吉林大学学报(地球科学版) ›› 2025, Vol. 55 ›› Issue (5): 1691-1701.doi: 10.13278/j.cnki.jjuese.20240152

• 地球探测与信息技术 • 上一篇    下一篇

南海管事平顶海山密度结构及其构造意义

汪俊1, 2, 3,王哲1, 2, 3,李书华4,高红芳1, 2, 3,黄永健1, 2, 3   

  1. 1.中国地质调查局广州海洋地质调查局,广州511458

    2.南方海洋科学与工程广东省实验室(广州),广州511458

    3.自然资源部海底矿产资源重点实验室,广州511458

    4.广东省地质物探工程勘察院,广州510800

  • 出版日期:2025-09-26 发布日期:2025-11-15
  • 基金资助:

    中国地质调查局项目(DD20240090, DD20221712, DD20230066, DD20242659);国家自然科学基金项目(40776036)


Internal Density Structure and Tectonic Significance of Guanshi Guyot in the South China Sea

Wang Jun1,2,3, Wang Zhe1,2,3, Li Shuhua4, Gao Hongfang1,2,3, Huang Yongjian1,2,3   

  1. 1. Guangzhou Marine Geological Survey, China Geological Survey, Guangzhou 511458, China

    2. Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou 511458, China

    3. Key Laboratory of Marine Mineral Resources, Ministry of Natural Resources, Guangzhou 511458, China

    4. Geologic & Geophysical Engineering Exploration Institute of Guangdong Province, Guangzhou 510800, China

  • Online:2025-09-26 Published:2025-11-15
  • Supported by:
    Supported by the Project of China Geological Survey (DD20240090, DD20221712, DD20230066, DD20242659) and the National Natural Science Foundation of China (40776036)

摘要:

管事平顶海山地理位置处于南海17°N残留扩张脊附近,且东临马尼拉海沟。作为南海中央海盆最大的平顶海山,海山范围内的拖网岩石样品辉石40Ar/39Ar测年和全岩测年结果分别为(32.3±0.5) Ma和(28.9±1.9) Ma,指示其可能为南海中央海盆年龄最老的海山,这与当前主流研究的南海海盆扩张时间框架(约23.6 Ma)并不一致;且岩石样品全岩分析结果为MORB(mid-ocean ridge basalt)型大洋斜长花岗岩,使得管事平顶海山可能成为进一步认识南海海盆演化历史的重要研究区域。经初步测量得到岩石样品的密度在2.757 3~2.941 6 g/cm3之间,中位数为2.846 5 g/cm3。构建了跨管事平顶海山的多道地震地层速度场,对时间域地震剖面解释资料进行时深转换得到深度域沉积基底结构,结合同测线重力资料开展重震联合建模试验,通过对多种建模方案的分析比较,认为管事平顶海山及地壳平均密度在2.70~2.75 g/cm3之间,不排除海山南部局部区域可能存在密度大于2.80 g/cm3的岩体,海山及地壳平均密度高于南海中央海盆停止扩张后的海山(2.60~2.70 g/cm3),低于洋壳下地壳辉长岩(2.80~2.90 g/cm3)。综合考虑海山及地壳平均密度、多道地震成像、平顶海山形成原理,认为管事平顶海山可能是南海中央海盆海底扩张期间板内海山演化的产物。要解决板内海山演化过程中大洋斜长花岗岩如何形成的问题,需要探索更为合理的构造模式。


关键词: 管事平顶海山, 南海中央海盆, 重震联合建模, 大洋斜长花岗岩, 板内海山

Abstract:

As the oldest seamount and the biggest guyot found in the South China sea (SCS) central basin, Guanshi guyot is located on the 17°N fossil spreading center near the Manila trench. The dredged plagiogranite sample on Guanshi guyot shows trace element and isotopic composition similar to those of mid-oceanic ridge basalts (MORB), and its pyroxene and whole-rock 40Ar/39Ar dating yields ages of (32.3±0.5) Ma and (28.9±1.9) Ma, which is inconsistent with popular research acquired from marine magnetic anomalies identifying (~23.6 Ma). So further study is required to inspect the opening history of SCS central basin. The density of the dredged plagiogranite sample is measured for many times, which ranges from 2.757 3 to 2.941 6 g/cm3, and the median density is 2.846 5 g/cm3. The stratum velocity field originated from multi-channel seismic (MCS) data is used to transform the time-domain MCS interpreting data into the depth-domain. By creating many crust density models across Guanshi guyot with constraint of the depth-domain sediment basement and gravity anomalies, we infer that the most possible internal density of Guanshi guyot  mainly ranges from 2.70 to 2.75 g/cm3, higher than the average density of younger seamounts with SCS central basin (2.60-2.70 g/cm3), and lower than the average density of gabbro from lower oceanic crust (2.80-2.90 g/cm3). To be precise, higher density (>2.80 g/cm3) rock which can be drilled in the local area in the southern part of Guanshi guyot can’t be excluded in this study. Comprehensive considering the crust density models across Guanshi guyot, MCS interpreting data, and life cycle of seamount, we infer that Guanshi guyot is an intraplate seamount (or oceanic island) during the seafloor spreading period of SCS central basin. Further studies have to be done to understand the relationship between dredged plagiogranite sample and Guanshi guyot. For better understanding the origin of the plagiogranite during the evolution of intraplate seamount, a more reasonable tectonic model should be explored.

Key words: Guanshi guyot, the South China sea central basin, joint modeling of gravity and reflection seismic data, oceanic plagiogranite, intraplate seamount

中图分类号: 

  • P631
No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!