Ionospheric earthquake effects detection based on Total Electron Content (TEC) GPS Correlation

被引:13
|
作者
Sunardi, Bambang [1 ]
Muslim, Buldan [2 ]
Sakya, Andi Eka [1 ]
Rohadi, Supriyanto [1 ]
Sulastri [1 ]
Murjaya, Jaya [1 ]
机构
[1] Indonesian Meteorol Climatol & Geophys Agcy, Jakarta, Indonesia
[2] Indonesian Natl Inst Aeronaut & Space, Ctr Space Sci, Bandung 40173, Indonesia
关键词
D O I
10.1088/1755-1315/132/1/012014
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Advances in science and technology showed that ground-based GPS receiver was able to detect ionospheric Total Electron Content (TEC) disturbances caused by various natural phenomena such as earthquakes. One study of Tohoku (Japan) earthquake, March 11, 2011, magnitude M 9.0 showed TEC fluctuations observed from GPS observation network spread around the disaster area. This paper discussed the ionospheric earthquake effects detection using TEC GPS data. The case studies taken were Kebumen earthquake, January 25, 2014, magnitude M 6.2, Sumba earthquake, February 12, 2016, M 6.2 and Halmahera earthquake, February 17, 2016, M 6.1. TEC-GIM (Global Ionosphere Map) correlation methods for 31 days were used to monitor TEC anomaly in ionosphere. To ensure the geomagnetic disturbances due to solar activity, we also compare with Dst index in the same time window. The results showed anomalous ratio of correlation coefficient deviation to its standard deviation upon occurrences of Kebumen and Sumba earthquake, but not detected a similar anomaly for the Halmahera earthquake. It was needed a continous monitoring of TEC GPS data to detect the earthquake effects in ionosphere. This study giving hope in strengthening the earthquake effect early warning system using TEC GPS data. The method development of continuous TEC GPS observation derived from GPS observation network that already exists in Indonesia is needed to support earthquake effects early warning systems.
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页数:8
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