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首页> 外文期刊>Marine and Petroleum Geology >Identification of shallow gas by seismic data and AVO processing: Example from the southwestern continental shelf of the Ulleung Basin, East Sea, Korea
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Identification of shallow gas by seismic data and AVO processing: Example from the southwestern continental shelf of the Ulleung Basin, East Sea, Korea

机译:地震数据和AVO处理识别浅气:来自乌莱隆盆地,东海,韩国西南大陆架的示例

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摘要

This study investigates the evidence of shallow gas from a newly collected dataset comprising 2D multi-channel seismic (MCS), single-channel seismic (SCS), Chirp sub-bottom profiler (SBP), and multi-beam echo sounder (MBES) data from the southwestern continental shelf of the Ulleung Basin, East Sea, Korea. Various indicators of shallow gas were identified in this part the shelf, including seismic chimneys, acoustic flares in the water column, pockmarks, enhanced reflections, and acoustic blanking. Seismic chimneys, which are related to fluid leakage within the subsurface, are characterized weak to high amplitude, upturned or concave-upward internal reflection with polarity reversal in MCS section, whereas they are faint or transparent on SCS section with 700 Hz and Chirp SBP sections with 3.5 kHz frequency. Acoustic flares, which are diagnostics of active gas venting, were detected only on the Chirp SBP sections. There is also evidence of small-scale depressions, immediately below the acoustic flares; these are interpreted as formed by the sudden explosion of gas. Enhanced reflections (similar to 3 km-long) concordant with stratification are observed at different levels. Acoustic blanking anomalies, caused by absorption of acoustic energy due to the presence of gas, are seen in the range 50-200 ms TWT below seabed. Amplitude versus offset (AVO) analysis indicates the presence of free gas ca. 350 ms TWT below sea surface using the MCS dataset recorded by a 600 m-long streamer cable. The AVO cross-section shows that the lower repetitive signals in the MCS data are due to the gas plume, not lithological contrast. Our study highlights that AVO analysis is an extremely useful tool for identifying free gas, helping to discriminate water-gas contacts and bright events among the chaotic signals on the MCS data.
机译:本研究调查了来自包括2D多通道地震(MCS),单通道地震(SCS),ChirP次底分析器(SBP)和多光束回声发声器(MBES)数据的新收集的数据集中的浅气体的证据从蔚蓝盆地,东海,韩国的西南大陆架。在这部分中鉴定了各种浅气体的浅气体,包括地震烟囱,水柱中的声耀斑,麻木,增强的反射和声学消隐。与地下内的流体泄漏有关的地震烟囱,其特征在于MCS部分的极性反转弱到高振幅,上升或凹面上的内部反射,而它们在SCS部分上微弱或透明,具有700Hz和Chirp SBP部分3.5 kHz频率。仅在Chirp SBP部分上检测为活性气体通风的诊断的声学耀斑。还有小规模凹陷的证据,紧邻声法耀斑;这些被解释为突然爆炸的气体爆炸。在不同的水平下观察到具有分层的增强的反射(类似于3公里长)的协调。由于气体存在引起的声学能量引起的声学消隐异常在海底下方50-200毫秒的范围内。振幅与偏移(AVO)分析表明了空气的存在。 350 MS TWT下方海面,使用由600米长的飘带电缆记录的MCS数据集。 AVO横截面表明MCS数据中的较低的重复信号是由于气体羽流,而不是岩性对比。我们的研究突出显示AVO分析是一种非常有用的工具,用于识别自由气体,有助于区分水气接触和在MCS数据上的混沌信号之间的明亮事件。

著录项

  • 来源
    《Marine and Petroleum Geology》 |2020年第1期|共14页
  • 作者单位

    Korea Inst Geosci &

    Mineral Resources KIGAM Petr &

    Marine Res Div 124 Gwahak Ro Daejeon 34132 South Korea;

    Korea Inst Geosci &

    Mineral Resources KIGAM Petr &

    Marine Res Div 124 Gwahak Ro Daejeon 34132 South Korea;

    Korea Inst Geosci &

    Mineral Resources KIGAM Petr &

    Marine Res Div 124 Gwahak Ro Daejeon 34132 South Korea;

    Korea Inst Geosci &

    Mineral Resources KIGAM Petr &

    Marine Res Div 124 Gwahak Ro Daejeon 34132 South Korea;

    Korea Inst Geosci &

    Mineral Resources KIGAM Global Cooperat Div 124 Gwahak Ro Daejeon 34132 South Korea;

    Korea Inst Geosci &

    Mineral Resources KIGAM Petr &

    Marine Res Div 124 Gwahak Ro Daejeon 34132 South Korea;

    Korea Inst Geosci &

    Mineral Resources KIGAM Petr &

    Marine Res Div 124 Gwahak Ro Daejeon 34132 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋资源与开发;
  • 关键词

    Shallow gas; Polarity reversal; Chimney; Amplitude versus offset (AVO);

    机译:浅气;极性逆转;烟囱;振幅与偏移(AVO);

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