Pre-seismic strain anomalies and coseismic deformation of Meinong earthquake from continuous GPS

被引:7
|
作者
Tsai, Min-Chien [1 ]
Shin, Tzay-Chyn [2 ]
Kuo, Kai-Wen [1 ]
机构
[1] Cent Weather Bur, Seismol Ctr, Taipei, Taiwan
[2] Cent Weather Bur, Taipei, Taiwan
来源
关键词
GPS; Strain; Baseline; Meinong Earthquake; GLOBAL POSITIONING SYSTEM; ARC-CONTINENT COLLISION; CRUSTAL DEFORMATION; ACTIVE DEFORMATION; TAINAN TABLELAND; SW TAIWAN; SOUTHWESTERN TAIWAN; TECTONIC ESCAPE; VELOCITY-FIELD; 1992; LANDERS;
D O I
10.3319/TAO.2017.04.19.01
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
High strain accumulation across the fold-and-thrust belt in SW Taiwan are revealed by the Continuous GPS (cGPS) from 2007 -2015. This high strain is generally accommodated by the major active structures in fold-and-thrust belt of western Foothills. In addition, the plastic deformation of mudstone in the Gutingkeng formation might play a crucial role for aseismic creeping. Furthermore, the distributed rightlateral shear zone, fault-related folding and aseismic creeping are also dominated from Lungchuan fault and Chishan fault to the north of Kaohsiung area. Based on distribution of coseismic uplift across the Lungchuan fault to the Tainan tableland, a clear evidence of multiple fault slips was triggered by the 2016 M-w 6.4 Meinong earthquake at similar to 15 km. The surface coseismic deformation is mainly controlled by a fault-related folding structures connected to the shallow decollement around 5 - 10 km depth, in which the moderate earthquakes locate in mid-crust could trigger slip along the weak decollement. The pre-seismic baseline variation of cGPS is observed in 8 baselines near the epicenter of the Meinong earthquake. The rate-slow-down anomalies of these baseline variation could be considered as a possible precursor of the Meinong earthquake.
引用
收藏
页码:763 / 785
页数:23
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