Late Eocene through Oligocene thermal and cryospheric evolution: Testing latitudinal SSTs and deepwater temperature vs. ice-volume changes
Late Eocene through Oligocene thermal and cryospheric evolution: Testing latitudinal SSTs and deepwater temperature vs. ice-volume changes
批准号:
0623256
负责人:
Kenneth Miller
金额:
$0.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-01 至 2010-02-28
中文摘要
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英文摘要
Late Eocene through Oligocene thermal and cryospheric evolution:Testing latitudinal SSTs and deepwater temperature vs. ice-volume changesThe Eocene to Oligocene climate transition was the most profound oceanographic and climatic change of the past 50 million years. In this project, research will be conducted to examine this global transition from a warm "greenhouse" planet to a cool "icehouse" planet, between ~40-24 myrs ago, as well as to investigate the effects of global ice-sheet growth and subsequent glacial variations on global climate. Stable carbon and oxygen isotopic and trace element (Mg/Ca) geochemical data will be collected from carefully collected, pristine, planktonic and benthic foraminifera from five low-latitude Atlantic industry/survey cores and four ODP/DSDP sites to reconstruct sea-surface temperatures, deepwater temperatures, and ice-volume changes. Questions to be addressed include: 1) Was significant deep-water cooling associated with an increase in continental glaciation during the Eocene-Oligocene transition? 2) Was late Eocene through Oligocene SSTs higher than today and was the climate transition associated with minimal cooling of the tropics, thereby producing a larger increase in the early Oligocene latitudinal SST gradient than previously inferred? 3) Did brief (1 myr) glaciations occur in the middle to late Eocene prior to E-O transition? These new data will provide insight into the mechanisms of transient climate change and the greenhouse-icehouse transition, as well as providing more robust information for climate models attempting to reconstruct Earth History climatic shifts. The proposed research will involve undergraduate and high school students and support two recent female Ph.D.'s. The PI's are involved with public outreach via the Geology Museum and K-12 teacher training.
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Cooperative NSF-USGS Drilling in the Delmarva Peninsula: The Effects of Variations in Global Sea-Level Tectonic Subsidence, and Sediment Supply on Sequence Architecture
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High-Resolution Nested Imaging of Nearshore Sequences, New Jersey Inner Continental Shelf: Linking Onshore and Offshore Sea-Level Studies
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依托单位:
Renewal of Depositional Sequence on the New Jersey Coastal Plain: A Drilling Proposal
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依托单位:
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依托单位:
海外基金