首页> 外文期刊>Journal of structural geology >Normal-fault development during two phases of non-coaxial extension:An experimental study
【24h】

Normal-fault development during two phases of non-coaxial extension:An experimental study

机译:非同轴延伸两个阶段的正断层发育:实验研究

获取原文
获取原文并翻译 | 示例
       

摘要

We use scaled experimental (analog) models to study the effect of a pre-existing fault fabric on fault development during extension. In our models, a homogeneous layer of wet clay undergoes two non-coaxial phases of extension whose directions differ by up to 45°. The normal faults that develop during the first phase create a pronounced fault fabric that influences normal-fault development during the second phase. In all models, the pre-existing faults are reactivated during the second phase of extension. Their sense of slip depends on the angle between the first- and second-phase extension directions. Specifically, the component of dip slip relative to strike slip decreases as the angle between the first- and second-phase extension directions increases. New normal faults also form during the second phase of extension in all models. The number of new fault segments increases as the angle between the first- and second-phase extension directions increases. The orientations of the new normal-fault segments are both orthogonal and oblique to the second-phase extension direction, indicating that both the second-phase extension direction and the pre-existing fault fabric control the orientation of new fault segments. Some of the new normal faults cut and offset the pre-existing faults, whereas others terminate against them, producing complex fault patterns and interactions. The modeling results explain fault interactions observed in the Jeanne d'Arc rift basin of offshore Newfoundland, Canada, and the reactivation of abyssal-hill normal faults at outer highs near subduction zones.
机译:我们使用规模化的实验(模拟)模型来研究扩展过程中预先存在的故障构造对故障发展的影响。在我们的模型中,均匀的湿粘土层经历了两个非同轴延伸阶段,其方向相差最大45°。在第一阶段发生的正常故障会形成明显的断层结构,从而影响第二阶段在正常故障发生的过程。在所有模型中,先前存在的故障都会在扩展的第二阶段重新激活。它们的滑动感取决于第一和第二相延伸方向之间的角度。具体地,随着第一和第二相延伸方向之间的角度增加,相对于打击滑动的倾角滑动的分量减小。在所有模型的扩展的第二阶段,也会形成新的正常故障。随着第一和第二相延伸方向之间的角度增加,新的断层段的数量也增加。新的正常断层段的方向既垂直于第二相延伸方向又倾斜于第二相延伸方向,这表明第二相延伸方向和既存的断层构造都控制着新断层段的方向。一些新的正常断层切割并抵消了先前存在的断层,而另一些则终止于它们,从而产生了复杂的断层样式和相互作用。建模结果解释了在加拿大纽芬兰近海的Jeanne d'Arc裂谷盆地中观察到的断层相互作用,以及俯冲带附近外高处深海山坡正常断层的活化。

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