首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Tectonic Deformation of the Northeastern Tibetan Plateau and Its Surroundings Revealed With GPS Block Modeling
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Tectonic Deformation of the Northeastern Tibetan Plateau and Its Surroundings Revealed With GPS Block Modeling

机译:东北藏高原的构造变形及其周围环境揭示了GPS块建模

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摘要

The northeastern Tibetan Plateau and its surroundings are a tectonically complex region resulting from the continuing collision of India with Eurasia. We studied the tectonic deformation of this region using a GPS block model, which was produced using the most recently published, dense, precise, and complete GPS velocities available combined with a detailed fault geometry. The comparison between our preferred model with numerous faults and a model with fewer faults demonstrates the need for inclusion of lesser active faults affords a closer examination of strain partitioning. The predicted senses of motion and slip rates of active faults in our preferred model are consistent with the geological estimates, supporting the assumption that the decadal GPS slip rates are representative of millennial-scale geologic slip rates. The observed fault kinematics in the northeastern Tibetan Plateau and its surroundings can be interpreted as the consequence of relative motions between different blocks and block rotations.
机译:青藏高原东北部及其周边地区是印度与欧亚大陆持续碰撞形成的构造复杂地区。我们使用GPS块体模型研究了该地区的构造变形,该模型是使用最新发布的、密集、精确且完整的GPS速度,结合详细的断层几何图形生成的。我们的首选断层模型与断层较少的模型之间的比较表明,需要包含活动性较小的断层,以便更仔细地检查应变分配。在我们的首选模型中,活动断层的运动和滑动速率的预测意义与地质估计一致,支持十年GPS滑动速率代表千年尺度地质滑动速率的假设。青藏高原东北部及其周边地区观测到的断层运动学可以解释为不同地块之间的相对运动和地块旋转的结果。

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