首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Along-Margin Variations in Breakup Volcanism at the Eastern North American Margin
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Along-Margin Variations in Breakup Volcanism at the Eastern North American Margin

机译:沿着北美洲东部的破坏火山的边缘变异

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摘要

We model the magnetic signature of rift-related volcanism to understand the distribution and volume of magmatic activity that occurred during the breakup of Pangaea and early Atlantic opening at the Eastern North American Margin (ENAM). Along-strike variations in the amplitude and character of the prominent East Coast Magnetic Anomaly (ECMA) suggest that the emplacement of the volcanic layers producing this anomaly similarly varied along the margin. We use three-dimensional magnetic forward modeling constrained by seismic interpretations to identify along-margin variations in volcanic thickness and width that can explain the observed amplitude and character of the ECMA. Our model results suggest that the ECMA is produced by a combination of both first-order (similar to 600-1,000 km) and second-order (similar to 50-100 km) magmatic segmentation. The first-order magmatic segmentation could have resulted from preexisting variations in crustal thickness and rheology developed during the tectonic amalgamation of Pangaea. The second-order magmatic segmentation developed during continental breakup and likely influenced the segmentation and transform fault spacing of the initial, and modern, Mid-Atlantic Ridge. These variations in magmatism show how extension and thermal weakening was distributed at the ENAM during continental breakup and how this breakup magmatism was related to both previous and subsequent Wilson cycle stages.
机译:我们对裂谷相关火山作用的磁特征进行建模,以了解北美东部边缘(ENAM)泛大陆裂解和早期大西洋开口期间发生的岩浆活动的分布和体积。东海岸显著磁异常(ECMA)的振幅和特征沿走向的变化表明,产生这种异常的火山岩层的侵位沿边缘也有类似的变化。我们使用受地震解释约束的三维磁正演模拟来确定火山厚度和宽度沿边缘的变化,这可以解释观测到的ECMA振幅和特征。我们的模型结果表明,ECMA由一级(类似于600-1000 km)和二级(类似于50-100 km)岩浆分段的组合产生。一级岩浆分段可能是由于盘古大陆构造拼合过程中地壳厚度和流变学的先存变化造成的。二级岩浆分段是在大陆裂解期间形成的,可能会影响初始和现代中大西洋海脊的分段和转换断层间距。这些岩浆作用的变化表明,大陆裂解期间,伸展和热弱化是如何分布在ENAM的,以及这种裂解岩浆作用如何与之前和之后的威尔逊旋回阶段有关。

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