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Less ice, less tilt, less chill: The influence of a seasonally ice-free Arctic Ocean and reduced obliquity on early Paleogene climate

机译:更少的冰,更少的倾斜,更少的寒冷:季节性无冰的北冰洋和倾角减少对古近纪早期气候的影响

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摘要

For more than 20 years the paleoclimate modeling community has sought the mechanism for generating a warm, equable early Paleogene climate. Increased greenhouse gas concentrations and warm sea-surface temperatures (SSTs) do much to reproduce the climate indicated by proxy data; however, discrepancies between model output and data remain, and a term in the equable climate equation is clearly missing. Based on proxy data indications of reduced early Palcogene seasonality, we test the climate impact of a reduction in Earth's obliquity to 18degrees. Obliquity is one of the few forcing factors that can directly affect seasonality, and our hypothesis of changing obliquity is supported by large planetary mass redistributions in the past 120 m.y. Such mass redistributions have the potential to change the tilt of Earth's axis. In our experiment the combination of reduced obliquity, increased early Paleogene greenhouse gas concentrations, and conservatively warm SSTs reproduces early Paleogene climate with greater accuracy than any previous modeling efforts and provides a plausible solution to the equable climate challenge.
机译:20多年来,古气候建模界一直在寻找一种机制来产生温暖,平等的古近纪早期气候。增加的温室气体浓度和温暖的海表温度(SSTs)可以极大地再现代理数据表明的气候;但是,模型输出和数据之间仍然存在差异,并且公平气候方程中的术语显然缺失。根据代理数据表明早期帕尔金基因的季节性减少,我们测试了地球倾角降低到18度对气候的影响。倾角是可直接影响季节变化的为数不多的强迫因素之一,而过去120 y年,行星倾角变化的假设得到了大质量行星再分布的支持。这种质量重新分布有可能改变地球轴的倾斜度。在我们的实验中,减少倾角,增加古近纪早期温室气体浓度以及保守地温暖的SST的组合比任何以前的建模工作都能够更准确地重现古近纪早期气候,并为合理的气候挑战提供了可行的解决方案。

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