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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Refugium for surface life on Snowball Earth in a nearly enclosed sea? A numerical solution for sea-glacier invasion through a narrow strait
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Refugium for surface life on Snowball Earth in a nearly enclosed sea? A numerical solution for sea-glacier invasion through a narrow strait

机译:在几乎封闭的海中,雪地地球上的地表生物是否得到保护?狭窄海峡入侵海冰的数值解

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摘要

Where photosynthetic eukaryotic organisms survived during the Snowball Earth events of the Neoproterozoic remains unclear. Our previous research tested whether a narrow arm of the ocean, similar to the modern Red Sea, could have been a refugium for photosynthetic eukaryotes during the Snowball Earth. Using an analytical ice-flow model, we demonstrated that a limited range of climate conditions could restrict sea-glacier flow sufficiently to allow an arm of the sea to remain partially free from sea-glacier penetration, a necessary condition for it to act as a refugium. Here we expand on the previous study, using a numerical ice-flow model, with the ability to capture additional physics, to calculate sea-glacier penetration, and to explore the effect of a channel with a narrow entrance. The climatic conditions are made selfconsistent by linking sublimation rate to surface temperature. As expected, the narrow entrance allows parts of the nearly enclosed sea to remain safe from sea-glacier penetration for a wider range of climate conditions.
机译:在新元古代的雪球地球事件期间,光合作用的真核生物在何处存活尚不清楚。我们先前的研究测试了像现代红海一样,海洋的狭窄分支是否可能成为雪球地球期间光合作用真核生物的避难所。使用分析性冰流模型,我们证明了有限的气候条件可能会限制海冰流动,从而足以使一部分海洋保持部分不受海冰渗透的作用,而这正是海冰充当冰河活动的必要条件。避难所。在这里,我们使用数值冰流模型扩展先前的研究,该模型具有捕获其他物理学,计算海冰穿透力以及探索入口狭窄通道的效果的能力。通过将升华速率与地表温度联系起来,使气候条件自洽。正如预期的那样,狭窄的入口使近乎封闭的海域在更大范围的气候条件下仍可防止海冰渗透。

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