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Lithospheric controls on melt production during continental breakup at slow rates of extension: Application to the North Atlantic

机译:浅谈融合生产的岩石防治,延伸缓慢:北大西洋应用

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摘要

Rifted margins form from extension and breakup of the continentallithosphere. If this extension is coeval with a region of hotter lithosphere,then it is generally assumed that a volcanic margin would follow. Herewe present the results of numerical simulations of rift margin evolution byextending continental lithosphere above a thermal anomaly. We find that unlessthe lithosphere is thinned prior to the arrival of the thermal anomalyor half spreading rates are more than ? 50mmyr?1, the lithosphere actsas a lid to the hot material. The thermal anomaly cools significantly by conductionbefore having an effect on decompression melt production. If the lithosphereis thinned by the formation of extensional basins then the thermalanomaly advects into the thinned region and leads to enhanced decompressionmelting. In the North Atlantic a series of extensional basins off the coastof northwest Europe and Greenland provide the required thinning. This observationsuggests that volcanic margins that show slow rates of extension,only occur where there is the combination of a thermal anomaly and previousregional thinning of the lithosphere.
机译:大陆岩石圈的扩展和破裂形成了裂谷。如果此扩展与岩石圈较热的区域同时出现,那么通常会假定火山边缘将随之而来。在此,我们介绍了通过将大陆岩石圈扩展到热异常之上来进行裂谷边缘演化的数值模拟结果。我们发现,除非在热异常到来之前将岩石圈减薄,否则一半的扩散速率大于? 50mmyr?1,岩石圈充当热物质的盖子。在对减压熔体产生产生影响之前,热异常通过传导而显着冷却。如果岩石圈因伸展盆地的形成而变薄,那么热异常会平缓进入变薄的区域,并导致减压融化作用增强。在北大西洋,西北欧洲和格陵兰海岸以外的一系列伸展盆地提供了所需的稀疏性。该观察结果表明,火山边缘的扩张速度缓慢,仅在热异常和岩石圈先前区域变薄的结合处发生。

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