ISSN 1673-8217 CN 41-1388/TE
主管:中国石油化工集团有限公司 主办:中国石油化工股份有限公司河南油田分公司
欧阳阳, 谢俊, 王金凯, 王栋, 董运晓. 2017: 最大熵谱分析技术在大安油田J南区块小层划分与对比中的应用. 石油地质与工程, 31(02): 28-32+37+132.
引用本文: 欧阳阳, 谢俊, 王金凯, 王栋, 董运晓. 2017: 最大熵谱分析技术在大安油田J南区块小层划分与对比中的应用. 石油地质与工程, 31(02): 28-32+37+132.
OU Yangyang, . 2017: INPEFA technique in stratigraphic division and correlation in J south block of Da'an oilfield. Petroleum Geology and Engineering, 31(02): 28-32+37+132.
Citation: OU Yangyang, . 2017: INPEFA technique in stratigraphic division and correlation in J south block of Da'an oilfield. Petroleum Geology and Engineering, 31(02): 28-32+37+132.

最大熵谱分析技术在大安油田J南区块小层划分与对比中的应用

INPEFA technique in stratigraphic division and correlation in J south block of Da'an oilfield

  • 摘要: 在松辽盆地南部大安油田J南区块扶杨地层对比与划分的研究中,常规测井曲线分层标志不明显。为提高小层划分和对比的准确性,以高分辨率层序地层学理论为基础,利用最大熵谱分析技术,对自然伽马曲线进行最大熵谱分析(INPEFA)处理。INPEFA曲线能够显示通常在原始测井曲线中无法显示的趋势和模式,提高了层序地层划分的纵向分辨率,清楚地识别出研究区泉四段和泉三段顶底界面及各油组界面。通过连井对比,将扶杨油层划分为1个长期基准面旋回,6个中期基准面旋回和21个短期基准面旋回,建立了扶杨油层短期旋回级别的高分辨率等时地层格架,为储集层综合评价和精细三维地质建模方法的选取及模型的精度提供了地质依据。

     

    Abstract: In the study of the stratigraphic division and correlation in south J block of Da'an oilfield,the hierarchical mark was not obvious in conventional well logging curve.In order to improve the accuracy and precision of the stratigraphic division and correlation,the maximum entropy spectrum analysis technology could be used to conduct INPEFA processing on GR curves to get the INPEFA curves,which can show trends and patterns that are not shown in the original log curve to enhance the vertical resolution of sequence stratigraphic division and clearly identify different levels of sequence interface.The Fuyang reservoir has been divided into one long-term base-level cycles,six mid-term baselevel cycles and twenty-one short-term base-level cycles through the multi-well correlation.On the basis of sequence stratigraphic classification,the stratigraphic framework of the Fuyang reservoir was established,which set a solid foundation for the method selection of comprehensive evaluation of reservoir and fine 3D geological modeling.

     

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