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Multiple volcanic episodes of flood basalts caused by thermochemical mantle plumes

机译:热化学幔幔羽引起的多处玄武岩火山爆发

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The hypothesis that a single mushroom-like mantle plume head can generate a large igneous province within a few million years has been widely accepted(1). The Siberian Traps at the Permian Triassic boundary(2) and the Deccan Traps at the Cretaceous Tertiary boundary(3) were probably erupted within one million years. These large eruptions have been linked to mass extinctions. But recent geochronological data(4-11) reveal more than one pulse of major eruptions with diverse magma flux within several flood basalts extending over tens of million years. This observation indicates that the processes leading to large igneous provinces are more complicated than the purely thermal, single-stage plume model suggests. Here we present numerical experiments to demonstrate that the entrainment of a dense eclogite-derived material at the base of the mantle by thermal plumes can develop secondary instabilities due to the interaction between thermal and compositional buoyancy forces. The characteristic timescales of the development of the secondary instabilities and the variation of the plume strength are compatible with the observations. Such a process may contribute to multiple episodes of large igneous provinces.
机译:单个蘑菇状地幔柱头可以在几百万年内产生较大火成岩的假说已被广泛接受(1)。二叠纪三叠纪界线的西伯利亚圈闭(2)和白垩纪第三系界线的德干圈闭(3)可能在一百万年内爆发了。这些大爆发与大规模灭绝有关。但是最近的地质年代学资料(4-11)显示,在几千万年的几个玄武岩中,不止一个脉冲爆发,岩浆通量各不相同。该观察结果表明,导致火成岩大省的过程比纯热的单阶段羽状模型所暗示的过程更为复杂。在这里,我们提供了数值实验,以证明热羽在地幔底部夹带的致密榴辉岩衍生材料会由于热浮力和成分浮力之间的相互作用而发展出次生不稳定性。次生不稳定性发展的特征时间尺度和羽流强度的变化与观测结果兼容。这样的过程可能导致大火成岩省的多次发作。

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