加拿大超大型提明斯-豪猪造山带金矿营下的地壳地球物理响应

IF 3.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
A. Q. Adetunji, I. J. Ferguson, J. M. Simmons, C. Ma, S. Cheraghi, D. B. Snyder, J. A. Ayer
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引用次数: 0

摘要

结合再处理地震反射剖面,对阿比提比绿岩带(AGB)超大型Timmins-Porcupine金矿区进行了80个测点大地电磁(MT)测量,探讨了地壳尺度构造的构型。3-D大地电磁法反演的电阻率剖面显示,在Porcupine-Destor断裂带北部3-5 km深度处,有一条明显的600 S导体,其东西向与Pipestone断裂带平行。其成因为豪猪组合底部深埋的>;2687 Ma石墨泥质单元。另一条纵深8-10公里的导体与Buskegau河断层平行,走向西北-东南方向。该导体的边缘在空间上与上、中、下地壳的地震反射面和速度模型的横向断裂相关,并增加了地壳尺度缝合的证据,该缝合也导致了<;2698 Ma的变质沉积岩叠瓦作用到AGB南部。豪猪-德斯托断裂带北部地壳电导率增强,电性结构空间复杂,反映了变质沉积包体、二、三级边界构造和金矿化的不对称分布。MT电阻率模型还解析了位于Porcupine-Destor断裂带表面轨迹以南10 km处的上地壳导体,为地壳断裂南倾提供了支持。Timmins的结果表明,断层系统伸展阶段的中部地壳特征在~ 2660-2590 Ma被造山带平行韧性流覆盖,地震反射区的狭窄(2-5公里宽)断裂更可能与晚期走滑变形有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Trans-Crustal Geophysical Responses Beneath the Supergiant Timmins-Porcupine Orogenic Gold Camp, Canada

Trans-Crustal Geophysical Responses Beneath the Supergiant Timmins-Porcupine Orogenic Gold Camp, Canada

A new 80-site magnetotelluric (MT) survey, integrated with reprocessed seismic reflection profiles, across the supergiant Timmins-Porcupine gold camp of the Abitibi greenstone belt (AGB) was conducted to investigate the architecture of crustal-scale structures. Resistivity sections derived from 3-D MT inversions reveal a significant 600 S conductor north of the Porcupine-Destor fault zone at 3–5 km depth striking east-west parallel to the Pipestone fault zone. It is attributed to a deeply buried >2687 Ma graphitic argillaceous unit at the base of Porcupine assemblage. A second conductor at 8–10 km depth strikes northwest-southeast parallel to the Buskegau River fault. The margin of this conductor correlates spatially with lateral breaks in seismic reflectors and velocity models in the upper, middle, and lower crust, and adds to evidence of a crustal-scale suture which also resulted in imbrication of <2698 Ma metasedimentary rocks onto the southern AGB. Enhanced conductivity and spatially complex electrical structure of the crust to the north of the Porcupine-Destor fault zone reflect the asymmetric distribution of metasedimentary packages, second- and third-order bounding structures, and gold mineralization. The MT resistivity models also resolve an upper crustal conductor located 10 km south of the surface trace of the Porcupine-Destor fault zone, providing support for a south-dipping crustal fault. The Timmins results suggest middle crustal signatures of the extensional stage of the fault system have been overprinted by orogen-parallel ductile flow at ∼2660–2590 Ma and narrow (2–5 km wide) breaks in seismic reflectors are more likely associated with late strike-slip deformation.

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来源期刊
Journal of Geophysical Research: Solid Earth
Journal of Geophysical Research: Solid Earth Earth and Planetary Sciences-Geophysics
CiteScore
7.50
自引率
15.40%
发文量
559
期刊介绍: The Journal of Geophysical Research: Solid Earth serves as the premier publication for the breadth of solid Earth geophysics including (in alphabetical order): electromagnetic methods; exploration geophysics; geodesy and gravity; geodynamics, rheology, and plate kinematics; geomagnetism and paleomagnetism; hydrogeophysics; Instruments, techniques, and models; solid Earth interactions with the cryosphere, atmosphere, oceans, and climate; marine geology and geophysics; natural and anthropogenic hazards; near surface geophysics; petrology, geochemistry, and mineralogy; planet Earth physics and chemistry; rock mechanics and deformation; seismology; tectonophysics; and volcanology. JGR: Solid Earth has long distinguished itself as the venue for publication of Research Articles backed solidly by data and as well as presenting theoretical and numerical developments with broad applications. Research Articles published in JGR: Solid Earth have had long-term impacts in their fields. JGR: Solid Earth provides a venue for special issues and special themes based on conferences, workshops, and community initiatives. JGR: Solid Earth also publishes Commentaries on research and emerging trends in the field; these are commissioned by the editors, and suggestion are welcome.
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