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Satellite detection of IR precursors using bi-angular advanced along-track scanning radiometer data:a case study of Yushu earthquake
Authors:Pan Xiong  Xuhui Shen  Xingfa Gu  Qingyan Meng  Yaxin Bi  Liming Zhao  Yanhua Zhao  Yan Li  Jianting Dong
Affiliation:1.Institute of Earthquake Science, China Earthquake Administration, Beijing 100036, China2.Intitute of Remote Sensing Applications and Digital Earth, Chinese Academy of Sciences, Beijing 100101, China3.School of Computing and Mathematics, University of Ulster, Newtownabbey Co., Antrim BT37 0QB, UK4.Beijing Institute of Space Mechanics and Electricity, Beijing 100076, China
Abstract:The paper has developed and proposed a synthesis analysis method based on the robust satellite data analysis technique (RST) to detect seismic anomalies within the bi-angular advanced along-track scanning radiometer (AATSR) gridded brightness temperature (BT) data based on spatial/temporal continuity analysis. The proposed methods have been applied to analyze the Yushu (Qinghai, China) earthquake occurred on 14th April 2010, and a full AATSR data-set of 8 years data from March 2003 to May 2010 with longitude from 91°E to 101°E and latitude from 28°N to 38°N has been analyzed. Combining with the tectonic explanation of spatial and temporal continuity of the abnormal phenomena, the analyzed results indicate that the infrared radiation anomalies detected by the AATSR BT data with nadir view appear and enhance gradually along with the development and occurring of the earthquake, especially along the Ganzi-Yushu fault, Nu River fault and Jiali-Chayu fault; more infrared anomalies along the earthquake fault zone (Lancangjiang fault and Ning Karma Monastery-Deqin fault) are detected using the proposed synthesis analysis method, which can also characterize the activity of seismic faults more precisely.
Keywords:Seismic monitoring   Infrared multi-angle   Earthquake infrared radiation anomalies
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