期刊论文详细信息
QUATERNARY SCIENCE REVIEWS 卷:178
Late Quaternary uplift along the North America-Caribbean plate boundary: Evidence from the sea level record of Guantanamo Bay, Cuba
Article
Muhs, Daniel R.1  Schweig, Eugene S.1  Simmons, Kathleen R.1  Halley, Robert B.1 
[1] US Geol Survey, Fed Ctr, MS 980,Box 25046, Denver, CO 80225 USA
关键词: Pleistocene;    Sea level changes;    North Atlantic;    U-Th series;    Geomorphology;    Coastal;    Cuba;    Uplift;   
DOI  :  10.1016/j.quascirev.2017.10.024
来源: Elsevier
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【 摘 要 】

The tectonic setting of the North America-Caribbean plate boundary has been studied intensively, but some aspects are still poorly understood, particularly along the Oriente fault zone. Guantanamo Bay, southern Cuba, is considered to be on a coastline that is under a transpressive tectonic regime along this zone, and is hypothesized to have a low uplift rate. We tested this by studying emergent reef terrace deposits around the bay. Reef elevations in the protected, inner part of the bay are similar to 11-12 m and outer coast, wave-cut benches are as high as similar to 14 m. Uranium-series analyses of corals yield ages ranging from similar to 133 ka to similar to 119 ka, correlating this reef to the peak of the last interglacial period, marine isotope stage (MIS) 5.5. Assuming a span of possible paleo-sea levels at the time of the last interglacial period yields long-term tectonic uplift rates of 0.02-0.11 m/ka, supporting the hypothesis that the tectonic uplift rate is low. Nevertheless, on the eastern and southern coasts of Cuba, east and west of Guantanamo Bay, there are flights of multiple marine terraces, at higher elevations, that could record a higher rate of uplift, implying that Guantanamo Bay may be anomalous. Southern Cuba is considered to have experienced a measurable but modest effect from glacial isostatic adjustment (GIA) processes. Thus, with a low uplift rate, Guantanamo Bay should show no evidence of emergent marine terraces dating to the similar to 100 ka (MIS 5.3) or similar to 80 ka (MIS 5.1) sea stands and results of the present study support this. Published by Elsevier Ltd.

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