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首页> 外文期刊>Geophysical Research Letters >Refugium for surface life on Snowball Earth in a nearly-enclosed sea? A first simple model for sea-glacier invasion
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Refugium for surface life on Snowball Earth in a nearly-enclosed sea? A first simple model for sea-glacier invasion

机译:在几乎封闭的海中,雪地地球上的地表生命是否得到保护?第一个简单的海冰入侵模型

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摘要

The existence of photosynthetic eukaryotic algae during the so-called Snowball Earth events presents a conundrum. If thick ice covered the oceans, where could such life persist? Here we explore the possibility that photosynthetic life persisted at the end of long narrow seas, analogous to the modern-day Red Sea. In this first analytical model, we test the ability of the global sea glacier to penetrate a Red Sea analogue under climatic conditions appropriate during a Snowball Earth event. We find the Red Sea is long enough to provide a refugium only if certain ranges of climatic conditions are met. These ranges would likely expand if the restrictive effect of a narrow entrance strait is also considered.
机译:在所谓的“雪球地球”事件中,光合真核藻类的存在提出了一个难题。如果厚厚的冰覆盖了海洋,这种生命将持续到哪里?在这里,我们探索了在类似于现代红海的狭长海洋的尽头,光合生命持续存在的可能性。在第一个分析模型中,我们测试了全球海冰川在雪球地球事件期间合适的气候条件下穿透红海类似物的能力。我们发现,只有在满足一定范围的气候条件时,红海的长度足以提供避难所。如果还考虑狭窄入口海峡的限制作用,这些范围可能会扩大。

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