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Summary of examples of correlation between lithology and seimicity Jessica Hawthorne Ge277 February 26, 2014
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Outline Mostly aseismic with small earthquakes – Costa Rica – Nankai – SAF – Zuccale
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More clay: – More velocity-strengthening at low slip speeds – Lower absolute strength Ikari et. al., 2011
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Ikari et. al., 2013 Northwest: – Cold – Few seamounts – Larger earthquakes Southeast: – Hot – Seamounts – More small earthquakes Wang and Bilek, 2011
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Hemipelagic ooze: Weak, mostly velocity-strengthening Nanofossil chalk on seamounts: Strong, velocity-weakening A recipe for small earthquakes?
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Zuccale Fault Niemeijer and Collettini, 2013 Low-angle normal fault in northen Appenines Nearby faults have shallow microseismicity Misorientation suggests low effective friction
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Pink and orange: -Less talc, more quartz -More unstable
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-Less stable deeper -Small earthquakes on velocity-weakening patches
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Nankai accretionary prism Ikari and Saffer, 2011 -Evidence that splay fault ruptured to the trench -Low frequency earthquakes along splay faults
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Ikari and Saffer, 2011 Mostly velocity-strengthening Increase in a-b with slip rate mostly results from decrease in b Suggests it’s hard to rupture seismically
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Ujiie and Tsutsumi, 2010 Strong velocity weakening at higher slip rates From thermal pressurization
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Tsutsumi et. al., 2011 Some samples are v-w even at low slip rates Would allow for small earthquakes
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San Andreas Fault Irwin and Barnes, 1975 Creep and microseismicity coincident with serpentinite at the base of the Great Valley sequence? Locations from Waldhauser and Schaff, 2008
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Reinen et. al., 1994
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So can lithology explain the observed distribution of earthquakes? Maybe 4 locations that are consistent, but not compelling Clays generally stable at low slip speeds Can be unstable at high slip speeds Most instability added with more quartz or calcite
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