首页> 外文期刊>石油勘探与开发:英文版 >Breakthrough and significance of technology on internal multiple recognition and suppression: A case study of Ordovician Dengying Formation in Central Sichuan Basin,SW China
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Breakthrough and significance of technology on internal multiple recognition and suppression: A case study of Ordovician Dengying Formation in Central Sichuan Basin,SW China

机译:内部多重识别与抑制技术的突破与意义-以四川盆地中部奥陶纪灯影组为例

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摘要

Aimed at the serious mismatch between the synthetic seismogram and the real data of the Sinian Dengying Formation and the Lower Cambrian Qiongzhusi Formation in the GS1 well area, Sichuan Basin, four aspects of internal multiples identification and suppression were studied. Firstly, a forward modeling method of internal multiple based on reflectivity method was developed. Through eight means such as post-stack and pre-stack forward modeling of internal multiple, and combined with VSP data, it was demonstrated that well-seismic mismatching in this area is mainly caused by the internal multiples. Secondly, the simulation results of internal multiple forward modeling using the stripping method combined with the internal multiple periodicity analysis showed that four groups of overburden layers with velocity inversion were the main sources of the internal multiples. Thirdly, by identifying internal multiples accurately and using suppression technology based on pattern recognition, an effective and replicable suppression scheme suitable for these formations was established, overcoming the difficulty of the small speed difference between internal multiple and primary reflection wave which makes the current methods ineffective. Fourthly, an evaluation index of internal multiple intensity was proposed, and the internal multiple intensity distribution diagram of the fourth member of Dengying Formation(Deng-4 Member) in Gaoshiti-Moxi area was compiled. This scheme greatly improved the well-seismic match, and the strata sedimentary features are clearer on the new seismic profiles with higher lateral resolution, with which smaller faults and geological anomalies can be identified and a series of the bead reflections in the Dengying Formation are first discovered. The coincidence rate of reservoir prediction based on seismic waveform classification was increased from 60% to 90%, and that of hydrocarbon detection based on dual phase medium theory was increased from 70% to 100%.
机译:针对四川盆地GS1井区震旦系灯影组和下寒武统Qi竹寺组的合成地震图与真实资料严重不匹配的问题,研究了内部多重识别和压制的四个方面。首先,提出了一种基于反射率法的内部多次正演建模方法。通过内部倍数的叠后和叠前正演等八种方法,并结合VSP数据,证明该区域的良好地震失配主要由内部倍数引起。其次,利用剥离方法结合内部多重周期性分析进行内部多重正演模拟的结果表明,四组速度反转的覆盖层是内部多重的主要来源。第三,通过精确识别内部倍数并使用基于模式识别的抑制技术,建立了适用于这些构造的有效且可复制的抑制方案,克服了内部倍数与主反射波之间速度差小的问题,这使现有方法无效。 。第四,提出了内部多重强度评价指标,编制了高石梯—磨溪地区灯影组第四段(邓四段)内部多重强度分布图。该方案极大地改善了地震的匹配性,在具有更高横向分辨率的新地震剖面上,地层沉积特征更加清晰,从而可以识别出较小的断层和地质异常,并且首先在灯影组进行了一系列的珠子反射。发现。基于地震波形分类的储层预测符合率从60%提高到90%,基于双相介质理论的油气藏预测符合率从70%提高到100%。

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  • 来源
    《石油勘探与开发:英文版》 |2018年第006期|P.1023-1035|共13页
  • 作者单位

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [2]Exploration and Development Research Institute,Southwest Oil & Gas Field Company, PetroChina,Chengdu 610041, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [2]Exploration and Development Research Institute,Southwest Oil & Gas Field Company, PetroChina,Chengdu 610041, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [2]Exploration and Development Research Institute,Southwest Oil & Gas Field Company, PetroChina,Chengdu 610041, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

    [1]Research Institute of Petroleum Exploration & Development,PetroChina,Beijing 100083, China;

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  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 石油、天然气;
  • 关键词

    internal multiple; reflectivity method forward modeling; well-seismic match; velocity inversion; seismic waveform classification; hydrocarbon detection; Sichuan Basin; Sinian Dengying Formation;

    机译:内部多重反射率正演模拟地震匹配速度反演地震波形分类油气探测四川盆地震旦系灯影组;
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