Continuous distribution pattern and the origin of the high‐velocity layer in the Pearl River Mouth Basin in the northern South China Sea: Constraints by gravity modelling

IF 1.4 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geological Journal Pub Date : 2024-07-23 DOI:10.1002/gj.5021
Qinglong Zhu, Junjiang Zhu, Xingquan Chen, Yuhan Jiao, Xiaoxiao Ding, Zhengyuan Liu, Sanzhong Li, Yongjiang Liu, Xuelin Qiu
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Abstract

The high‐velocity layer in the lower crust is widely distributed in the northern continental margin of the South China Sea. A detailed anatomy of the high‐velocity layer is crucial for understanding the continental rifting and crustal thinning. Based on three seismic reflection profiles across the Pearl River Mouth Basin (PRMB) and the global free‐air gravity anomaly data in this study, by the gravity modelling we construct the crustal structure along three seismic reflection profiles across the depression and uplift zones. The free‐air gravity anomaly data within the uplift and depression zones indicates the distinct zonation, and the high and low values of free‐air gravity anomalies in the basin show the northeastward trend. Based on the gravity modelling along the three seismic profiles, the crustal thickness is of 12–23 km beneath the basin and thickness of the crust is gradually thinning from the continental shelf to the continental slope. The high‐velocity layer extends eastward to the Dongsha Uplift and terminates westward beneath the Baiyun Sag. The average thickness of the high‐velocity layer is 4–6 km and the maximum thickness is about 8 km at the Dongsha Uplift. The thickness variation of the high‐velocity layer suggests the continuous distribution of mantle underplating and intense magma activity. According to the isolated distribution and the continuous distribution of the high‐velocity layer found by previous studies in the northern South China Sea, we use gravity modelling to test which models of the high‐velocity layer within the PRMB are reasonable. According to testing models and preferred models of the crustal structure by gravity modelling, we propose that the continuous distribution pattern of the high‐velocity layer is the best model to interpret the crustal thinning characteristics and the gravity anomaly responses of the high‐velocity layer in the basin. We propose that the high‐velocity layer in the Pearl River Mouth Basin was formed by the long‐term underplating of the high‐temperature melted mantle.
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南海北部珠江口盆地高速层的连续分布模式及成因:重力模型的约束
地壳下部的高速层广泛分布于中国南海北部大陆边缘。详细解剖高速层对了解大陆断裂和地壳减薄至关重要。本研究基于珠江口盆地的三条地震反射剖面和全球自由空气重力异常数据,通过重力建模,构建了三条地震反射剖面沿凹陷带和隆起带的地壳结构。隆起带和凹陷带内的自由空气重力异常数据显示了明显的分带,盆地内自由空气重力异常的高值和低值显示了向东北方向的趋势。根据三条地震剖面的重力模拟,盆地下的地壳厚度为12-23千米,地壳厚度从大陆架向大陆坡逐渐减薄。高速层向东延伸至东沙隆起带,向西终止于白云山下。高速层的平均厚度为4-6千米,最大厚度在东沙隆起处约为8千米。高速层的厚度变化表明地幔下伏和强烈岩浆活动的连续分布。根据南海北部高速层的孤立分布和前人研究发现的高速层的连续分布,我们采用重力模拟的方法来检验珠江口大湾区内高速层的哪些模型是合理的。根据重力模拟对地壳结构的测试模型和优选模型,我们提出高速层的连续分布模式是解释盆地内地壳减薄特征和高速层重力异常响应的最佳模型。我们提出珠江口盆地的高速层是由高温熔融地幔长期下沉形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geological Journal
Geological Journal 地学-地球科学综合
CiteScore
4.20
自引率
11.10%
发文量
269
审稿时长
3 months
期刊介绍: In recent years there has been a growth of specialist journals within geological sciences. Nevertheless, there is an important role for a journal of an interdisciplinary kind. Traditionally, GEOLOGICAL JOURNAL has been such a journal and continues in its aim of promoting interest in all branches of the Geological Sciences, through publication of original research papers and review articles. The journal publishes Special Issues with a common theme or regional coverage e.g. Chinese Dinosaurs; Tectonics of the Eastern Mediterranean, Triassic basins of the Central and North Atlantic Borderlands). These are extensively cited. The Journal has a particular interest in publishing papers on regional case studies from any global locality which have conclusions of general interest. Such papers may emphasize aspects across the full spectrum of geological sciences.
期刊最新文献
Issue Information Issue Information Reply to Comment on “Singh R, Vadlamani R, Bajpai S & Maurya AS (2024) Strontium Isotope Stratigraphy of Marine Oligocene–Miocene Sedimentary Successions of Kutch Basin, Western India. Geological Journal, 1–20. DOI: 10.1002/gj.4961” Fabrics and Origin of Troctolites in the Keketoukeleke Ultramafic–Mafic Complex, South Altyn Tagh, Northwest China Comment on “Singh R, Vadlamani R, Bajpai S, Maurya AS (2024) Strontium Isotope Stratigraphy of Marine Oligocene–Miocene Sedimentary Successions of Kutch Basin, Western India. Geological Journal, 1–20. DOI: 10.1002/gj.4961”
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