马升龙, 周宇, 沈旭章. 利用Sentinel-1卫星数据和地形数据分析法国东南部Mw4.9 Le Teil地震与采石活动关系[J]. 武汉大学学报 ( 信息科学版). DOI: 10.13203/j.whugis20210248
引用本文: 马升龙, 周宇, 沈旭章. 利用Sentinel-1卫星数据和地形数据分析法国东南部Mw4.9 Le Teil地震与采石活动关系[J]. 武汉大学学报 ( 信息科学版). DOI: 10.13203/j.whugis20210248
MA Shenglong, ZHOU Yu, SHEN Xuzhang. Analysis of the Mw4.9 Le Teil Earthquake in Southeastern France and Its Correlation with Le Teil Quarry Extraction Using Sentinel-1 and Topographic Data[J]. Geomatics and Information Science of Wuhan University. DOI: 10.13203/j.whugis20210248
Citation: MA Shenglong, ZHOU Yu, SHEN Xuzhang. Analysis of the Mw4.9 Le Teil Earthquake in Southeastern France and Its Correlation with Le Teil Quarry Extraction Using Sentinel-1 and Topographic Data[J]. Geomatics and Information Science of Wuhan University. DOI: 10.13203/j.whugis20210248

利用Sentinel-1卫星数据和地形数据分析法国东南部Mw4.9 Le Teil地震与采石活动关系

Analysis of the Mw4.9 Le Teil Earthquake in Southeastern France and Its Correlation with Le Teil Quarry Extraction Using Sentinel-1 and Topographic Data

  • 摘要: 2019年11月11日的Mw4.9 Le Teil地震是法国东南部罗纳河谷地区历史上破坏性最大的地震。本文基于Sentinel-1卫星数据,利用GAMMA软件提取了该地震同震形变场。基于同震形变场,本文采用贝叶斯算法和最速下降法分别反演了断层几何参数和断层滑动分布。最后基于2000年和2006-2011年的两期数字高程模型数据,估算了断层附近采石场开采量,并基于三维均匀弹性半空间的Boussinesq解求得由采石活动所造成的断层面上的库伦应力变化。结果表明:升降轨卫星视线(Line of Sight,LOS)向最大垂直位移分别为14.9 cm和8.6 cm。Le Teil地震是倾角72°、走向54°、平均滑动角约108°的高角度逆冲型地震;地震破裂到地表,破裂面积约3413 m×1358 m,最大破裂深度约1.472 km;断层最大滑动量0.2 m,主滑动量(> 0.15 m)集中于0-0.75 km深度范围内;反演得到的矩震级为Mw4.79。断层面上的库伦应力变化显示库伦应力在2000年以后的6-11年内增加了0.024 MPa。Le Teil采石场在1833-2019年被持续开采,且2007年以来,采石速率迅速增大。若考虑整个采石周期,则库伦应力变化可达0.1 MPa,远大于该地区的构造加载速率,表明2019年Le Teil地震与采石活动密切相关。

     

    Abstract:   Objectives:   The Mw4.9 Le Teil earthquake that occurred on November 11, 2019 is the most destructive earthquake recorded in the Rhône River Valley of France.   Methods:   In this study, we first used Sentinel-1 InSAR data to calculate the coseismic displacement field of the Le Teil earthquake with the GAMMA software package. We then obtained fault geometric parameters and coseismic displacement fields based on Bayesian inversion and the Steepest Descent Method (SDM). We last quantified the effects of quarry extraction activity on fault by using the Digital Elevation Model (DEM) data acquired in 2000 and 2006-2011. We calculated the extraction volume and the Coulomb stress change on the fault plane based on the Boussinesq solution of three dimension homogeneous and elastic half-space.   Results:   The coseismic displacement field show that the largest displacement in the line of sight of the ascending and descending orbits is 14.9 cm and 8.6 cm, respectively. We find that the seismogenic fault has a southeast dip angle of 72, a strike of 54 and an average rake of 108; the earthquake rupture reached the surface, with a rupture area of about 3413 m×1358 m, and a depth of about 1.472 km. The slip is over 0.15 m and is concentrated at a depth of 0-0.75 km with a peak slip of 0.2 m. We calculated the geodetic magnitude to be Mw4.79. The Coulomb stress change on the fault plane is 0.024 MPa in 6-11 years after 2000.   Conclusions:   The rock extraction of the Le Teil quarry had been active during 1833-2019, and the extraction is even more intense after 2007. The Coulomb stress change on the fault plane could reach up to 0.1 MPa, which is much larger than the local tectonic loading rate, suggesting that the Le Teil earthquake is strongly related to rock extraction activities.

     

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