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Present-day kinematics of the East African Rift

机译:东非大裂谷的当今运动学

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The East African Rift (EAR) is a type locale for investigating the processes that drive continental rifting and breakup. The current kinematics of this ~5000 km long divergent plate boundary between the Nubia and Somalia plates is starting to be unraveled thanks to a recent augmentation of space geodetic data in Africa. Here we use a new data set combining episodic GPS measurements with continuous measurements on the Nubian, Somalian, and Antarctic plates, together with earthquake slip vector directions and geologic indicators along the Southwest Indian Ridge to update the present-day kinematics of the EAR. We use geological and seismological data to determine the main rift faults and solve for rigid block rotations while accounting for elastic strain accumulation on locked active faults.We find that the data are best fit with a model that includes three microplates embedded within the EAR, between Nubia and Somalia (Victoria, Rovuma, and Lwandle), consistent with previous findings but with slower extension rates. We find that earthquake slip vectors provide information that is consistent with the GPS velocities and helps to significantly reduce uncertainties of plate angular velocity estimates. We also find that 3.16 Myr MORVEL average spreading rates along the Southwest Indian Ridge are systematically faster than prediction from GPS data alone. This likely indicates that outward displacement along the SWIR is larger than the default value used in the MORVEL plate motion model.
机译:东非大裂谷(EAR)是调查造成大陆裂谷和分裂的过程的典型场所。努比亚和索马里板块之间约5000公里长的发散板块边界的当前运动学,由于最近非洲空间大地测量数据的增加而开始得到阐明。在这里,我们使用了一个新的数据集,结合了偶发的GPS测量值,在努比亚,索马里和南极板块上的连续测量值,以及西南印度洋脊的地震滑动矢量方向和地质指示符,以更新EAR的当今运动学。我们使用地质和地震数据确定主要裂谷断层并解决刚性块旋转问题,同时考虑锁定活动断层上的弹性应变累积,我们发现该数据最适合包含EAR中嵌入三个微板的模型努比亚和索马里(维多利亚,罗武玛和卢旺德),与以前的发现一致,但延伸速度较慢。我们发现地震滑动矢量提供的信息与GPS速度一致,并有助于显着减少板角速度估计的不确定性。我们还发现,西南印度洋西南部的3.16 Myr MORVEL平均扩展速度比单独根据GPS数据预测的速度快。这可能表明沿SWIR的向外位移大于MORVEL板运动模型中使用的默认值。

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