleoceanography |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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