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Departures from eustasy in Pliocene sea-level records

机译:在上新世海平面记录中从摇头丸出发

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Proxy data suggest that atmospheric CO2 levels during the middle of the Pliocene epoch (about 3??‰Myr ago) were similar to today, leading to the use of this interval as a potential analogue for future climate change. Estimates for mid-Pliocene sea levels range from 10 to 40'm above present, and a value of +25'm is often adopted in numerical climate model simulations. A eustatic change of such magnitude implies the complete deglaciation of the West Antarctic and Greenland ice sheets, and significant loss of mass in the East Antarctic ice sheet. However, the effects of glacial isostatic adjustments have not been accounted for in Pliocene sea-level reconstructions. Here we numerically model these effects on Pliocene shoreline features using a gravitationally self-consistent treatment of post-glacial sea-level change. We find that the predicted modern elevation of Pliocene shoreline features can deviate significantly from the eustatic signal, even in the absence of subsequent tectonically-driven movements of the Earth's surface. In our simulations, this non-eustatic sea-level change, at individual locations, is caused primarily by residual isostatic adjustments associated with late Pleistocene glaciation. We conclude that a combination of model results and field observations can help to better constrain sea level in the past, and hence lend insight into the stability of ice sheets under varying climate conditions.
机译:替代数据表明,上新世中期(大约3‰‰)之前的大气CO2水平与今天相似,导致该间隔被用作未来气候变化的潜在类似物。上新世中期海平面的估计值比目前高10至40'm,数值气候模型模拟中通常采用+ 25'm的值。如此大的欣快变化意味着南极西部和格陵兰冰原完全脱冰,南极东部冰原的质量明显损失。但是,上新世海平面重建并未考虑冰川等静压调整的影响。在这里,我们采用重力自洽处理冰川后海平面变化的方式,对这些对上新世海岸线特征的影响进行了数值模拟。我们发现,即使没有随后地表构造驱动的地表运动,上新世海岸线特征的现代预测高度也会明显偏离正常信号。在我们的模拟中,在各个位置的这种非大洋洋的海平面变化主要是由与晚更新世冰川期相关的残余等静压调整引起的。我们得出的结论是,模型结果和现场观测的结合可以帮助更好地限制过去的海平面,因此有助于洞察不同气候条件下冰盖的稳定性。

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