HR: 15:10h
AN: T33E-07 [Abstracts]
TI: A Slow Slide in central Taiwan Induced by Chi-Chi Earthquake revealed by PIV Analysis
AU: Tseng, C
EM: b8920407@ntu.edu.tw
AF: Chia-han Tseng, No.1, Roosevolt road Sec. 4, Taepei, TWN 106
Taiwan
AB:
The Chi-Chi Earthquake occurred in the western foothills of Central Taiwan, which triggered two fast and catastrophic
Chiufengershan landslide and Tsaoling rockslides. After two days of Chi-Chi event, the slow Hongtsaiping slide (Central
Taiwan) is reported with several meters of slide in an area of about 1.2 km2 (800 m x 1500 m). Therefore, we want to
know if non-failure or unobvious slides are the omens of landslides or rockslides in this area. We also try to characterize
in detail the slide directions, their magnitudes and region of slides. We use two gray aerial photos of the same selected
area (Taiwan Grid 67, 1:5000, pixel size of 0.62 m) acquired from Central Geological Survey (CGS) and Chinese Society of
Photogrammetry & Remote Sensing (CSPRS) which are taken in 1998 and 2002 through a software Particle Image Velocimetry (PIV)
analysis. Trough PIV we can set reference points at will in order to let PIV correlate the pixels of two aerial photos so
that it can tell us the displacement vector field due to the topographic change. Of course, PIV can only show displacement
field instead of vectors, so we will differentiate regions of different amount of displacement. The results will be precise
if we can remove the offsets between the two gray aerial photos and the amount of displacement is obviously large enough.
Therefore, the results of PIV analysis will help us not only find the areas in which sliding has happened, but also evaluate
the azimuth and magnitudes of sliding. We use PIV analysis in the Hongtsaiping area which covers a dimension of 3228 x 2448
pixels. Our results show that the maximum horizontal displacement is about 22 m towards NW in the slide area of about 1.2
km2. This tremendous slow slide need to further investigation in combining with the geological data.
DE: 1810 Debris flow and landslides
DE: 7212 Earthquake ground motions and engineering seismology
SC: Tectonophysics [T]
MN: Fall Meeting 2005