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From decades to epochs: Spanning the gap between geodesy and structural geology of active mountain belts

机译:从几十年到新纪元:跨越大地测量学与活动山带结构地质之间的差距

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摘要

Geodetic data from the Global Navigation Satellite System (GNSS), and from satellite interferometric radar (InSAR) are revolutionizing how we look at instantaneous tectonic deformation, but the significance for long-term finite strain in orogenic belts is less clear. We review two different ways of analyzing geodetic data: velocity gradient fields from which one can extract strain, dilatation, and rotation rate, and elastic block modeling, which assumes that deformation is not continuous but occurs primarily on networks of interconnected faults separating quasi-rigid blocks. These methods are complementary: velocity gradients are purely kinematic and yield information about regional deformation; the calculation does not take into account either faults or rigid blocks but, where GNSS data are dense enough, active fault zones and stable blocks emerge naturally in the solution. Block modeling integrates known structural geometry with idealized earthquake cycle models to predict slip rates on active faults. Future technological advances should overcome many of today's uncertainties and provide rich new data to mine by providing denser, more uniform, and temporally continuous observations.
机译:来自全球导航卫星系统(GNSS)和卫星干涉雷达(InSAR)的大地测量数据正在改变我们看待瞬时构造变形的方式,但是对于造山带中的长期有限应变的意义尚不清楚。我们回顾了两种不同的分析大地测量数据的方法:可以从中提取应变,膨胀和旋转速率的速度梯度场,以及弹性块模型,该模型假定变形不是连续的,而是主要发生在将准刚性分离的互连断层网络上块。这些方法是互补的:速度梯度纯粹是运动学上的,并且可以提供有关区域变形的信息;该计算未考虑故障或刚性块,但在GNSS数据足够密集的情况下,解决方案中自然会出现活跃的断层带和稳定块。块建模将已知的结构几何形状与理想化的地震周期模型集成在一起,以预测活动断层上的滑动率。未来的技术进步将克服当今许多不确定性,并通过提供更密集,更统一和时间上连续的观测结果来提供丰富的新数据。

著录项

  • 来源
    《Journal of structural geology》 |2009年第11期|1409-1422|共14页
  • 作者单位

    Department of Earth & Atmospheric Sciences Cornell University, Ithaca, NY 14853-1504, United States;

    Department of Earth & Planetary Sciences, Harvard University, Cambridge, MA, United States;

    Department of Earth & Atmospheric Sciences Cornell University, Ithaca, NY 14853-1504, United States;

    Department of Earth & Planetary Sciences, Harvard University, Cambridge, MA, United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    geodesy; GPS; active tectonics;

    机译:大地测量学全球定位系统;主动构造;

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