首页> 外文期刊>Journal of Seismic Exploration >INTEGRATED GEOSTATISTICAL SEISMIC INVERSION TO PREDICT A THIN SANDSTONE RESERVOIR UNDER FAN DELTA SEDIMENTARY ENVIRONMENT: A CASE STUDY IN THE JUNGGAR BASIN
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INTEGRATED GEOSTATISTICAL SEISMIC INVERSION TO PREDICT A THIN SANDSTONE RESERVOIR UNDER FAN DELTA SEDIMENTARY ENVIRONMENT: A CASE STUDY IN THE JUNGGAR BASIN

机译:范三角洲沉积环境下的综合地震动反演薄砂岩储层-以准GAR尔盆地为例。

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摘要

Well drilling proved that the Permian's rough grained sandstone reservoir in the centre of Junggar basin was not fully controlled by structure. This type of reservoir is traditionally difficult to identify on conventional seismic data because of the lack of an effective workflow to detect lithology and fluid using real logs and seismic data. In this case study of PetroChina's Xinjiang oilfield, China we present an effective workflow for describing the spatial distribution of sandstone reservoirs and for the feasibility of fluid detection, explaining the reasons why the wells drilled within the higher area of the structure produce water while the other wells located within the lower area produce oil.Forward models derived from petrophysics and rock physics defined the resolution of deterministic inversion, the AVO response of the real reservoir sequence, which inversion method and which elastic parameter were most sensitive to lithology and fluid changes under the real geological environment. In addition, they provide a benchmark for seismic data quality. Higher-resolution reservoir characterization of geostatistical inversion gave the sandstone spatial distribution, the reservoir discontinuity and the horizontal thickness. This integrated workflow guarantees that the final geological map is meaningful not only in terms of elastic parameters, but also in terms of geology, petrophysics, geophysics and engineering.
机译:钻井证明,准gar尔盆地中部的二叠系粗粒砂岩储层不受结构控制。由于缺乏使用实际测井和地震数据检测岩性和流体的有效工作流程,传统上难以在常规地震数据上识别这种类型的储层。在本次中国石油新疆油田的案例研究中,我们提出了一种有效的工作流程,用于描述砂岩储层的空间分布和流体探测的可行性,并解释了在该结构较高区域中钻探的井产生水而其他井的原因。从岩石物理学和岩石物理学得到的正演模型定义了确定反演的分辨率,实际油藏层序的AVO响应,哪种反演方法和哪个弹性参数对岩性和流体变化最敏感。真实的地质环境。此外,它们为地震数据质量提供了基准。地统计学反演的高分辨率储层特征给出了砂岩的空间分布,储层的不连续性和水平厚度。这种集成的工作流程确保最终的地质图不仅在弹性参数方面有意义,而且在地质,岩石物理学,地球物理学和工程方面也有意义。

著录项

  • 来源
    《Journal of Seismic Exploration》 |2014年第2期|177-199|共23页
  • 作者单位

    Laboratory for Integration of Geology and Geophysics Research, China University of Petroleum,Beijing 102249, P.R. China;

    Laboratory for Integration of Geology and Geophysics Research, China University of Petroleum,Beijing 102249, P.R. China;

    PetroChina Xinjiang Research Institute of Exploration and Production, 29 Junggar Road, KeLamay 834000, P.R. China;

    Jason, CGG, A1207-1209, Ocean International Center, 55 East 4th-Ring Road, Chaoyang District,Beijing 100025, P.R. China;

    Jason, CGG, A1207-1209, Ocean International Center, 55 East 4th-Ring Road, Chaoyang District,Beijing 100025, P.R. China;

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

    petrophysics; rock physics; forward modelling; geostatistical inversion;

    机译:岩石物理学岩石物理学;前向建模;地统计反演;

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