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Deep crustal structure of the North-West African margin from combined wide-angle and reflection seismic data (MIRROR seismic survey)

机译:基于广角和反射地震数据的西北非洲边缘的深层地壳结构(镜子地震调查)

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摘要

The structure of the Moroccan and Nova Scotia conjugate rifted margins is of key importance for understanding the Mesozoic break-up and evolution of the northern central Atlantic Ocean basin. Seven combined multichannel reflection (MCS) and wide-angle seismic (OBS) data profiles were acquired along the Atlantic Moroccan margin between the latitudes of 31.5° and 33° N during the MIRROR seismic survey in 2011, in order to image the transition from continental to oceanic crust, to study the variation in crustal structure and to characterize the crust under the West African Coast Magnetic Anomaly (WACMA).The data were modeled using a forward modeling approach. The final models image crustal thinning from 36 km thickness below the continent to approximately 8 km in the oceanic domain. A 100 km wide zone characterized by rough basement topography and high seismic velocities up to 7.4 km/s in the lower crust is observed westward of the West African Coast Magnetic Anomaly. No basin underlain by continental crust has been imaged in this region, as has been identified north of our study area. Comparison to the conjugate Nova Scotian margin shows a similar continental crustal thickness and layer geometry, and the existence of exhumed and serpentinized upper mantle material on the Canadian side only. The oceanic crustal thickness is lower on the Canadian margin.
机译:摩洛哥和新斯科舍共轭裂谷边缘的结构是至关重要的理解中生代分裂和进化中北部大西洋盆地。在2011年镜子地震调查期间,沿着大西洋摩洛哥边缘获得了七个组合的多通道反射(MCS)和广角地震(OBS)数据型材,以便在2011年镜子地震调查中进行映射到大陆的过渡对海底,研究地壳结构的变化并表征西非海岸磁异常(Wacma)下的外壳。使用前向建模方法进行建模。最终模型从大陆低36公里的厚度从大陆厚度到海洋域约8公里。在西非海岸磁性异常的西部,观察到粗糙地下地形地形和高达7.4 km / s的高达7.4 km / s的宽区域。由于我们的研究区域以北地区确定了该地区的大陆地壳未在该地区占据盆地。与共轭Nova斯科伊利润的比较显示了类似的大陆地壳厚度和层几何形状,并且仅存在于加拿大侧的膨胀和蛇形的上部地幔材料。加拿大边缘的海洋地壳厚度较低。

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