从南美地台地壳各向异性推断西冈瓦纳的动态演化

IF 2.8 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Geophysical Journal International Pub Date : 2024-08-01 DOI:10.1093/gji/ggae267
Mei Feng, Meijian An, Hulin Zang, Marcelo S Assumpção, Marcelo B Bianchi, George S França, Marcelo P Rocha, Leda S Bettucci, Carlos A Chaves
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引用次数: 0

摘要

摘要 西冈瓦纳的合并和解体塑造了南美洲地台。地壳各向异性可以反映这一过程中的动态变化,但目前还没有专门的地壳各向异性测量方法。对 P 波接收函数(Pms)中莫霍转换剪切波的分裂分析可以揭示地壳尺度的各向异性,这对于了解地壳的动态演化以及从地核-地幔折射剪切波(XKS 相)的分裂分析中解释地幔各向异性非常重要。这项研究通过 Pms 劈裂分析测量了古老而稳定的南美洲平台的地壳各向异性。劈裂时间主要在 0-0.5 秒之间变化,区域平均值为 0.2 秒,略低于在构造活跃地区观测到的平均值。探测到的地壳各向异性表现出明显的特征和空间分带,为构造过程提供了启示。(1) 靠近跨巴西利亚诺构造线(TBL)的站点的快速极化方向呈 NNE-SSW 向,与 TBL 的走向基本一致,但与最大水平压应力不一致,这意味着它们可能是在 TBL 形成过程中由动态变质作用形成的。(2) 东部和东北部被动大陆边的地壳各向异性较弱。然而,快速极化方向倾向于沿大陆边缘定向,这意味着在西冈瓦纳大陆裂解过程中形成的化石伸展地壳结构的存在。(3) 被大陆洪积玄武岩覆盖的巴拉那盆地是世界上最大的大火成岩带之一,该盆地显示出明显的强各向异性,快速极化方向与地幔各向异性高度一致,这意味着在西冈瓦纳断裂过程中,这些地区发生了岩浆活动导致的地壳-地幔同步变形。
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Dynamic evolution of West Gondwana inferred from crustal anisotropy of the South American platform
Summary The amalgamation and breakup of the West Gondwana shaped the South American platform. The dynamics during the processes can be reflected by crust anisotropy of the platform, but there are no specialized crustal anisotropic measurements yet. Splitting analysis of Moho-converted shear waves in P-wave receiver functions (Pms) can reveal crustal-scale anisotropy, which is important for understanding the dynamic evolution of the crust and for the interpretation of mantle anisotropy from splitting analysis of core–mantle refracted shear waves (XKS phases). This study measured crustal anisotropy for the old and stable South American platform by Pms splitting analysis. The splitting times vary mainly in the range of 0–0.5 s, with a regional mean of 0.2 s, slightly lower than that observed in tectonically active regions. The detected crustal anisotropy shows distinct characteristics and spatial zoning, providing insights into tectonic processes. (1) Fast polarization directions at stations close to the Transbrasiliano Lineament (TBL) are oriented NNE–SSW, generally consistent with the strike of the TBL but inconsistent with the maximum horizontal compressive stress, implying that they might be formed by dynamic metamorphism during the formation of the TBL. (2) Crustal anisotropy along the passive continental margin in the east and northeast is weak. Still, the fast polarization directions tend to be oriented along the margin, implying the existence of fossil extensional crustal fabrics formed during the continental rifting of West Gondwana. (3) The Paraná Basin, one of the world's largest Large Igneous Provinces (LIP) covered by continental flood basalts, shows distinctively strong anisotropy, with fast polarization directions highly aligned with mantle anisotropy, implying that synchronous crust–mantle deformation occurred in these regions as a result of magmatism during the breakup of West Gondwana.
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来源期刊
Geophysical Journal International
Geophysical Journal International 地学-地球化学与地球物理
CiteScore
5.40
自引率
10.70%
发文量
436
审稿时长
3.3 months
期刊介绍: Geophysical Journal International publishes top quality research papers, express letters, invited review papers and book reviews on all aspects of theoretical, computational, applied and observational geophysics.
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