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A speleothem-based mid-Holocene precipitation reconstruction for West-Central Florida

机译:基于speleothem的佛罗里达州中西部全新世中期降水重建

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摘要

The mid-Holocene was the warmest segment of the current interglacial and possessed a weak latitudinal temperature gradient, which impacted climate teleconnections and thus precipitation variability. Our window into the mid-Holocene climate is a high-resolution (near annual) stalagmite stable isotope-based paleoprecipitation record from Brown's Cave in West-Central Florida. The oxygen isotopic (delta O-18) time series is tied to a uranium-series (U-series) chronology that covers a 2000-year period from 6.6 to 4.6 ka. We compared our reconstruction with another speleothem delta O-18-derived precipitation record near our study area that spans the last 1600 years. That comparison shows that the mid-Holocene was drier than the last 1.6 millennia. We posit the cause of this aridity was a westward expansion of the North Atlantic Subtropical High (NASH) coupled with changes in the planetary boundary layer in the Gulf of Mexico. Time-series analysis of our oxygen isotopic record found little evidence of any teleconnections originating from the North Atlantic including the North Atlantic Oscillation during the mid-Holocene. However, there is some indication of a weak, quasi-persistent oscillation within the temporal periodicity of the Atlantic Multidecadal Variability.
机译:全新世中期是当前冰间期中最温暖的部分,其纬向温度梯度较弱,这影响了气候遥相关,进而影响了降水变化。来自佛罗里达州中西部布朗洞的高分辨率(近年度)石笋稳定同位素同位素古降水记录是我们进入全新世气候的窗口。氧同位素(δO-18)时间序列与铀系列(U系列)年表相关,该系列涵盖了2000年,从6.6到4.6 ka。我们将重建过程与研究地区附近过去1600年间由speleothem delta O-18产生的另一条降水记录进行了比较。该比较表明,全新世中期比前1.6千年更干旱。我们认为,造成这种干旱的原因是北大西洋副热带高压(NASH)向西扩张,以及墨西哥湾的行星边界层发生变化。对我们的氧同位素记录进行时间序列分析后,发现几乎没有证据表明全新世中期发生过来自北大西洋的任何遥相关,包括北大西洋涛动。但是,有一些迹象表明在大西洋多年代际变率的时间周期内存在微弱的准持续振荡。

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