海洋天然气水合物系统动态调整的异常特征及主控因素
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本文为国家重点研发计划项目(编号 2023YFE0119900)、国家自然科学基金项目(编号 42376058,42276229)和中国海洋大学筑峰人才项目联合资助的成果


Anomalous features and controlling factors on the dynamic adjustment of marine gas hydrate system
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    摘要:

    似海底反射(bottom simulating reflectors, BSRs)是指示天然气水合物赋存深度的重要标识,已在全球多个海域研究中发现了千年时间尺度上天然气水合物系统的动态调整,地震剖面上的典型表征是存在多种类型BSR及埋深变化。本文对比分析全球典型海域BSR的地震反射特征及测井响应差异,提出BSR调整及发育的主控因素为:① 冰期—间冰期旋回、快速沉积、逆冲- 褶皱与基底隆升,导致稳定带底界或BSR发生调整;② 构造活动释放的热流体导致BSR上移;③ 海底侵蚀作用、地层超压,导致BSR下移等;④ 重烃气体形成Ⅱ型水合物,甲烷水合物稳定带底界下部出现水合物与游离气共存层;⑤ 合适温度条件下细粒沉积物发生矿物相变,形成与水合物无关的双BSR;⑥ 局部热异常会导致同一水平地层从含天然气水合物向游离气变化,横向上出现极性反转,无BSR调整。不同因素导致的稳定带底界调整,会伴随着水合物的形成—分解—再形成的动态变化,导致地层内水合物- 游离气- 水的三相共存,同时伴随着多层游离气的复杂分布,在地震剖面上呈现出多种类型BSR,指示天然气水合物系统复杂性及其与游离气间的相互影响。

    Abstract:

    Bottom simulating reflectors (BSRs) are crucial indicators of gas hydrate occurrences. Seismic profiles from oceans worldwide reveal diverse BSR types and depths, demonstrating the dynamic adjustment of gas hydrate systems on millennial timescales. This study compares and analyzes the seismic reflection characteristics and logging responses of different BSR types. Several key factors contribute to BSR shifts: ① Fluctuations in sea level and seafloor temperature during glacial- interglacial cycles, coupled with rapid shallow sediment deposition, thrust folding, and basement uplift, can cause upward or downward BSR adjustments; ② Thermal fluid release from late tectonic activity can drive BSRs upward shift; ③ Submarine erosion and formation overpressure can lead to BSR downward shift; ④ Due to active heavy gas leakage from deep strata, structure II hydrate readily forms. This results in the coexistence of hydrate and free gas at the base of the gas hydrate stability zone (BGHSZ) for methane; ⑤ Double BSRs formed by mineral phase transitions are unrelated to gas hydrate in fine- grained sediments; ⑥ Local thermal anomalies can cause the transition from gas hydrate to free gas layer within the same horizontal layer, showing a horizontal polarity reversal without BSR adjustment. Therefore, the dynamic adjustment of the BGHSZ reflects the continuous interplay of gas hydrate formation, decomposition, and reformation, which shows the three- phase coexistence of hydrate- free gas- water and the multiple shallow gas distributions. This results in various types of BSRs observed on seismic profiles, indicating the complexity of gas hydrate systems and their interplay with free gas.

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王秀娟,王文录,靳佳澎,周吉林,匡増桂,胡高伟,张正一,李三忠.2024.海洋天然气水合物系统动态调整的异常特征及主控因素[J].地质学报,98(9):2541-2556.
WANG Xiujuan, WANG Wenlu, JIN Jiapeng, ZHOU Jilin, KUANG Zenggui, HU Gaowei, ZHANG Zhengyi, LI Sanzhong.2024. Anomalous features and controlling factors on the dynamic adjustment of marine gas hydrate system[J]. Acta Geologica Sinica,98(9):2541-2556.

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  • 收稿日期:2024-07-07
  • 最后修改日期:2024-08-22
  • 录用日期:2024-08-28
  • 在线发布日期: 2024-09-05