Fulton, Patrick M. and Harris, Robert N. (2012): Thermal considerations in inferring frictional heating from vitrinite reflectance and implications for shallow coseismic slip within the Nankai subduction zone
Leg/Site/Hole:
Related Expeditions:
Identifier:
ID:
2012-083891
Type:
georefid
ID:
10.1016/j.epsl.2012.04.012
Type:
doi
Creator:
Name:
Fulton, Patrick M.
Affiliation:
University of Texas at Austin, University of Texas Institute for Geophysics, Austin, TX, United States
Role:
author
Name:
Harris, Robert N.
Affiliation:
Oregon State University, United States
Role:
author
Identification:
Title:
Thermal considerations in inferring frictional heating from vitrinite reflectance and implications for shallow coseismic slip within the Nankai subduction zone
Year:
2012
Source:
Earth and Planetary Science Letters
Publisher:
Elsevier, Amsterdam, Netherlands
Volume:
335-336
Issue:
Pages:
206-215
Abstract:
Frictional properties within the upper few kilometers of subduction zones are generally thought to inhibit rupture propagation. Understanding whether large rapid slip propagates to the surface during megathrust earthquakes is important for characterizing tsunami hazard. Recent vitrinite reflectance analysis by Sakaguchi et al. (2011) on cores from the NanTroSEIZE drilling transect at the Nankai Trough, Japan, has been interpreted to suggest that these faults reached temperatures approximately 380 degrees C, considerably larger than background temperature values, implying they hosted coseismic slip at shallow depths. Analysis of other temperature proxies on the megasplay by Hirono et al. (2009), however, suggests temperatures have not exceeded 300 degrees C and is inconclusive as to whether the fault slipped at high velocity. We evaluate the effects of frictional heat generation on the spatial distribution of vitrinite reflectance, its sensitivity to slip zone thickness and slip duration, and the cumulative effects of numerous events. We build on the analysis of Sakaguchi et al. (2011) by estimating frictional heating scenarios that are consistent with both the peak and spatial extent of anomalous vitrinite reflectance data. Our results imply coseismic slip magnitudes of several 10 s of meters. Peak temperature estimates from the vitrinite reflectance data can be reconciled with the other geochemical constraints only by assuming the vitrinite reflectance results from the cumulative effects of multiple earthquakes. However, this results in unrealistically large estimates of total displacement. Our results imply that current understanding of how vitrinite reflectance is affected by fault slip is incomplete. Abstract Copyright (2012) Elsevier, B.V.
Language:
English
Genre:
Serial
Rights:
URL:
Coverage: Geographic coordinates: North:36.0000 West:132.0000 East:
140.0000 South:30.0000
Keywords: Structural geology; cores; coseismic processes; displacements; drilling; faults; friction; geologic hazards; heating; Integrated Ocean Drilling Program; Nankai Trough; NanTroSEIZE; natural hazards; North Pacific; Northwest Pacific; Pacific Ocean; paleoseismicity; rupture; spatial distribution; subduction zones; temperature; thrust faults; tsunamis; vitrinite reflectance; West Pacific;
.