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Pliocene Sinistral Slip across the Adobe Hills, Eastern California-Western Nevada: Kinematics of Fault Slip Transfer across the Mina Deflection

机译:上新世 - 内华达西部的adobe Hills上新世西里尔河滑坡:跨越米纳偏转的断层滑移运动学

摘要

The Adobe Hills region (California and Nevada, USA) is a faulted volcanic field located within the western Mina deflection, a right-stepping zone of faults that connects the northern Eastern California shear zone (ECSZ) to the south with the Walker Lane belt (WLB) to the north. New detailed geologic mapping, structural studies, and 40Ar/39Ar geochronology in the Adobe Hills allow us to calculate fault slip rates and test predictions for the kinematics of fault slip transfer into the Mina deflection. The Adobe Hills are dominated by Pliocene tuffaceous sandstone, basaltic lavas that yield 40Ar/39Ar ages between 3.13 ± 0.02 and 3.43 ± 0.01 Ma, and basaltic cinder cones. These Pliocene units unconformably overlie Middle Miocene latite ignimbrite that yields an 40Ar/39Ar age of 11.17 ± 0.04 Ma, and Quaternary tuffaceous sands, alluvium, and lacustrine deposits cap the sequence. Northwest-striking normal faults, west-northwest–striking dextral faults, and northeast-striking sinistral faults cut all units; the northeast-striking sinistral faults are the youngest and most well developed fault set. We calculate ∼0.1 mm/yr of approximately east-west horizontal extension and northwest dextral shear since the Pliocene. The prominent northeast-striking sinistral faults offset basalt ridgelines, normal fault–hanging-wall intersections, a channelized basalt flow, a basalt flow edge, and a basalt flow contact a net minimum of 921 ± 184 to 1318 ± 264 m across the Adobe Hills. These measured sinistral offsets yield a minimum Pliocene sinistral fault slip rate of 0.2–0.5 mm/yr; our preferred minimum slip rate is 0.4–0.5 mm/yr. The geometry and orientation of the prominent sinistral faults are consistent with simple shear/couple clockwise block rotation within a broad dextral shear zone. Vertical axis block rotation data are needed to test this interpretation. We propose that a set of faults subparallel to Sierra Nevada–North America motion and associated releasing steps, located west of the White Mountains fault zone and east of the Long Valley Caldera, transfer a portion of dextral Owens Valley fault slip northwestward onto the sinistral faults in the Adobe Hills. Dextral slip distributed across faults between the White Mountains fault zone and the Sierra Nevada and east of the Fish Lake Valley fault zone may account for the apparent discrepancy between summed long-term geologic slip rates and present-day geodetic rates across the northern ECSZ. Fault slip in the Adobe Hills is part of a regional pattern of initiation and renewal of dextral, sinistral, and normal fault slip during the Pliocene that extends from lat ∼40°N to ∼36°N within the ECSZ-WLB and along the western margin of the Basin and Range Province. This regional deformation episode may be related to changes in gravitational potential energy.The document included here is a pre-print of the final article. The publisheru27s version of the article may be accessed from Geosphere.
机译:Adobe Hills地区(美国加利福尼亚州和内华达州)是位于Mina偏转西部的断层火山场,这是断层的右移区,将北加利福尼亚东部的剪切带(ECSZ)与南部的Walker Lane带相连( WLB)。 Adobe Hills中新的详细地质制图,结构研究和40Ar / 39Ar地质年代学,使我们能够计算断层滑移率和将断层滑移转移到Mina偏转的运动学的测试预测。土坯丘陵以上新世凝灰质砂岩,玄武岩熔岩(玄武岩熔岩产生40Ar / 39Ar年龄介于3.13±0.02和3.43±0.01 Ma之间)和玄武岩煤渣锥为主。这些上新世单元不一致地覆盖了中新世中古红土火成岩,产生的40Ar / 39Ar年龄为11.17±0.04 Ma,并且第四纪含泥质砂,冲积层和湖相沉积物覆盖了该层序。西北走向的正断层,西西北走向的右旋断层和东北走向的左旋断层切开了所有单元。东北走向的窦性断层是最年轻,发育最完善的断层。自上新世以来,我们计算了大约东西向水平延伸和西北右旋剪切的〜0.1 mm / yr。东北向突出的左断层偏移玄武岩的山脊线,正常的断层-悬壁相交点,通道化的玄武岩流,玄武岩流边缘和玄武岩流在整个Adobe Hills上的净最小净值为921±184至1318±264 m 。这些测得的左旋偏移产生的上新世左旋断层滑动率最小为0.2-0.5 mm / yr。我们首选的最小滑移率为0.4–0.5 mm /年。突出的左断层的几何形状和方向与在宽的右旋剪切带内简单的剪切/耦合顺时针旋转是一致的。需要垂直轴块旋转数据来测试此解释。我们建议,位于怀特山脉断层带以西和长谷火山口以东的一组与内华达山脉–北美运动相平行的断层和相关的释放台阶,将一部分右旋欧文斯谷断层滑移到西北向左移在Adobe Hills中。在怀特山断层带和内华达山脉之间以及鱼湖谷断层带以东的断层上分布的右旋滑移可能解释了长期ECSZ北部地区的总长期地质滑移率与当前大地测量率之间的明显差异。 Adobe Hills的断层滑移是上新世期间右旋,左旋和正常断层滑移的区域性格局的一部分,其在ECSZ-WLB内和沿西部从纬度lat〜40°N延伸至〜36°N盆地和山脉省的边缘。这种局部变形可能与重力势能的变化有关。此处包含的文档是最终文章的预印本。可以从Geosphere访问该文章的发行者版本。

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