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  4. Coherence Difference Analysis of Sentinel-1 SAR Interferogram to Identify Earthquake-Induced Disasters in Urban Areas
 
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Coherence Difference Analysis of Sentinel-1 SAR Interferogram to Identify Earthquake-Induced Disasters in Urban Areas

Journal
Remote Sensing
Journal Volume
10
Journal Issue
8
Pages
1318
Date Issued
2018
Author(s)
Lu, Chih-Heng
Ni, Chuen-Fa
Chang, Chung-Pai
Yen, Jiun-Yee
RAY Y. CHUANG  
DOI
10.3390/rs10081318
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/510526
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85069826595&doi=10.3390%2fRS10081318&partnerID=40&md5=aefd5023bee6778348c5ffee2df06cf5
Abstract
This study proposes a workflow that enables the accurate identification of earthquake-induced damage zones by using coherence image pairs of the Sentinel-1 satellite before and after an earthquake event. The workflow uses interferometric synthetic aperture radar (InSAR) processing to account for coherence variations between coseismic and preseismic image pairs. The coherence difference between two image pairs is useful information to detect specific disasters in a regional-scale area after an earthquake event. To remove background effects such as the atmospheric effect and ordinal surface changes, this study employs the two-step threshold method to develop the coseismic coherence difference (CCD) map for our analyses. Thirty-four Sentinel-1 images between January 2015 and February 2016 were collected to process 30 preseismic image pairs and two coseismic image pairs for assessing multiple types of disasters in Tainan City of southwestern Taiwan, where severe damages were observed after the Meinong earthquake event. The coseismic unwrapping phases were further calculated to estimate the surface displacement in east-west and vertical directions. Results in the CCD map agree well with the observations from post-earthquake field surveys. The workflow can accurately identify earthquake-induced land subsidence and surface displacements, even for areas with insufficient geological data or for areas that had been excluded from the liquefaction potential map. In addition, the CCD details the distribution of building damages and structure failures, which might be useful information for emergency actions applied to regional-scale problems. The conversion of 2D surface displacement reveals the complex behavior of geological activities during the earthquake. In the foothill area of Tainan City, the opposite surface displacements in local areas might be influenced by the axis activities of the Kuanmiao syncline. © 2019 by the authors.
Subjects
Coseismic coherence difference; InSAR; Liquefaction; Meinong earthquake; Surface displacement
SDGs

[SDGs]SDG11

[SDGs]SDG13

Type
journal article

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