64°35 e西南印度洋脊(SWIR)倒转海中脊拆离断层下盘地质与变形

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
S. Mahato, M. Cannat
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引用次数: 0

摘要

利用测深技术和ROV潜水技术,我们研究了SWIR近岩浆64°35e区域的两个连续的触发器分离断层(D1活跃,D2较老)。D1下盘上斜坡上数公里大小的台阶形成D1退化的断裂。顶部的断裂带暴露出D2断裂带,发育变形的蛇纹岩化橄榄岩、s形突、平面裂缝和蛇纹岩微角砾岩/泥质层。D1下盘的两个ROV断面显示出不同的变形样式,对应不同的形态域,这与断层和下盘强度的对比有关。其中一段记录了褶皱、以s形锥状体为主的露头和具有薄而不连续的蛇纹岩微角砾岩/泥质层的平面裂缝。在该波纹域的ROV潜水显示,船载测深中,nne向的km间隔脊和wnw向的窄台分别对应于D1断层的宽起伏(巨型波纹)和几个对偶的小正断层(累积水平偏移量约285 m)。另一段,缺乏波纹、宽脊和对偶断层,具有更厚、更连续的蛇纹岩微角砾岩/泥层,表明断层较弱。这种弱沟槽的丰富可能反映了变形过程中含水流体的可用性。我们将西部地区的巨型褶皱和D1突出的千米尺度裂片与一个广泛的拆离破坏带联系起来,该裂片具有高达~ 600米厚的由变形较小的蛇纹化橄榄岩组成的巨型突状体。波纹域中的小反向正断层被解释为由于D1下盘的弯曲力。我们的发现突出了沿脊轴发掘的D1拆离断裂带的三维、非平面结构和形态变异性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Footwall Geology and Deformation at Flip-Flop Mid-Ocean Ridge Detachment Faults: 64°35′E Southwest Indian Ridge (SWIR)

Footwall Geology and Deformation at Flip-Flop Mid-Ocean Ridge Detachment Faults: 64°35′E Southwest Indian Ridge (SWIR)

Using bathymetry and ROV dives, we investigate two successive flip-flop detachment faults (D1 active, D2 older) in the near-amagmatic 64°35′E region of the SWIR. Kilometer-sized benches on the upper slopes of D1 footwall form the D1 degraded breakaway. Scarps at the top expose the D2 fault zone with deformed serpentinized peridotite, sigmoidal phacoids, planar fractures, and serpentinite microbreccia/gouge horizons. Two ROV sections of the D1 footwall show contrasting deformation styles, corresponding to distinct morphological domains, which relate to contrasting fault and footwall strength. One section documents corrugations, outcrops dominated by sigmoidal phacoids, and planar fractures with thin, discontinuous serpentinite microbreccia/gouge horizons. ROV dives in this corrugated domain show that NNE-trending km-spaced ridges and WNW-trending narrow benches in the shipboard bathymetry correspond, respectively, to broad undulations (mega-corrugations) of the D1 fault and to several antithetic minor normal faults (cumulated horizontal offset of ∼285 m). The other section, lacking corrugations, broad ridges, and antithetic fault, has thicker and more continuous serpentinite microbreccia/gouge horizons, indicating a weaker fault. The abundance of such weak gouges probably reflects hydrous fluid availability during deformation. We link mega-corrugations in the western domain and km-scale lobes of D1 emergence to a broad detachment damage zone with up to ∼600 m-thick mega-phacoids of less deformed serpentinized peridotite. Small antithetic normal faults in the corrugated domain are interpreted as due to bending forces in the D1 footwall. Our findings highlight the three-dimensional, non-planar structural and morphological variability of the exhumed D1 detachment fault zone along the ridge-axis.

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来源期刊
Geochemistry Geophysics Geosystems
Geochemistry Geophysics Geosystems 地学-地球化学与地球物理
CiteScore
5.90
自引率
11.40%
发文量
252
审稿时长
1 months
期刊介绍: Geochemistry, Geophysics, Geosystems (G3) publishes research papers on Earth and planetary processes with a focus on understanding the Earth as a system. Observational, experimental, and theoretical investigations of the solid Earth, hydrosphere, atmosphere, biosphere, and solar system at all spatial and temporal scales are welcome. Articles should be of broad interest, and interdisciplinary approaches are encouraged. Areas of interest for this peer-reviewed journal include, but are not limited to: The physics and chemistry of the Earth, including its structure, composition, physical properties, dynamics, and evolution Principles and applications of geochemical proxies to studies of Earth history The physical properties, composition, and temporal evolution of the Earth''s major reservoirs and the coupling between them The dynamics of geochemical and biogeochemical cycles at all spatial and temporal scales Physical and cosmochemical constraints on the composition, origin, and evolution of the Earth and other terrestrial planets The chemistry and physics of solar system materials that are relevant to the formation, evolution, and current state of the Earth and the planets Advances in modeling, observation, and experimentation that are of widespread interest in the geosciences.
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