Dating the topography through thermochronology: application of Pecube code to inverted vertical profile in the eastern Sila Massif, southern Italy

V. Olivetti, M. Balestrieri, C. Faccenna, F. Stuart
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引用次数: 3

Abstract

The Sila Massif is a small part of an orogenic wedge that sits on top of the narrow and active Calabrian subduction zone. The topography of the Sila Massif is characterized by a plateau region whose age and origin has been long debated. Here we integrate new apatite (U-Th)/He data from the eastern flank of the massif with existing apatite fission-track (AFT) data, to constrain the topographic evolution of the massif. The new AHe ages range from 9.7 Ma to 49.8 Ma and overlap the AFT ages indicating that a phase of rapid Cenozoic exhumation was followed by an abrupt decrease of the exhumation rate. A steep/inverse AFT age-elevation relationship from a vertical profile on top of the summit area of the north-eastern Sila may records post-exhumation relief degradation, which is consistent with the low-relief upland topography. To test this hypothesis we performed inverse numerical modeling using Pecube code. Integrating the new AHe ages and the numerical modelling results with the geological constraints we propose a new model for the regional topographic evolution from 30 Ma to the present.
通过热年代学确定地形年代:Pecube代码在意大利南部西拉地块东部倒立剖面上的应用
西拉地块是一个造山带的一小部分,位于狭窄而活跃的卡拉布里亚俯冲带的顶部。西拉地块的地形特征是一个高原地区,其年龄和起源一直存在争议。在这里,我们将来自地块东翼的新的磷灰石(U-Th)/He数据与现有的磷灰石裂变径迹(AFT)数据相结合,以约束地块的地形演化。新发现的AHe年龄在9.7 ~ 49.8 Ma之间,与AFT年龄重叠,表明在新生代快速掘出之后,掘出率急剧下降。在西拉东北部峰顶顶部的垂直剖面上显示出陡峭/逆的AFT年龄-高程关系,可能记录了发掘后地形的退化,这与低起伏高地地形相一致。为了验证这一假设,我们使用Pecube代码进行了反向数值模拟。综合新AHe年龄、数值模拟结果和地质约束条件,提出了30 Ma至今区域地形演化的新模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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