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Constraining mid to late Holocene relative sea level change in the southern equatorial Pacific Ocean relative to the Society Islands, French Polynesia

机译:赤道太平洋南部相对于社会群岛,法属波利尼西亚,限制中全新世中晚期相对海平面变化

摘要

Precisely quantifying the current climate-related sea level change requires accurate knowledge of long-term geological processes known as Glacial Isostatic Adjustments (GIA). Although the major postglacial melting phase is likely to have ended ~6–4 ka BP (before present), GIA is still significantly affecting the present-day vertical position of the mean sea surface and the sea bottom. Here we present empirical rsl (relative sea level) data based on U/Th dated fossil corals from reef platforms of the Society Islands, French Polynesia, together with the corresponding GIA-modeling. Fossil coral data constrain the timing and amplitude of rsl variations after the Holocene sea level maximum (HSLM). Upon correction for isostatic island subsidence, we find that local rsl was at least ~1.5?±?0.4 m higher than present at ~5.4 ka. Later, minor amplitude variations occurred until ~2 ka, when the rsl started dropping to its present position with a rate of ~0.4 mm/yr. The data match with predicted rsl curves based on global ice-sheet chronologies confirming the role of GIA-induced ocean siphoning effect throughout the mid to late Holocene. A long lasting Late Holocene highstand superimposed with second-order amplitudinal fluctuations as seen from our data suggest that the theoretical predicted timing of rsl change can still be refined pending future calibration
机译:要准确量化当前与气候相关的海平面变化,需要对称为冰川等静压调整(GIA)的长期地质过程有准确的了解。尽管主要的冰川后融化阶段可能已经结束了约6–4 ka BP(之前存在),但GIA仍显着影响当今平均海平面和海底的垂直位置。在这里,我们根据法属波利尼西亚社会群岛礁平台的U / Th年代化石珊瑚提供经验rsl(相对海平面)数据,以及相应的GIA模型。化石珊瑚数据限制了全新世海平面最大值(HSLM)之后rsl变化的时间和幅度。校正等静压岛沉降后,我们发现局部rsl比当前的〜5.4 ka高至少〜1.5?±?0.4 m。后来,出现了较小的幅度变化,直到〜2 ka,这时rs1开始以〜0.4 mm / yr的速率下降到其当前位置。数据与基于全球冰盖年表的rsl曲线预测相吻合,证实了GIA诱导的全新世中期至晚期海洋虹吸效应的作用。从我们的数据中可以看到,持久的全新世晚期高位与二阶振幅波动叠加在一起,表明理论上预测的rsl变化的时机仍可在未来校准之前完善

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