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首页> 外文期刊>Geosphere >Active dextral strike-slip faulting records termination of the Walker Lane belt at the southern Cascade arc in the Klamath graben, Oregon, USA
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Active dextral strike-slip faulting records termination of the Walker Lane belt at the southern Cascade arc in the Klamath graben, Oregon, USA

机译:活跃的右旋滑动故障记录了美国俄勒冈州Klamath Graben的南部级联弧线的沃克通道带的终止

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摘要

Whether or not northward growth of the Walker Lane belt relates to northward motion of the Mendocino triple junction remains an open question in the study of western North American plate deformation. Uncertainty about the potential linkage arises from an incomplete understanding of how and where dextral transtension in the Walker Lane belt terminates on its northern end. To address this issue, we used bare-earth airborne light detection and ranging (LiDAR) topographic data to reveal the geomorphic record of active dextral transtensional deformation in the Klamath graben in the backarc of the southern Cascade arc, south-central Oregon, USA. Fault scarps in late Pleistocene glacial deposits indicate that at least 0.3 mm/yr of NW-SE dextral shear characterizes slip on the NW-striking Howard Bay fault system within the Klamath graben. Dextral slip on the Howard Bay fault is transferred northwestward into extension on N-striking normal faults within the Cascade arc. Thus, active faults in the Klamath graben mark the northern terminus of a dextral transtensional fault system spanning the southern Cascadia backarc from Crater Lake southward to the northern Sierra Nevada. A review of published geologic slip rates throughout the region of the southern Cascade arc suggests that dextral slip from the Walker Lane belt is transferred both into contractional structures in the northern Sacramento Valley and transtensional structures in the southern ~200 km section of the Cascadia backarc. Termination of transtensional deformation into the southern Cascade arc suggests that the Walker Lane belt propagates independently of the Mendocino triple junction and that, instead, expansion of the Basin and Range Province plays a central role in development of the Walker Lane belt.
机译:沃克通道带的向北增长是否涉及门外部三界的向北运动仍然是西北美板变形研究的开放问题。关于潜在联动的不确定性因对河道行车道带中的如何以及达克拉尔通道终止于其北端的情况而不完全理解。为了解决这个问题,我们使用了裸地空中光检测和测距(LIDAR)地形数据,以揭示俄勒冈州南部喀喀群岛的Klamath Graben中活跃的右侧触发变形的几何记录。晚熟冰川矿床中的故障稀有表明,至少0.3毫米/年的NW-SE Dextral剪切表征了Klamath Graben内的NW引人注目的霍华德湾故障系统的滑动。霍华德湾故障的右旋滑动被西北转移到梯级弧线内的正常断层上的延伸。因此,Klamath Graben中的积极故障标志着一系列右侧触发器断层系统的北端,遍布南部Cascadia Backarc从南部的塞拉尼达北部的火山口湖。在南方级联弧的整个地区发表的地质滑速审查表明,沃克通道带的右侧滑动速度在Cascadia Backarc的南部南部〜200公里段中的北部萨克拉门托山谷和静音结构中转移。倾斜变形到南方级联弧中的静音变形表明,沃克通道带独立于门诊三交界处传播,而是盆地和范围省的扩展在沃克通道带的发展中起着核心作用。

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