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Modelled ocean changes at the Plio-Pleistocene transition driven by Antarctic ice advance

机译:受南极冰层推进推动的上新世-上新世过渡时期的模拟海洋变化

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摘要

The Earth underwent a major transition from the warm climates of the Pliocene to the Pleistocene ice ages between 3.2 and 2.6 million years ago. The intensification of Northern Hemisphere Glaciation is the most obvious result of the Plio-Pleistocene transition. However, recent data show that the ocean also underwent a significant change, with the convergence of deep water mass properties in the North Pacific and North Atlantic Ocean. Here we show that the lack of coastal ice in the Pacific sector of Antarctica leads to major reductions in Pacific Ocean overturning and the loss of the modern North Pacific Deep Water (NPDW) mass in climate models of the warmest periods of the Pliocene. These results potentially explain the convergence of global deep water mass properties at the Plio-Pleistocene transition, as Circumpolar Deep Water (CDW) became the common source.
机译:地球经历了从上新世的温暖气候到3.2到260万年前的更新世冰期的重大过渡。北半球冰川的加剧是上新世-上新世过渡的最明显结果。但是,最新数据表明,随着北太平洋和北大西洋深水物质特性的融合,海洋也发生了重大变化。在这里,我们表明,在上新世最暖期的气候模型中,南极太平洋太平洋地区缺乏沿海冰层,导致太平洋倾覆量大大减少,现代北太平洋深水(NPDW)质量损失。这些结果潜在地解释了上周向更新世过渡时期全球深水质量特性的趋同,因为绕极深水(CDW)成为常见来源。

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