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Paleoseismology of the Mejillones Fault, northern Chile: Insights from cosmogenic ~(10)Be and optically stimulated luminescence determinations

机译:智利北部Mejillones断层的古地震学:宇宙成因〜(10)Be和光激发发光测定的见解

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摘要

We have undertaken the first paleoseismological study on an upper plate fault in Chile. The selected structure was the Mejillones Fault, which is marked by a conspicuous fault-scarp. Using cosmogenic ~(10)Be and OSL dating and detailed sedimentary logging of trenches, we have constrained the abandonment of two alluvial surfaces by fault activity at ca. 35 ka and ca.14 ka. Based on stratigraphic observation we characterized the fault evolution in four intervals over the last ca. 35 ka. During the first three intervals the fault had a steady slip rate of 0.61 ± 0.26 m/ka. The fourth interval is delineated by the last vertical fault slip and the accumulation of un-deformed hillslope deposits after ca. 3.3 ka and has a slip rate of 0.22 ± 0.06 m/ka. The younger surface abandonment was caused by two Mw ~ 7 paleoearthquakes with a recurrence interval of 5.0 ± 3.5 ka. The third interval is characterized by the interaction of hillslope deposits and aseismic slip and/or centimeter scale seismic slip events. At ca. 3.5 ka, a last large (Mw ~ 6.6) earthquake took place. The recurrence intervals of large (Mw > 8.5) subduction earthquakes do not appear to be the same as the recurrence intervals of the Mw ~ 7 events on the upper plate Mejillones Fault.
机译:我们已经对智利的上板断裂进行了首次古地震学研究。选定的结构是梅吉隆斯断裂,其特征是明显的断层鳞茎。使用宇宙成因〜(10)Be和OSL测年以及沟槽的详细沉积测井,我们已经通过大约2的断层活动限制了两个冲积面的放弃。 35 ka和约14 ka。基于地层观测,我们在最后一个ca内以四个间隔描述了断层的演化。 35 ka。在前三个时间间隔内,断层的稳定滑动速率为0.61±0.26 m / ka。第四段由最后的垂直断层滑动和大约2001年后未变形的山坡沉积物的堆积来描绘。 3.3 ka,滑移率0.22±0.06 m / ka。较年轻的地表抛弃是由两次Mw〜7次古地震引起的,复发间隔为5.0±3.5 ka。第三个区间的特征是山坡沉积物与抗震滑动和/或厘米级地震滑动事件的相互作用。约于3.5 ka,发生了最后一次大地震(Mw〜6.6)。大型(Mw> 8.5)俯冲地震的复发间隔似乎与上板Mejillones断层Mw〜7事件的复发间隔不同。

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  • 来源
    《Tectonics》 |2012年第2期|p.TC2017.1-TC2017.21|共21页
  • 作者单位

    Departamento de Ciencias Geologicas, Universidad Catolica del Norte, Avenida Angamos 0610, Antofagasta, Chile,Geosciences Environnement Toulouse, Universite Paul Sabatier, Toulouse, France;

    Departamento de Ciencias Geologicas, Universidad Catolica del Norte, Avenida Angamos 0610, Antofagasta, Chile;

    Institut fur Geologie und Mineralogie, Universitat zu Koln, Ziilpicher Str. 49b, D-50674 Koln, Germany;

    Department of Earth Sciences, University of St Andrews, St Andrews KY16 9AL, UK;

    Scottish Universities Environmental Research Centre, Rankine Avenue, Scottish Enterprise Technology Park, East Kilbride G75 OQF, UK;

    Departamento de Geologia, Facultad de Ciencias Fisicas y Matematicas, Universidad de Chile, Santiago 8320000, Chile;

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