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Quaternary fluvial terraces of the Tiber Valley: geochronologic and geometric constraints on the back-arc magmatism-related uplift in central Italy

机译:台伯河谷第四纪河流阶地:意大利中部与弧后岩浆作用有关的隆升的地质年代学和几何学约束

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摘要

Through a geomorphological study relying on statistically assessed classes of hilltop elevations, we reconstruct a suite of paleo-surfaces along the Tiber River Valley north of Rome that we identify as fluvial terraces formed by interplay between global sea-level fluctuations and regional upift. Using biostratigraphic constraints provided by marine through continental deposits of Santernian age, we recognize the oldest terrace in this area, corresponding to an early coastal plain of late Santernian-Emilian age. By assuming the simple chronological principle of a staircase geometry we correlate the sea-level highstands of MIS 21 through MIS 5 with the lowest eight paleo-surfaces. By plotting against time the cumulated terrace elevations and the average elevation of the Santernian coastline in the investigated area, we detect rates of uplift during the last 1.8 Ma. Two major pulses of uplift are recognized 0.86 through 0.5 Ma, and 0.25 Ma through the Present, which are interpreted as driven by the subduction process and uprising of metasomatized magma bodies on the Tyrrhenian Sea Margin of central Italy, superimposied on a smaller isostatic component of uplift.
机译:通过根据统计评估的山顶高程类别进行的地貌研究,我们沿着罗马北部的台伯河谷重建了一组古地表,我们将其识别为由全球海平面涨落与区域上升之间相互作用形成的河流阶地。利用海洋通过Santernian时代的大陆沉积物提供的生物地层学约束,我们认识到该地区最古老的阶地,对应于Santernian-Emilian时代晚期的早期沿海平原。通过假设楼梯几何的简单时间顺序原理,我们将MIS 21到MIS 5的海平面高位与最低的八个古表面相关联。通过绘制调查区域内梯田高程和三元海岸线的平均高程随时间变化,我们可以检测出最近1.8 Ma的隆升速率。在意大利中部第勒尼安海缘上,俯冲过程和交代岩浆体的抬升驱动了两个主要的隆升脉动,即从0.86到0.5 Ma,到现在的0.25 Ma。隆起。

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