卡拉布里亚弧(爱奥尼亚海)前缘增生楔的变形样式和速率:下非洲板块结构施加的控制

G. Bortoluzzi, A. Polonia, L. Torelli, A. Artoni, M. Carlini, Savino Carone, G. Carrara, M. Cuffaro, F. Bianco, Fabrizio D'Oriano, V. Ferrante, L. Gasperini, R. Ivaldi, A. Laterra, M. Ligi, M. Locritani, F. Muccini, Paola Mussoni, F. Priore, F. Riminucci, S. Romano, G. Stanghellini
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引用次数: 15

摘要

卡拉布里亚弧是非洲/欧亚板块汇聚形成的一个狭窄的俯冲-回滚体系。通过多尺度地球物理方法分析了锋面增生楔的构造样式。叠前深度偏移的地壳尺度地震剖面揭示了俯冲杂岩的整体几何形状;高分辨率的多通道地震和次底CHIRP剖面,结合形态构造图,综合了深部数据,约束了锋面增生楔的精细构造以及外变形前沿的变形过程。在前缘楔西叶确定了四个主要的形态构造域:与深海平原过渡的原变形区;两个温和而紧密的折叠区域;深坳陷和中间构造高的丘状形态域;一个位于含盐增生楔向陆地边界的高地,在那里分离穿过更深的层次直至基底。这些区域的构造样式和海底形态的变化与向内楔的逐渐强烈的变形有关,而突变与非洲板块下部的继承结构有关。我们的数据表明,强烈的浅变形集中在深根断裂和传入板块的基底高点的对应上。南第勒尼安海的弧后伸展最近停止,导致沿分割大陆边缘的反张性岩石圈断层的板块回退和板块边界重组放缓。在这种复杂的环境下,尚不清楚吸积楔是否仍在通过锋面吸积生长。我们的数据表明,在楔形的趾部,缩短仍然很活跃,沿单个褶皱的隆升速率在0.25-1.5 mm/yr之间。上第四纪沉积物内部的不整合表明沉积和构造过程的不连续性,即沉积速率缩短或增加的速度减慢,但不是锋面增生的真正失活,这仍然有助于外部变形锋向前陆的迁移。
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Styles and rates of deformation in the frontal accretionary wedge of the Calabrian Arc (Ionian Sea): controls exerted by the structure of the lower African plate
The Calabrian Arc is a narrow subduction-rollback system resulting from Africa/Eurasia plate convergence. We analysed the structural style of the frontal accretionary wedge through a multi-scale geophysical approach. Pre-stack depth-migrated crustal-scale seismic profiles unravelled the overall geometry of the subduction complex; high-resolution multi-channel seismic and sub-bottom CHIRP profiles, together with morpho-structural maps, integrated deep data and constrained the fine structure of the frontal accretionary wedge, as well as deformation processes along the outer deformation front.We identified four main morpho-structural domains in the western lobe of the frontal wedge: the proto-deformation area at the transition with the abyssal plain; two regions of gentle and tight folding; a hummocky morphology domain with deep depressions and intervening structural highs; a highstanding plateau at the landward limit of the salt-bearing accretionary wedge, where the detachment cuts through deeper levels down to the basement. Variation of structural style and seafloor morphology in these domains are related to a progressively more intense deformation towards the inner wedge, while abrupt changes are linked to inherited structures in the lower African plate. Our data suggest focusing of intense shallow deformation in correspondence of deeply rooted faults and basement highs of the incoming plate.Back-arc extension in the Southern Tyrrhenian Sea has recently ceased, producing a slowdown of slab rollback and plate-boundary re-organization along trans-tensional lithospheric faults segmenting the continental margin. In this complex setting, it is not clear if the accretionary wedge is still growing through frontal accretion. Our data suggest that shortening is still active at the toe of the wedge, and uplift rates along single folds are in the range of 0.25-1.5 mm/yr. An unconformity within the Plio-Quaternary sediments suggests a discontinuity in sedimentation and tectonic processes, i.e. a slowdown of shortening rate or an increase in sedimentation rate, but not a real inactivation of frontal accretion, which still contributes to the migration of the outer deformation front towards the foreland.
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