南大西洋瓦尔迪维亚岸的地震地层学及其对海洋高原演化、沉积和热恢复的意义

IF 3 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
E. Contreras, W. Sager, V. Spiess, N. Fekete, B. Wu, H. Zhou
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引用次数: 0

摘要

Valdivia Bank (VB)是南大西洋的一个海洋高原,由晚白垩世大西洋中脊(MAR)的热点脊火山作用形成。它是沃尔维斯山脊(WR)的一部分,这是一条从纳米比亚近海延伸到特里斯坦达库尼亚和戈夫群岛的准线性海山链。为了了解瓦尔迪维亚滩的演化,我们利用多通道地震数据和国际海洋发现计划(IODP) 391考察队的取心结果来解释地震地层学,该考察队主要回收了远洋纳米化石软泥和白垩。地震剖面可划分为3个地震单元,即断裂、符合基底的下透明层段、裂谷等局部沉积中心较厚的中、中、高振幅层段和上、近平行透明层段。其显著特征包括区域不整合面、倾斜斜形、块体搬运和等高岩沉积以及火山构造。此外,在整个高原上观察到三个填满的裂谷。我们的分析表明,在坎帕纪的一段沉积期之后,该大厦在古新世断裂,与南大西洋构造重组相吻合。局部沉积中心的形成是裂谷作用的结果。随后,始新世青藏高原经历了热恢复和区域隆升。火山丘位于白垩纪沉积物之上,侵入物位于沉积物之中。新生代沉积间断,可能与碳酸盐岩补偿深度变化和底流强化有关。VB沉积复杂,在很大程度上受高原古海洋环境、热恢复和构造作用的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Seismic Stratigraphy of Valdivia Bank, South Atlantic and Implications for Oceanic Plateau Evolution, Sedimentation, and Thermal Rejuvenation

Seismic Stratigraphy of Valdivia Bank, South Atlantic and Implications for Oceanic Plateau Evolution, Sedimentation, and Thermal Rejuvenation

Valdivia Bank (VB) is an oceanic plateau in the South Atlantic that formed from hotspot-ridge volcanism during the Late Cretaceous at the Mid-Atlantic Ridge (MAR). It is part of Walvis Ridge (WR), a quasi-linear seamount chain extending from offshore Namibia to Tristan da Cunha and Gough Islands. To understand Valdivia Bank evolution, we interpret the seismic stratigraphy from multichannel seismic data paired with coring results from International Ocean Discovery Program (IODP) Expedition 391, which recovered mostly pelagic nannofossil ooze and chalks. The seismic section can be divided into three seismic units (SU), a lower transparent interval which is faulted and conforms to basement, a middle, moderate to high amplitude interval which is thick in local depocenters such as rifts, and an upper, subparallel transparent interval. Notable features include regional unconformities, dipping clinoforms, mass transport and contourite deposits, and volcanic structures. Additionally, three infilled rifts are observed across the plateau. Our analysis implies that following a period of sedimentation in the Campanian, the edifice was faulted through the Paleocene, coinciding with a South Atlantic tectonic reorganization. Local depocenters formed as a result of rifting. Subsequently, the plateau experienced thermal rejuvenation and regional uplift during the Eocene. Volcanic mounds were emplaced atop Cretaceous sediments and intrusives were emplaced within the sediments. During the Cenozoic, sedimentation was punctuated, likely in response to changes in the carbonate compensation depth and bottom current intensification. VB sedimentation was complex and largely influenced by the paleoceanographic context of the plateau, as well as thermal rejuvenation and tectonism.

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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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