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Late Quaternary slip rates for faults of the central Walker Lane (Nevada, USA): Spatiotemporal strain release in a strike-slip fault system

机译:中央步行者巷(Nevada,USA)的缺失的第四纪滑梯率:防撞故障系统中的时空应变释放

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The Walker Lane is a broad shear zone that accommodates a significant portion of North American–Pacific plate relative transform motion through a complex of fault systems and block rotations. Analysis of digital elevation models, constructed from both lidar data and structure-from-motion modeling of unmanned aerial vehicle photography, in conjunction with 10 Be and 36 Cl cosmogenic and optically stimulated luminescence dating define new Late Pleistocene to Holocene minimum strike-slip rates for the Benton Springs (1.5 ± 0.2 mm/yr), Petrified Springs (0.7 ± 0.1 mm/yr), Gumdrop Hills (0.9 +0.3 / ?0.2 mm/yr), and Indian Head (0.8 ± 0.1 mm/yr) faults of the central Walker Lane (Nevada, USA). Regional mapping of the fault traces within Quaternary deposits further show that the Indian Head and southern Benton Springs faults have had multiple Holocene ruptures, with inferred coseismic displacements of ~3 m, while absence of displaced Holocene deposits along the Agai Pah, Gumdrop Hills, northern Benton Springs, and Petrified Springs faults suggest they have not. Combining these observations and comparing them with geodetic estimates of deformation across the central Walker Lane, indicates that at least one-third of the ~8 mm/yr geodetic deformation budget has been focused across strike-slip faults, accommodated by only two of the five faults discussed here, during the Holocene, and possibly half from all the strike-slip faults during the Late Pleistocene. These results indicate secular variations of slip distribution and irregular recurrence intervals amongst the system of strike-slip faults. This makes the geodetic assessment of fault slip rates and return times of earthquakes on closely spaced strike-slip fault systems challenging. Moreover, it highlights the importance of understanding temporal variations of slip distribution within fault systems when comparing geologic and geodetic rates. Finally, the study provides examples of the importance and value in using observations of soil development in assessing the veracity of surface exposure ages determined with terrestrial cosmogenic nuclide analysis.
机译:沃克巷是一片宽剪切区,通过故障系统的复杂容纳北美太平板相对变换运动的一部分宽剪区域,并通过故障系统的复杂和块旋转。数字高度模型的分析,由无人驾驶飞行车摄影的LIDAR数据和结构 - 从运动型造型构成,与10A和36克罗斯杂志和光学刺激的发光约会相同地定义了新的更新后的全新世 - 全新世罢工滑梯Benton Springs(1.5±0.2 mm / yr),石化弹簧(0.7±0.1 mm / Yr),Gumdrop Hills(0.9 + 0.3 / 0.2 mm / Yr),印度头(0.8±0.1 mm / yr)故障中央沃克巷(美国内华达州)。区域存款中的故障痕迹的区域映射进一步表明,印度人头部和南方奔腾弹簧故障有多次全新世裂纹,推断出〜3米的推断性位移,沿着Agai Pah,Gumdrop Hills,Northers缺乏流离失所的全茂矿床Benton Springs和Petried Springs断层表明他们没有。结合这些观察结果并将它们与中央沃克通道的变形的大地测量估计相结合,表明〜8毫米/年的大地测量变形预算中的至少三分之一已经集中在防撞断层上,仅包括五个中的两个这里在全新世期间讨论的故障,并且在晚熟期间,可能在所有击球故障中的一半。这些结果表明了防滑故障系统中的滑动分布和不规则复发间隔的世俗变化。这使得大地测量故障滑动速率和地震返回时间在紧密间隔的防滑故障系统具有挑战性。此外,它强调了在比较地质和大地测定率的情况下了解故障系统内滑动分布的时间变化的重要性。最后,该研究提供了在评估用陆地美容核素分析测定的表面暴露年龄的真实性方面的土壤开发的重要性和价值的实例。

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