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Tectonic and glacial contributions to focused exhumation in the Olympic Mountains, Washington, USA

机译:在美国华盛顿州奥林匹克山区聚焦挖掘的构造与冰川贡献

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摘要

Tectonics and climate are major contributors to the topographic evolution of mountain ranges. Here, we investigate temporal variations in exhumation due to the onset of Pleistocene glaciation in the Olympic Mountains (Washington State, USA). We present 29 new apatite and zircon (U-Th)/He ages (AHe and ZHe), showing a decrease in ages toward the interior of the mountain range for both thermochronometric systems. Young AHe ages (2 Ma) can be found on the western side and the interior of the mountain range. Thermokinematic modeling of sample cooling ages suggests, that ZHe ages can be explained by an ellipse-shaped exhumation pattern with lowest/ highest rates of similar to 0.25 and 0.9 km/m.y. These rates are interpreted as tectonically driven rock uplift, where the pattern of rates is governed by the shape of the subducted plate. However, the youngest AHe ages require a 50-150% increase in exhumation rates in the past 2-3 m.y. This increase in rates is contemporaneous with Pliocene-Pleistocene alpine glaciation of the orogen, indicating that tectonic rock uplift is perturbed by glacial erosion.
机译:构造和气候是山脉地形演变的主要贡献者。在这里,我们调查奥林匹克山脉(华盛顿州,美国华盛顿州)的渗透冰川发病导致的批发时间变化。我们展示了29个新的磷灰石和锆石(U-TH)/他年龄(AHE和Zhe),显示出朝向热量系统的山脉内部的年龄减少。年轻的AHE年龄(&lt 2 ma)可以在西侧和山脉内部找到。样品冷却年龄的热通力建模表明,Zhe Ages可以通过椭圆形的呼口模式来解释,其最低/最高速率类似于0.25和0.9 km / m.y。这些速率被解释为根本驱动的岩石隆起,其中速率模式由底板板的形状控制。然而,最年轻的AHE年龄在过去2-3 M.Y中需要50-150%的挖掘率增加。这种速率的增加是奥林肾上腺素渗透性的奥林肾上腺素冰川冰川,表明构造岩石隆起因冰川侵蚀而扰乱。

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