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Vertical deformation through a complete seismic cycle at Isla Santa Maria, Chile

机译:智利圣玛丽亚岛整个地震周期的垂直变形

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Individual great earthquakes are posited to release the elastic strain energy that has accumulated over centuries by the gradual movement of tectonic plates(1,2). However, knowledge of plate deformation during a complete seismic cycle-two successive great earthquakes and the intervening interseismic period-remains incomplete(3). A complete seismic cycle began in south-central Chile in 1835 with an earthquake of about magnitude 8.5 (refs 4,5) and ended in 2010 with a magnitude 8.8 earthquake(6). During the first earthquake, an uplift of Isla Santa Maria by 2.4 to 3m was documented(4,5). In the second earthquake, the island was uplifted(7) by 1.8 m. Here we use nautical surveys made in 1804, after the earthquake in 1835 and in 1886, together with modern echo sounder surveys and GPS measurements made immediately before and after the 2010 earthquake, to quantify vertical deformation through the complete seismic cycle. We find that in the period between the two earthquakes, Isla Santa Maria subsided by about 1.4 m. We simulate the patterns of vertical deformation with a finite-element model and find that they agree broadly with predictions from elastic rebound theory(2). However, comparison with geomorphic and geologic records of millennial coastline emergence(8,9) reveal that 10-20% of the vertical uplift could be permanent.
机译:通过构造板块的逐渐运动,单个大地震被释放出几个世纪以来积累的弹性应变能(1,2)。但是,对于完整的地震周期-两次连续的大地震以及中间的地震间隔期-的板块变形的知识仍然不完整(3)。一个完整的地震周期始于1835年的智利中南部,地震级别约为8.5级(参考文献4,5),到2010年结束时级别为8.8级地震(6)。在第一次地震中,圣玛丽亚岛被抬升2.4至3m(4,5)。在第二次地震中,该岛被提升(7)1.8 m。在这里,我们使用1804年(在1835年和1886年地震后)进行的航海测量,以及在2010年地震前后立即进行的现代回声测深仪测量和GPS测量,来量化整个地震周期的垂直变形。我们发现,在两次地震之间,圣玛丽亚岛沉降约1.4 m。我们使用有限元模型模拟了垂直变形的模式,发现它们与弹性回弹理论的预测大致一致(2)。然而,与千年海岸线出现的地貌和地质记录比较(8,9)表明,垂直隆升的10-20%可能是永久性的。

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