Data underlaying the research on a conjugated structure in eastern Taiwan during 2022 GuangFu earthquake
doi:10.4121/0e97ae10-87df-4300-a937-f03e10a47353.v1
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doi: 10.4121/0e97ae10-87df-4300-a937-f03e10a47353
doi: 10.4121/0e97ae10-87df-4300-a937-f03e10a47353
Datacite citation style:
Chih-Heng Lu (2024): Data underlaying the research on a conjugated structure in eastern Taiwan during 2022 GuangFu earthquake. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/0e97ae10-87df-4300-a937-f03e10a47353.v1
Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite
Dataset
We processed the coseismic LOS results from Sentinel-1 and ALOS-2 satellites via using DInSAR technique during 2022 Guangfu earthquake event. Based on the geological setting and DInSAR constraining, we provided a 3D simulation of coseismic surface deformation from dislocation model in this earthquake event to explain the interaction between two fault systems in eastern Taiwan via a conjugated structure.
history
- 2024-04-29 first online, published, posted
publisher
4TU.ResearchData
format
QGIS/NetCDF/.grd; QGIS/ASCII/.txt
associated peer-reviewed publication
A conjugated structure discloses interaction between two fault systems in eastern Taiwan during 2022 Guangfu earthquake
funding
- Improved the temporospatial accuracy of geodetic measurements for detecting the relationship between the time-series variation of groundwater volumes and environmental changes (grant code MOST 112-2116-M-001-009-MY2) National Science and Technology Council (NSTC),Taiwan.
organizations
Research Center for Environmental Changes, Academia Sinica, Taiwan
DATA
files (4)
- 1,808 bytesMD5:
7d22ff88c62915c8a649b4070072c2c7
README.txt - 106,252 bytesMD5:
fb4e2df0f4209f070237a332b472471e
3D_Model.txt - 1,815,520 bytesMD5:
3d56173092c0cc28bbbdf3b473e6669e
ALOS2_20220403_20220918_LOS.grd - 1,748,087 bytesMD5:
b99edc081c9ff430d56dc668075e6345
S1_20220618_20220630_LOS.grd -
download all files (zip)
3,671,667 bytes unzipped