浅水平台作为潜在源区对硅质海底扇的贡献和影响

IF 2.8 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Basin Research Pub Date : 2024-08-09 DOI:10.1111/bre.12891
Xiaobo Zheng, Hongtao Zhu, Qianghu Liu, Zhiwei Zeng, Zhongheng Sun, Caiwei Fan
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引用次数: 0

摘要

大陆架边缘三角洲是硅质海底扇源-沉系统的主要 "源"。然而,对于位于大陆坡上的浅水平台的作用和影响,人们的发现还比较少。本文利用琼东南盆地西部乐东-陵水尾闾的中新世沉积物,研究了发育于梅山地层(Fm.)的YC35粗粒海底扇。研究了该扇的物质来源、沉积特征和发育机制。根据高分辨率三维地震资料恢复的古地貌显示,该地层存在一个浅水平台。根据地球化学古环境资料,由于古气候温暖湿润,古水深有变化趋势,该浅水平台是形成梅山地层碳酸盐沉积的理想场所。根据重矿物、相干切片和地震剖面的综合探源,浅水平台和海南岛的宁远河源对YC35粗粒海底扇有贡献。与不同时期形成的海底扇相比,粗粒扇因其独特的沉积结构、岩石成分和微岩学特征而显得与众不同。粗粒扇除了没有遵循通常的鲍马序列外,还含有过多的砾石,没有明显的层理或层状。岩石成分中含有大量岩石碎片,主要是花岗岩和沉积岩(碳酸盐岩)。根据这些结果,浅水平台对海底扇的物质组成有很大影响。此外,基于均方根的属性切片显示,浅水平台缓和了外围沉积。我们将浅水平台的发育和近端补给归因于斜压和强迫回归。我们的研究为研究海底扇沉积系统提供了新的见解和理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The contribution and impact of shallow water platform as a potential source area on siliceous submarine fans

The contribution and impact of shallow water platform as a potential source area on siliceous submarine fans

The shelf-margin deltas are the primary ‘sources’ of interest in siliceous submarine fan source-to-sink systems. However, less has yet to be discovered about the roles and effects of the shallow water platform situated on continental slopes. Using the Miocene sediments of the Ledong-Lingshui Sag in the western part of the Qiongdongnan Basin (QDNB), this paper studies the YC35 coarse-grained submarine fan that developed in the Meishan Formation (Fm.). The material sources, depositional characteristics, and developmental mechanisms of this fan were investigated. The restored palaeogeomorphology, based on high-resolution 3D seismic data, shows that a shallow water platform exists. According to geochemical palaeoenvironmental data, the shallow water platform was ideal for forming carbonate deposits in the Meishan Fm., owing to the warm and humid palaeoclimate and the shifting trend in palaeowater depth. Based on the combined source tracing of heavy minerals, coherence slices, and seismic profiles, the shallow water platform and the Ningyuan River source on Hainan Island contributed to the YC35 coarse-grained submarine fan. Compared to submarine fans formed during different periods, coarse-grained fan stands out due to its distinct sedimentary structure, rock composition, and microlithological characteristics. Aside from not following the usual Bowmar sequence, there is an excess of gravel and no clear bedding or lamination. A large number of rock fragments, mostly granite and sedimentary rock (carbonatite), make up the rock composition. According to these results, the shallow water platform significantly affects submarine fan material composition. In addition, the attribute slice based on the root mean square reveals that shallow water platforms moderate peripheral deposition. We attribute the development and proximal supply of the shallow water platform to diapirism and forced regression. Our research provides novel insights and comprehension into the investigation of submarine fan sedimentary systems.

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来源期刊
Basin Research
Basin Research 地学-地球科学综合
CiteScore
7.00
自引率
9.40%
发文量
88
审稿时长
>12 weeks
期刊介绍: Basin Research is an international journal which aims to publish original, high impact research papers on sedimentary basin systems. We view integrated, interdisciplinary research as being essential for the advancement of the subject area; therefore, we do not seek manuscripts focused purely on sedimentology, structural geology, or geophysics that have a natural home in specialist journals. Rather, we seek manuscripts that treat sedimentary basins as multi-component systems that require a multi-faceted approach to advance our understanding of their development. During deposition and subsidence we are concerned with large-scale geodynamic processes, heat flow, fluid flow, strain distribution, seismic and sequence stratigraphy, modelling, burial and inversion histories. In addition, we view the development of the source area, in terms of drainage networks, climate, erosion, denudation and sediment routing systems as vital to sedimentary basin systems. The underpinning requirement is that a contribution should be of interest to earth scientists of more than one discipline.
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