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首页> 外文期刊>Geosphere >Deciphering the early history of a multiply reactivated fault using strain analysis in an adjacent fold: Evidence for early brittle-plastic slip on the Picuris-Pecos fault, New Mexico, USA
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Deciphering the early history of a multiply reactivated fault using strain analysis in an adjacent fold: Evidence for early brittle-plastic slip on the Picuris-Pecos fault, New Mexico, USA

机译:使用应变分析在相邻褶皱中解读多次复活断层的早期历史:美国新墨西哥州Picuris-Pecos断层的早期脆性塑性滑动证据

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摘要

Determining the earliest history of a multiply reactivated fault is difficult, particularly when the rock record is incomplete and brittle deformation reorients strain markers. We present a method that incorporates strain analysis of an adjacent fold, inferred deformation temperatures, and published thermochronology to find the initiation age of the north-striking Picuris-Pecos fault of the southern Rocky Mountains (USA). The Picuris-Pecos fault has accommodated at least 37 km of dextral slip. The older east-trending Hondo syncline (New Mexico) is refolded adjacent to the fault and has a map pattern consistent with dextral drag. We analyzed quartz grain shapes, deformation mechanisms, and fractures within the Hondo syncline to determine if the refold is genetically related to the Picuris-Pecos fault. Nine calculated grain-shape ellipsoids predate refolding and are rotated about a vertical axis subparallel to strike of the refold limbs. Healed fractures and semibrittle microstructures are most abundant in the hinge of the refold and adjacent to the fault. We interpret refolding and slip on the Picuris-Pecos fault to have initiated during unroofing through the brittle-plastic transition (∼250–310 °C). Regional thermochronologic studies suggest that the rocks of the Hondo syncline were at this temperature range during the Grenville orogeny. The refold is probably a fault-propagation fold that predated throughgoing faulting, or possibly formed during dextral drag on the Picuris-Pecos fault. Refolding in the Picuris Range and the Truchas Mountains accounts for at least 2.6 km of the total dextral shear on the fault.
机译:确定多重复活断层的最早历史是困难的,尤其是在岩石记录不完整且脆性变形使应变标志重新定向时。我们提出了一种方法,该方法结合了相邻褶皱的应变分析,推断的变形温度和已公布的热年代学,以找到南部落基山脉(美国)向北的皮库里斯-佩科斯断层的起始年龄。 Picuris-Pecos断层至少容纳了37 km的右旋滑移。较早的向东趋势的Hondo向斜线(新墨西哥州)在断层附近重新折叠,并具有与右旋阻力一致的地图模式。我们分析了Hondo向斜内的石英颗粒形状,变形机制和裂缝,以确定复褶是否与Picuris-Pecos断层在遗传上相关。九个计算的粒状椭球体在重折叠之前,并绕着与重折叠肢体撞击平行的垂直轴旋转。愈合的裂缝和半脆性的微结构在复褶的铰链中且与断层相邻处最为丰富。我们将皮丘里斯-佩科斯断层的重新褶皱和滑移解释为在脆性塑性转变(约250-310°C)进行屋面开裂过程中已开始。区域热年代学研究表明,在Grenville造山运动中,Hondo向斜的岩石处于该温度范围内。翻折可能是断层传播的褶皱,发生在断层之前,也可能是在Picuris-Pecos断层的右旋拖曳过程中形成的。在Picuris山脉和Truchas山脉中的褶皱至少占断层总右旋剪切力的2.6 km。

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  • 来源
    《Geosphere》 |2012年第3期|p.703-715|共13页
  • 作者单位

    1Department of Earth and Environmental Science, New Mexico Institute of Mining and Technology, Socorro, New Mexico 87801, USA 2New Mexico Bureau of Geology and Mineral Resources, New Mexico Institute of Mining and Technology, Socorro, New Mexico 87801, USA;

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