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Volcanic island multi-stage construction inferred from a simple geometrical approach: Example of Reunion Island

机译:从简单的几何方法推断火山岛多阶段施工:Reunion Island的示例

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摘要

The reconstruction of volcanic landforms is an effective way to assess the construction history and growth rates of volcanic structures and is a useful tool to estimate erosion rates. We propose a simple geometrical approach to reveal the location of the long-term eruption centers and the general shape of eroded volcanoes within the altitudinal range of the input data. This DEM-based approach consists of finding the radial topographic profile of an eroded volcanic landform from its remaining surfaces, by coupling two independent and simple mathematical methods (linear regression and Spearman rank correlation). Here we demonstrate that this simple approach is suitable for circular to elliptical (up to an ellipticity of 0.5) and to some extent for asymmetrical volcanoes, and we apply it to Reunion Island. Our results confirm previous conclusions from geological observations and data requiring more complex instrumentation. We confirm that the center of long-term volcanic activity of Piton des Neiges remained stable for the past 1.4 Myr while Piton de la Fournaise has been migrating eastward for ~300 kyr. Our approach also reveals that Piton des Neiges is the dominant volcano in Reunion and that Piton de la Fournaise is a smaller edifice built on its edge. Moreover, despite the contribution of two other volcanoes in the construction of Reunion, we suggest that the Piton des Neiges has rapidly become the main structure of the whole island and has subsumed the previous volcanic centers . Finally, we use our approach to model the magmatic activity of Piton des Neiges, and suggest a deceleration of its magma emission rate since 2Myrs. (c) 2021 Elsevier B.V. All rights reserved.
机译:Volcanic Landforms的重建是评估火山结构的施工史和增长率的有效途径,是一种估计侵蚀率的有用工具。我们提出了一种简单的几何方法来揭示长期爆发中心的位置和侵蚀火山的一般​​形状在输入数据的大自行范围内。这种基于DEM的方法包括通过耦合两个独立和简单的数学方法(线性回归和Spearman等级相关)来找到从其剩余表面的侵蚀火山地貌的径向地形轮廓。在这里,我们证明这种简单的方法适用于椭圆形(最高椭圆度为0.5),并且在某种程度上适用于不对称的火山,我们将其应用于Reunion Island。我们的结果证实了从地质观测和数据所需的结论,要求更复杂的仪器。我们确认Piton des Neiges的长期火山活动中心在过去的1.4 MYR中保持稳定,而Piton de la Fournaise已向东迁移到300 Kyr。我们的方法还揭示了Piton des Neiges是团聚中的主要火山,并且Piton de la Fournaise是一个较小的大厦,内部构建在其边缘。此外,尽管其他两座火山的建设在重新统一中,但我们建议蒂蒙德尼斯迅速成为整个岛屿的主要结构,并已向以前的火山居民归结。最后,我们使用我们的方法来模拟Piton des Neiges的岩石活动,并提出了自2MYR以来其岩浆排放率的减速。 (c)2021 elestvier b.v.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2021年第1期|107900.1-107900.17|共17页
  • 作者单位

    Univ Paris Inst Phys Globe Paris CNRS F-75005 Paris France;

    Univ Paris Inst Phys Globe Paris CNRS F-75005 Paris France|Univ La Reunion Lab Geosci Reunion F-97744 St Denis France;

    Univ Paris Inst Phys Globe Paris CNRS F-75005 Paris France|Univ La Reunion Lab Geosci Reunion F-97744 St Denis France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geomorphology; Reunion Island; Volcanic structure; Geometry;

    机译:地貌;团聚岛;火山结构;几何;

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