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A fast identification method based on the typical geophysical differences between submarine shallow carbonates and hydrate bearing sediments in the northern South China Se a

机译:基于华南北部海底浅层碳酸盐岩与含水合物沉积物典型地球物理差异的快速识别方法

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摘要

Bottom simulating reflector(BSR)has been recognized as one of the indicators of gas hydrates.However,BSR and hydrate are not one-to-one correspondence.In the Xisha area of South China Sea(SCS),carbonate rocks wildly develop,which continuously distribute parallel to the seafloor with high amplitude on seismic sections,exhibiting reflections similar to BSRs in the Shenhu area nearby.This phenomenon causes some interference to hydrates identification.In this paper,the authors discussed the typical geophysical differences between carbonate rocks and hydrates,indicating that the main difference exists in relationship between porosity and velocity,causing different amplitude versus offset(AVO)characters.Then the authors proposed a new model assuming that the carbonates form the matrix and the hydrate fill the pore as a part of the matrix.The key modeling parameters have been optimized constrained by Pvelocities and S-velocities simultaneously,and the model works well both for carbonate rock and gas hydrate bearing sediments.For quantitative identification,the authors calculated the velocities when carbonates and hydrates form the matrix together in different proportions.Then they proposed a carbonate and hydrate identification template(CHIT),in which the possible hydrate saturation(PHS)and possible carbonate content(PCC)can be both scaled out for a group of sample composed by P-velocity and S-velocity.If PHS is far larger than PCC,it is more likely to be a hydrate sample because carbonates and hydrates do not coexist normally.The real data application shows that the template can effectively distinguish between hydrates and carbonate rocks,consequently reducing the risk of hydrate exploration.
机译:底部模拟反射器(BSR)已被认为是天然气水合物指标之一。然而,BSR和水合物不是一对一的通信。在南海(SCS)的西沙地区,碳酸盐岩石疯狂发展,这连续分布于海底的海底,在地震部分上具有高振幅,表现出与附近的学神区域类似的反射。这一现象导致水合物识别的一些干扰。本文讨论了碳酸盐岩和水合物之间的典型地球物理差异,表明主要差异存在于孔隙度和速度之间的关系中,导致不同的幅度与偏移(AVO)字符。该作者提出了一种新模型,假设碳酸盐形成基质,水合物作为基质的一部分填充孔。通过PVelocities和S速度同时优化关键建模参数,并且模型适用于碳酸盐岩和天然气水合物沉积物。对于定量鉴定,作者以不同的比例一起形成碳酸盐和水合物在一起时速度计算速度。它们提出了碳酸盐和水合物鉴定模板(Chit),其中可能的水合物饱和度(pH)和可能的碳酸盐含量(PCC)都可以缩小一组由P速度和S-速度组成的样品。如果pHS远大于PCC,则更有可能是水合物样品,因为碳酸盐和水合物不共存通常。实际数据应用表明,模板可以有效地区分水合物和碳酸盐岩,因此降低了水合物勘探的风险。

著录项

  • 来源
    《中国地质(英文)》 |2020年第001期|P.16-27|共12页
  • 作者单位

    Guangzhou Marine Geological Survey China Geological Survey Ministry of Natural Resources Guangzhou 510760 ChinaNatural Gas Hydrate Engineering Technology Center China Geological Survey Ministry of Natural Resources Guangzhou 510760 China;

    Guangzhou Marine Geological Survey China Geological Survey Ministry of Natural Resources Guangzhou 510760 ChinaNatural Gas Hydrate Engineering Technology Center China Geological Survey Ministry of Natural Resources Guangzhou 510760 China;

    Guangzhou Marine Geological Survey China Geological Survey Ministry of Natural Resources Guangzhou 510760 China;

    Southern Marine Science and Engineering Guangdong Laboratory Guangzhou 511458 China;

    Guangzhou Marine Geological Survey China Geological Survey Ministry of Natural Resources Guangzhou 510760 ChinaSouthern Marine Science and Engineering Guangdong Laboratory Guangzhou 511458 China;

    Natural Gas Hydrate Engineering Technology Center China Geological Survey Ministry of Natural Resources Guangzhou 510760 China;

    Guangzhou Marine Geological Survey China Geological Survey Ministry of Natural Resources Guangzhou 510760 ChinaNatural Gas Hydrate Engineering Technology Center China Geological Survey Ministry of Natural Resources Guangzhou 510760 China;

    Guangzhou Marine Geological Survey China Geological Survey Ministry of Natural Resources Guangzhou 510760 ChinaNatural Gas Hydrate Engineering Technology Center China Geological Survey Ministry of Natural Resources Guangzhou 510760 China;

    Natural Gas Hydrate Engineering Technology Center China Geological Survey Ministry of Natural Resources Guangzhou 510760 ChinaSouthern Marine Science and Engineering Guangdong Laboratory Guangzhou 511458 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 TN9;
  • 关键词

    Gas hydrate; Carbonate; Rock physics; Fast identification; South China Sea; Gas hydrate exploration engineering;

    机译:天然气水合物;碳酸盐;岩石物理学;快速识别;南海;天然气水合物勘探工程;
  • 入库时间 2022-08-19 04:45:45
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