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Active Deformation of Malawi Rift's North Basin Hinge Zone Modulated by Reactivation of Preexisting Precambrian Shear Zone Fabric

机译:马拉维裂谷北盆地铰链区的主动变形,由先前存在的前寒武纪剪切带构造的重新激活来调节

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We integrated temporal aeromagnetic data and recent earthquake data to address the long-standing question on the role of preexisting Precambrian structures in modulating strain accommodation and subsequent ruptures leading to seismic events within the East African Rift System. We used aeromagnetic data to elucidate the relationship between the locations of the 2009 M-w 6.0 Karonga, Malawi, earthquake surface ruptures and buried basement faults along the hinge zone of the half-graben comprising the North Basin of the Malawi Rift. Through the application of derivative filters and depth-to-magnetic-source modeling, we identified and constrained the trend of the Precambrian metamorphic fabrics and correlated them to the three-dimensional structure of buried basement faults. Our results reveal an unprecedented detail of the basement fabric dominated by high-frequency WNW to NW trending magnetic lineaments associated with the Precambrian Mughese Shear Zone fabric. The high-frequency magnetic lineaments are superimposed by lower frequency NNW trending magnetic lineaments associated with possible Cenozoic faults. Surface ruptures associated with the 2009 M-w 6.0 Karonga earthquake swarm aligned with one of the NNW-trending magnetic lineaments defining a normal fault that is characterized by right-stepping segments along its northern half and coalesced segments on its southern half. Fault geometries, regional kinematics, and spatial distribution of seismicity suggest that seismogenic faults reactivated the basement fabric found along the half-graben hinge zone. We suggest that focusing of strain accommodation and seismicity along the half-graben hinge zone is facilitated and modulated by the presence of the basement fabric.
机译:我们整合了时空航空磁数据和最近的地震数据,以解决关于长期存在的前寒武纪结构在调节应变适应和随后破裂导致东非大裂谷系统内地震事件中的作用的长期问题。我们使用航空磁学数据阐明了2009 M-w 6.0 Karonga,马拉维,地震表面破裂的位置与沿构成马拉维裂谷北盆地的半干部铰链区地下埋藏的地下断层之间的关系。通过应用导数滤波器和深度磁源建模,我们识别并约束了前寒武纪变质构造的趋势,并将其与地下基底断层的三维结构联系起来。我们的结果揭示了与前寒武纪Mughese剪切带织物相关的高频WNW到NW趋势磁性线所主导的基底织物的空前细节。高频磁衬被与可能的新生代断层相关的低频NNW趋势磁衬叠加。与2009 M-w 6.0卡隆加地震群相关的地表破裂与NNW趋势磁线之一对齐,该磁线定义了正常断层,其特征是沿其北半部呈右旋段,其南半部呈聚结段。断层的几何形状,区域运动学和地震活动的空间分布表明,地震成因的断层重新激活了沿半构造铰链带发现的基底构造。我们建议通过基底织物的存在来促进和调节沿半钢绞链区的应变适应和地震活动的聚焦。

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