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Global coseismic deformations, GNSS time series analysis, and earthquake scaling laws

机译:全球同震变形,GNSS时间序列分析和地震尺度定律

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We investigate how two decades of coseismic deformations affect time series of GPS station coordinates (Global Navigation Satellite System) and what constraints geodetic observations give on earthquake scaling laws. We developed a simple but rapid model for coseismic deformations, assuming different earthquake scaling relations, that we systematically applied on earthquakes with magnitude larger than 4. We found that coseismic displacements accumulated during the last two decades can be larger than 10m locally and that the cumulative displacement is not only due to large earthquakes but also to the accumulation of many small motions induced by smaller earthquakes. Then, investigating a global network of GPS stations, we demonstrate that a systematic global modeling of coseismic deformations helps greatly to detect discontinuities in GPS coordinate time series, which are still today one of the major sources of error in terrestrial reference frame construction (e.g., the International Terrestrial Reference Frame). We show that numerous discontinuities induced by earthquakes are too small to be visually detected because of seasonal variations and GPS noise that disturb their identification. However, not taking these discontinuities into account has a large impact on the station velocity estimation, considering today's precision requirements. Finally, six groups of earthquake scaling laws were tested. Comparisons with our GPS time series analysis on dedicated earthquakes give insights on the consistency of these scaling laws with geodetic observations and Okada coseismic approach.
机译:我们调查了二十年的同震形变如何影响GPS站坐标的时间序列(全球导航卫星系统),以及大地观测对地震定标规律的约束。我们建立了一个简单但快速的同震变形模型,并假设了不同的地震比例关系,我们系统地将其应用于4级以上的地震。我们发现,在过去的20年中,同震位移在局部的累积量可能大于10m,并且位移不仅是由于大地震,而且还由于小地震引起的许多小运动的积累。然后,通过调查GPS站的全球网络,我们证明了同震形变的系统全局建模可以极大地帮助检测GPS坐标时间序列中的不连续性,而这些不连续性目前仍是地面参考框架构建中的主要误差来源之一(例如,国际地面参考框架)。我们显示,由于季节变化和GPS噪声干扰了它们的识别,地震引起的许多不连续性都太小而无法通过肉眼检测到。但是,考虑到当今的精度要求,不考虑这些不连续性会对测站速度估算产生很大影响。最后,测试了六组地震扩展定律。通过与我们对专用地震的GPS时间序列分析的比较,可以得出这些标度定律与大地观测和Okada同震方法的一致性的见解。

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