Deformation of West Sumatra Due to the 2016 Earthquake (M7.8) Based on Continuous GPS Data

Dzakiyyah Khaerani, D. Sarsito, I. Meilano, Susilo
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引用次数: 3

Abstract

Sumatra Island, one of the areas in Indonesia, has a very active tectonics in the world. It causes Sumatra to be prone to tectonic earthquake disaster due to the movement of the plates around it. On March 2nd, 2016, a Mw7.8 earthquake centered in the Wharton Indian Ocean Basin Zone, West of Sumatra island happened at a depth of 24 km. This earthquake was an intraplate earthquake that occurred due to the movement in the ocean plate as a type of left lateral strike-slip fault. The calculation of deformation in West Sumatra due to the earthquake was conducted through continuous GPS observation of SuGAr (Sumatran GPS Array) from January 1, 2015 until March 30, 2017 around west part of Sumatra areas. Data processing is done by using GAMIT/GLOBK 10.6 software and the results in daily solution shows that the horizontal component of co-seismic deformation of West Sumatra earthquake in 2016 ranged from 3,6 mm – 5,5 mm which moves toward to northwest. The difference in velocity movement of GPS observation before and after earthquake is used to calculate the strain of plate tectonic around West Sumatra region, where there is a compression pattern before earthquake equal to 2.72×10-8 strain and after earthquake equal to 5.98×10-8 strain. This indicates that there is an increase in compression value in the observation after the earthquake, and the observation area again show the interseismic deformation which means that there is still a considerable accumulation of energy and sometimes can cause the other earthquake.
基于连续GPS数据的2016年西苏门答腊7.8级地震形变
苏门答腊岛是印度尼西亚的一个地区,是世界上构造非常活跃的地区。由于它周围的板块运动,使得苏门答腊岛容易发生构造地震灾害。2016年3月2日,苏门答腊岛以西沃顿印度洋海盆带发生震源深度24 km的里氏7.8级地震。这次地震是由于海洋板块作为一种左旋走滑断层的运动而发生的板内地震。通过SuGAr (Sumatran GPS Array)在2015年1月1日至2017年3月30日对苏门答腊岛西部地区进行连续GPS观测,计算了西苏门答腊岛地震造成的形变。利用GAMIT/GLOBK 10.6软件对数据进行处理,日解结果显示,2016年西苏门答腊地震同震形变水平分量在3.6 ~ 5.5 mm之间,向西北方向移动。利用GPS观测的地震前后速度运动差值计算西苏门答腊地区板块构造应变,该地区地震前为2.72×10-8应变,地震后为5.98×10-8应变。这说明地震发生后观测压缩值有所增加,观测区域再次出现震间变形,说明仍有相当大的能量积累,有时会引起另一次地震。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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