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首页> 外文期刊>The Journal of Geology: a semi-quarterly magazine of geology and related sciences >Evidence for Pleistocene Low-Angle Normal Faulting in the Annapurna-Dhaulagiri Region, Nepal
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Evidence for Pleistocene Low-Angle Normal Faulting in the Annapurna-Dhaulagiri Region, Nepal

机译:尼泊尔安纳布尔纳峰-道拉吉里地区更新世低角度正断层的证据

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North-south-directed extension on the South Tibetan Fault System (STFS) played an important role in Himalayan tectonics of the Miocene Period, and it is generally assumed that orogen-perpendicular extension ceased in this orogenic system before the Pliocene. However, previous work in the Annapurna and Dhaulagiri Himalaya of central Nepal revealed evidence for local Pleistocene reactivation of the basal STFS structure in this area (the Annapurna Detachment). New structural mapping and (U-Th)/He apatite and zircon thermochronology in this region further document the significance of Pleistocene N-S extension in this sector of the Himalaya. Patterns of (U-Th)/He accessory-mineral ages are not disrupted across the reactivated segment of the STFS basal detachment, indicating that Pleistocene offset was limited. In contrast, the trace of a N-dipping, low-angle detachment in the hanging wall of the reactivated Annapurna Detachment-formerly linked to the STFS, but here named the Dhaulagiri Detachment-coincides with an abrupt break in the cooling-age pattern in two different drainages similar to 20 km apart, juxtaposing Miocene hanging-wall dates against Pleistocene footwall dates. Our observations, combined with previous fission-track data from the region, provide direct evidence for significant N-S extension in the central Himalaya as recently as the Pleistocene.
机译:西藏南部断层系统(STFS)的南北向伸展在中新世的喜马拉雅构造中起着重要作用,通常认为在上新世之前该造山系统已停止了造山带垂向伸展。但是,先前在尼泊尔中部的安纳布尔纳峰和道拉吉里喜马拉雅山所做的工作揭示了该地区基础STFS结构的局部更新世活化的证据(安纳布尔纳峰支队)。该区域的新结构图以及(U-Th)/ He磷灰石和锆石的热年代学进一步证明了在喜马拉雅山这一区域更新世N-S扩展的重要性。 (U-Th)/ He副矿物年龄的模式在STFS基底脱离的重新激活段中没有被破坏,表明更新世偏移是有限的。相比之下,在重新激活的Annapurna支队的悬挂壁上有一个N倾角低角度脱离的痕迹,该支臂以前与STFS相连,但在这里被命名为Dhaulagiri支队,恰好与冷却时间的突然中断有关。两条相距20公里的不同排水系统,将中新世上盘期与更新世下盘期并列。我们的观察结果与该地区以前的裂变径迹数据相结合,为喜马拉雅中部直到更新世以来N-S显着扩展提供了直接证据。

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