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Magmatic pulse driven by sea-level changes associated with the Messinian salinity crisis

机译:由与Messinian盐度危机相关的海平变化驱动的岩浆脉冲

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摘要

Between 5 and 6 million years ago, during the so-called Messinian salinity crisis, the Mediterranean basin became a giant salt repository. The possibility of abrupt and kilometre-scale sea-level changes during this extreme event is debated. Messinian evaporites could signify either deep-or shallow-marine deposits, and ubiquitous erosional surfaces could indicate either subaerial or submarine features. Significant and fast reductions in sea level unload the lithosphere, which can increase the production and eruption of magma. Here we calculate variations in surface load associated with the Messinian salinity crisis and compile the available time constraints for pan-Mediterranean magmatism. We show that scenarios involving a kilometre-scale drawdown of sea level imply a phase of net overall lithospheric unloading at a time that appears synchronous with a magmatic pulse from the pan-Mediterranean igneous provinces. We verify the viability of a mechanistic link between unloading and magmatism using numerical modelling of decompression partial mantle melting and dyke formation in response to surface load variations. We conclude that the Mediterranean magmatic record provides an independent validation of the controversial kilometre-scale evaporative drawdown and sheds new light on the sensitivity of magmatic systems to the surface forcing.
机译:5至600万年前,在所谓的梅内尼亚盐度危机期间,地中海盆地成为巨大的盐库。在这个极端事件中发生突然和公正的海平面变化的可能性是讨论的。 Messinian蒸发岩可以表示深层或浅海洋沉积物,无处不在的侵蚀表面可以表明丘脑或潜艇特征。海平面卸下岩石圈的显着和快速减少,可以增加岩浆的生产和爆发。在这里,我们计算与Messinian盐度危机相关的表面负荷的变化,并编制Pan-Mediterranean Magmatism的可用时间限制。我们展示了涉及海平面的公里级绘制的场景意味着在与泛地中海火油省份的岩浆脉冲同步的时间时净整体岩石中卸载的相位。我们使用减压部分地幔熔融和堤防形成的数值模型来验证卸载和岩浆中的机械链路的可行性,响应于表面负荷变化。我们得出结论,地中海岩浆记录提供了独立验证争议公里规模的蒸发绘制,并阐明了岩浆系统对表面强制敏感性的新光线。

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