TY - JOUR
T1 - Probabilistic Fault Displacement Hazards along the Milun Fault
AU - Gao, Jia Cian
AU - Chan, Chung Han
AU - Ma, Kuo Fong
AU - Lee, Chyi Tyi
N1 - Publisher Copyright:
© Seismological Society of America.
PY - 2022/10
Y1 - 2022/10
N2 - Coseismic surface displacements can result in significant damage to structures located on or near a fault. To address this particular hazard, probabilistic fault displacement hazard analysis (PFDHA) has been proposed to estimate expected displacement on a fault and in its vicinity. To construct PFDHA, any new observed surface ruptures can be included. In 2018, an Mw 6.4 earthquake hit the city of Hualien, Taiwan, and caused surface ruptures along the Milun fault. Immediately after the earthquake, field investigations were car-ried out to investigate the surface ruptures, which provided crucial information for PFDHA. Based on our analysis of the surface displacement data in the Hualien event, we compared existing fault displacement prediction equations, and found that 86% and 65% of the observations from the free field and manmade structures, respectively, were within one standard deviation of the predictions. Based on our fault displacement model and its uncertainties, we analyze the fault displacement hazard in the Hualien region by incorporating epistemic uncertainties through a logic tree approach. Comparing with the occurrence probability of distributed surface faulting, most observations are within one standard deviation of the predictions, suggesting the applications of derived PFDHA.
AB - Coseismic surface displacements can result in significant damage to structures located on or near a fault. To address this particular hazard, probabilistic fault displacement hazard analysis (PFDHA) has been proposed to estimate expected displacement on a fault and in its vicinity. To construct PFDHA, any new observed surface ruptures can be included. In 2018, an Mw 6.4 earthquake hit the city of Hualien, Taiwan, and caused surface ruptures along the Milun fault. Immediately after the earthquake, field investigations were car-ried out to investigate the surface ruptures, which provided crucial information for PFDHA. Based on our analysis of the surface displacement data in the Hualien event, we compared existing fault displacement prediction equations, and found that 86% and 65% of the observations from the free field and manmade structures, respectively, were within one standard deviation of the predictions. Based on our fault displacement model and its uncertainties, we analyze the fault displacement hazard in the Hualien region by incorporating epistemic uncertainties through a logic tree approach. Comparing with the occurrence probability of distributed surface faulting, most observations are within one standard deviation of the predictions, suggesting the applications of derived PFDHA.
UR - http://www.scopus.com/inward/record.url?scp=85139159706&partnerID=8YFLogxK
U2 - 10.1785/0120210312
DO - 10.1785/0120210312
M3 - 期刊論文
AN - SCOPUS:85139159706
SN - 0037-1106
VL - 112
SP - 2745
EP - 2757
JO - Bulletin of the Seismological Society of America
JF - Bulletin of the Seismological Society of America
IS - 5
ER -