首页> 外文期刊>Journal of structural geology >Thermomechanics of an extensional shear zone, Raft River metamorphic core complex, NW Utah
【24h】

Thermomechanics of an extensional shear zone, Raft River metamorphic core complex, NW Utah

机译:犹他州西北部筏河变质岩心复合体的伸展剪切带的热力学

获取原文
获取原文并翻译 | 示例
       

摘要

A detailed structural and microstructural analysis of the Miocene Raft River detachment shear zone (NW Utah) provides insight into the thermomechanical evolution of the continental crust during extension associated with the exhumation of metamorphic core complexes. Combined microstructural, electron backscattered diffraction, strain, and vorticity analysis of the very well exposed quartzite mylonite show an increase in intensity of the rock fabrics from west to east, along the transport direction, compatible with observed finite strain markers and a model of "necking" of the shear zone. Microstructural evidence (quartz microstructures and deformation lamellae) suggests that the detachment shear zone evolved at its peak strength, close to the dislocation creep/exponential creep transition, where meteoric fluids played an important role on strain hardening, embrittlement, and eventually seismic failure. Empirically calibrated paleopiezometers based on quartz recrystallized grain size and deformation lamellae spacing show very similar results, indicate that the shear zone developed under stress ranging from 40 MPa to 60 MPa. Using a quartzite dislocation creep flow law we further estimate that the detachment shear zone quartzite mylonite developed at a strain rates between 10 ~(12) and 10 ~(14) s ~1 We suggest that a compressed geothermal gradient across this detachment, which was produced by a combination of ductile shearing, heat advection, and cooling by meteoric fluids, may have triggered mechanical instabilities and strongly influenced the rheology of the detachment shear zone.
机译:中新世筏筏脱离剪切带(西北犹他州)的详细结构和微观结构分析提供了与变质岩心复合体掘出相关的伸展过程中大陆壳热力学演化的见解。结合的微观结构,电子反向散射衍射,应变和涡度分析表明,暴露程度非常高的石英岩my铁矿沿运输方向从西向东的岩石结构强度增加,与观察到的有限应变标记和“颈缩”模型兼容”的剪切区。微观结构证据(石英微结构和形变薄片)表明,分离剪切带在其峰值强度处演化,接近位错蠕变/指数蠕变过渡,在此,流变流体在应变硬化,脆化和最终地震破坏中起着重要作用。基于石英重结晶晶粒尺寸和变形层间距的经验校准的古测距仪显示出非常相似的结果,表明剪切区在40 MPa至60 MPa的应力下发展。根据石英岩位错蠕变流定律,我们进一步估计了分离剪切带的石英岩my铁矿的应变速率在10〜(12)和10〜(14)s〜1之间。我们建议在整个分离过程中,压缩的地热梯度为由延性剪切,热对流和流星流体冷却共同产生的气源可能触发了机械不稳定,并严重影响了分离剪切带的流变性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号