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Institute for Polar Ecology, Kiel University, Kiel, Germany

机译:基尔大学极地生态研究所,德国基尔

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摘要

The late Neoproterozoic era, ~600–800 Myr ago, was marked by at least two intervals of widespread cold that left glacial deposits at low paleolatitudes. Both “Snowball” solutions with global ice cover and “Slushball” solutions with ice-free tropical oceans have been proposed to explain the paleomagnetic data. The Snowball model is best able to explain the auxiliary geological evidence, particularly the existence of cap carbonates, but it implies drastic survival pressure on the photosynthetic biota if the ice cover was everywhere thick enough to prevent sunlight from reaching the underlying ocean. A “thin ice” solution that avoids this problem has been proposed but is thought to be inconsistent with realistic optical properties of sea ice and with the equatorward flow of sea glaciers. Here we use a coupled energy-balance climate/sea-glacier model to argue that these apparent difficulties can be overcome and that thin tropical ice may have prevailed during these remarkable glacial episodes. We also suggest that (1) some processes beyond the scope of zonal mean energy-balance models may significantly affect the solutions and (2) thin ice could have prevailed on low-latitude seas (or large lakes) protected from large-scale sea-glacier flow by surrounding land even if most of the Earth was in a “hard Snowball” state.
机译:新元古代晚期,〜600-800 Myr以前,以至少两次间隔的广泛感冒为标志,这使冰川沉积处于低古纬度。提出了具有全球冰盖的“ Snowball”解决方案和无冰热带海洋的“ Slushball”解决方案来解释古磁数据。 Snowball模型最能解释辅助地质证据,特别是帽状碳酸盐的存在,但如果冰盖到处都厚到足以防止阳光到达下面的海洋,则它暗示了光合生物群落的生存压力极大。已经提出了避免该问题的“薄冰”解决方案,但是认为该解决方案与海冰的现实光学特性和海冰川的赤道流不一致。在这里,我们使用能量平衡的气候/海冰耦合模型来论证,这些明显的困难可以克服,并且在这些非凡的冰川事件中薄薄的热带冰可能已经盛行。我们还建议(1)超出区域平均能量平衡模型范围的某些过程可能会对解决方案产生重大影响;(2)薄冰可能在受到大规模海平面保护的低纬度海域(或大型湖泊)中盛行即使地球上大部分地区处于“坚硬的雪球”状态,周围陆地的冰川流动也是如此。

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