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首页> 外文期刊>Tectonics >Hierarchical segmentation of the Malawi Rift: The influence of inherited lithospheric heterogeneity and kinematics in the evolution of continental rifts
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Hierarchical segmentation of the Malawi Rift: The influence of inherited lithospheric heterogeneity and kinematics in the evolution of continental rifts

机译:马拉维裂谷的分层分割:继承的岩石圈非均质性和运动学对大陆裂谷演化的影响

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We used detailed analysis of Shuttle Radar Topography Mission-digital elevation model and observations from aeromagnetic data to examine the influence of inherited lithospheric heterogeneity and kinematics in the segmentation of largely amagmatic continental rifts. We focused on the Cenozoic Malawi Rift, which represents the southern extension of the Western Branch of the East African Rift System. This north trending rift traverses Precambrian and Paleozoic-Mesozoic structures of different orientations. We found that the rift can be hierarchically divided into first-order and second-order segments. In the first-order segmentation, we divided the rift into Northern, Central, and Southern sections. In its Northern Section, the rift follows Paleoproterozoic and Neoproterozoic terrains with structural grain that favored the localization of extension within well-developed border faults. The Central Section occurs within Mesoproterozoic-Neoproterozoic terrain with regional structures oblique to the rift extent. We propose that the lack of inherited lithospheric heterogeneity favoring extension localization resulted in the development of the rift in this section as a shallow graben with undeveloped border faults. In the Southern Section, Mesoproterozoic-Neoproterozoic rocks were reactivated and developed the border faults. In the second-order segmentation, only observed in the Northern Section, we divided the section into five segments that approximate four half-grabens/asymmetrical grabens with alternating polarities. The change of polarity coincides with flip-over full-grabens occurring within overlap zones associated with similar to 150 km long alternating border faults segments. The inherited lithospheric heterogeneity played the major role in facilitating the segmentation of the Malawi Rift during its opening resulting from extension.
机译:我们使用了航天飞机雷达地形任务数字高程模型的详细分析和来自航空磁性数据的观测结果,以检验继承的岩石圈非均质性和运动学特征对大部分岩浆大陆裂谷的分割。我们关注的是新生代的马拉维裂谷,它代表了东非裂谷系统西部分支的南部延伸。这个北向的裂谷横越不同方位的前寒武纪和古生代-中生代构造。我们发现裂谷可以按层次划分为一阶和二阶段。在一阶分割中,我们将裂谷分为北部,中部和南部部分。在其北段,裂谷沿古元古代和新元古代的地形分布,具有结构性的颗粒,有利于在发达的边界断层中进行扩展的局部化。中央部分出现在中元古代—新元古代的地形内,区域结构倾斜到裂谷程度。我们认为,缺乏有利于扩展局部化的继承岩石圈非均质性导致了本节中裂谷的发展,因为它是边界发育不完善的浅裂地带。在南部地区,中元古代—新元古代岩石被重新活化并发育了边界断层。在二阶分割中,仅在北部区域中观察到,我们将区域划分为五个区域,这些区域近似四个具有交替极性的半grabens /不对称抓爪。极性的变化与与约150 km长的交替边界断层段相关的重叠区内发生的翻转全粒相吻合。继承的岩石圈非均质性在促进马拉维裂谷因扩展而开放期间的分段过程中起了主要作用。

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  • 来源
    《Tectonics 》 |2015年第12期| 2399-2417| 共19页
  • 作者单位

    Oklahoma State Univ, Boone Pickens Sch Geol, Stillwater, OK 74078 USA;

    Oklahoma State Univ, Boone Pickens Sch Geol, Stillwater, OK 74078 USA;

    Oklahoma State Univ, Boone Pickens Sch Geol, Stillwater, OK 74078 USA;

    Oklahoma State Univ, Boone Pickens Sch Geol, Stillwater, OK 74078 USA;

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