从重力势能看非洲构造板块应力场的发展

IF 2.3 4区 地球科学
Alemayehu Letamo, Baladhandapani Kavitha, Tadepalli Phanirama Tezeswi
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引用次数: 0

摘要

世界应力图是一个关于地壳应力的全球数据汇编,旨在评估世界范围内的应力模式并确定应力源。但是,由于非洲的覆盖率不足,其效力有限。该研究项目旨在模拟地应力模式,并了解其与当代地震活动的相关性。为此,这些应力是根据非洲构造板块(TAP)的密度结构和地形高度的对比所产生的重力势来模拟的。因此,以来自地壳1.0的地壳参数数据集和GEBCO-2022(海洋一般水深图)的高程作为输入,从重力势中确定元素的侧向力。在此基础上,采用平面应力弹性有限元分析方法确定了TAP的当前应力场。随后,将模拟结果与最近的应力指标研究结果进行了比较。有限元模型得到的应力分布与非洲当代地震活动性的经验关系相吻合。在非洲东部、北部和南部观察到高压力。与此同时,中非和西非的压力水平较低。东非裂谷系的最大水平应力方向大致与裂谷平行。观测到的应力方向与世界应力图基本一致,方位角误差在5.4°~ 21.5°之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development of stress field for the African tectonic plate from gravitational potential energy

Development of stress field for the African tectonic plate from gravitational potential energy

The World Stress Map is a global compilation of data on crustal stress designed to assess worldwide stress patterns and identify stress sources. However, its effectiveness is limited due to inadequate coverage in Africa. This research project aimed to model crustal stress patterns and understand the correlations with contemporary seismicity. To this end, these stresses were modelled from gravitational potential resulting from contrasts in the density structure and the topographic elevations of the African tectonic plate (TAP). Accordingly, the data set of crustal parameters from Crust1.0 and elevations of GEBCO-2022 (general bathymetric chart of the oceans) were used as inputs to determine the lateral forces on elements from gravitational potential. An elastic finite element analysis in plane stress was then employed to determine the present-day stress field of TAP. Subsequently, the simulation results were compared to the recent studies of stress indicators. The stress distributions obtained from the finite element model (FEM) are correlated and found to be in good agreement with the contemporary seismicity of Africa from empirical relations. High stresses were observed in eastern, northern, and southern Africa. At the same time, central Africa and western Africa exhibited low-stress levels. Maximum horizontal stress (SHmax) direction in the East Africa Rift System is roughly parallel to the rift. Generally, the observed stress orientations are in harmony with World Stress Map, with the errors in azimuths ranging from 5.4° to 21.5°.

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来源期刊
Acta Geophysica
Acta Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.80
自引率
13.00%
发文量
251
期刊介绍: Acta Geophysica is open to all kinds of manuscripts including research and review articles, short communications, comments to published papers, letters to the Editor as well as book reviews. Some of the issues are fully devoted to particular topics; we do encourage proposals for such topical issues. We accept submissions from scientists world-wide, offering high scientific and editorial standard and comprehensive treatment of the discussed topics.
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