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Uplift history of the Sila Massif, southern Italy, deciphered from cosmogenic ~(10)Be erosion rates and river longitudinal profile analysis

机译:从宇宙成因〜(10)Be侵蚀率和河流纵向剖面分析破译了意大利南部Sila地块的隆升历史

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The Sila Massif in the Calabrian Arc (southern Italy) is a key site to study the response of a landscape to rock uplift. Here an uplift rate of ~ 1 mm/yr has imparted a deep imprint on the Sila landscape recorded by a high-standing low-relief surface on top of the massif, deeply incised fluvial valleys along its flanks, and flights of marine terraces in the coastal belt. In this framework, we combined river longitudinal profile analysis with hillslope erosion rates calculated by ~(10)Be content in modern fluvial sediments to reconstruct the long-term uplift history of the massif. Cosmogenic data show a large variation in erosion rates, marking two main domains. The samples collected in the high-standing low-relief surface atop Sila provide low erosion rates (from 0.09 ± 0.01 to 0.13 ± 0.01 mm/yr). Conversely, high values of erosion rate (up to 0.92 ± 0.08 mm/yr) characterize the incised fluvial valleys on the massif flanks. The analyzed river profiles exhibit a wide range of shapes diverging from the commonly accepted equilibrium concave-up form. Generally, the studied river profiles show two or, more frequently, three concave-up segments bounded by knickpoints and characterized by different values of concavity and steepness indices. The wide variation in cosmogenic erosion rates and the non-equilibrated river profiles indicate that the Sila landscape is in a transient state of disequilibrium in response to a strong and unsteady uplift not yet counterbalanced by erosion.
机译:位于卡拉布里亚弧线(意大利南部)的Sila断层块是研究景观对岩石隆起的响应的重要场所。在这里,每年约1毫米的上升速度在西拉(Sila)风景上留下了深刻的印记,这是由地块顶部的高低起伏地表,沿其侧面深切的河流谷以及海底阶地的飞行记录的。沿海地带。在此框架下,我们将河流纵向剖面分析与根据现代河流沉积物中〜(10)Be含量计算出的山坡侵蚀速率相结合,以重建地块的长期隆升历史。宇宙成因数据显示出侵蚀速率有很大变化,标志着两个主要领域。收集在锡拉(Sila)顶上的高浮雕低浮雕表面上的样品腐蚀速率较低(从0.09±0.01到0.13±0.01 mm / yr)。相反,较高的侵蚀速率值(高达0.92±0.08 mm /年)是断层地势侧沟谷的特征。所分析的河流剖面显示出与通常公认的平衡凹形形态不同的各种形状。通常,所研究的河流剖面显示两个或更频繁的三个凹面段,这些凹面段以拐点为边界,并具有不同的凹度和陡度指数值。宇宙成因侵蚀速率和不平衡的河流剖面的广泛变化表明,Sila景观处于暂时的不平衡状态,这是由于尚未受到侵蚀抵消的强烈而不稳定的隆起。

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  • 来源
    《Tectonics》 |2012年第3期|p.tc3007.1-tc3007.19|共19页
  • 作者单位

    Dipartimento Scienze Geologiche, Universita Roma TRE, Largo S. Leonardo Murialdo 1,1-00146 Rome,Italy;

    U.S. Geological Survey, Menlo Park, California, USA;

    Dipartimento Scienze Geologiche, Universita Roma TRE, Rome, Italy;

    Dipartimento Scienze Geologiche, Universita Roma TRE, Rome, Italy;

    Department of Earth and Atmospheric Sciences, Purdue University,West Lafayette, Indiana, USA;

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