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Rates of erosion and landscape change along the Blue Ridge escarpment, southern Appalachian Mountains, estimated from in situ cosmogenic 10Be

机译:阿巴拉契亚山脉南部蓝岭悬崖的侵蚀和景观变化率,从原位宇宙成因10Be估算

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摘要

The Blue Ridge escarpment, located within the southern Appalachian Mountains of Virginia and North Carolina, forms a distinct, steep boundary between the lower-elevation Piedmont and higher-elevation Blue Ridge physiographic provinces. To understand better the rate at which this landform and the adjacent landscape are changing, we measured cosmogenic 10Be in quartz separated from sediment samples (n = 50) collected in thirty-two streams and from three exposed bedrock outcrops along four transects normal to the escarpment, allowing us to calculate erosion rates integrated over 104–105 years. These basin-averaged erosion rates (5.4–49 m My-1) are consistent with those measured elsewhere in the southern Appalachians and show a positive relationship between erosion rate and average basin slope. Erosion rates show no relationship with basin size or relative position of the Brevard fault zone, a fundamental structural element of the region. The cosmogenic isotopic data, when considered along with the distribution of average basin slopes in each physiographic province, suggest that the escarpment is eroding on average more rapidly than the Blue Ridge uplands, which are eroding more rapidly than the Piedmont lowlands. This difference in erosion rates by geomorphic setting suggests that the elevation difference between the uplands and lowlands adjacent to the escarpment is being reduced but at extremely slow rates.
机译:蓝岭悬崖位于弗吉尼亚州的阿巴拉契亚山脉南部和北卡罗来纳州,在海拔较低的皮埃蒙特和海拔较高的蓝岭地理学各省之间形成了明显且陡峭的边界。为了更好地了解该地貌和邻近景观的变化速率,我们测量了石英中的宇宙成因10Be,该石英是从32条溪流中收集的沉积物样本(n = 50)和沿垂直于悬崖的四个断面从三个裸露的基岩露头中分离出来的,使我们能够计算104-105年间的综合侵蚀率。这些流域平均侵蚀速率(5.4-49μmMy-1)与阿巴拉契亚南部其他地方测得的速率一致,并且显示出侵蚀速率与平均流域坡度之间存在正相关关系。侵蚀率与盆地大小或布雷瓦尔断层带的相对位置没有关系,布雷瓦尔断层带是该区域的基本结构要素。考虑到宇宙成因同位素数据以及每个地理省份平均盆地坡度的分布,表明陡坡平均比蓝岭高地侵蚀得更快,而蓝岭高地比皮埃蒙特低地侵蚀得更快。地貌背景下侵蚀速率的这种差异表明,与悬崖相邻的高地和低地之间的海拔差异正在减小,但速率极慢。

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