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Application of 3D Reservoir Geological Model on Es1 Formation, Block Nv32, Shenvsi Oilfield, China

机译:3D储层地质模型在中国深部寺Nv32区块ES1组中的应用

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摘要

Three-dimensional geological modeling of reservoirs is an essential tool to predict reservoir performance and improve the understanding of reservoir uniqueness in Es1 formation. The paper focuses on the use of petrel software to build three-dimensional reservoir geological model which characterizes and assesses block Nv32 that located in the west of the Shenvsi oilfield in the south of Cangzhou city, Hebei province of China, and has an oil-bearing area of 1.4 km2. This study is depending on integration data from well logs of 22 wells which provided from geology, geophysics, and petrophysics to identify and provide precise depict of the subsurface internal structure and the reservoir heterogeneity. Input data was used to build the structural model, sedimentary facies model, petrophysical properties (porosity, permeability, saturation, and N/G model, and finally to determine the reservoir volume. The lithological facies were simulated using the assigned value method. Moreover, Petrophysical properties (Porosity, permeability, oil saturation and net to gross) were constructed for each zone using the Sequential Gaussian Simulation method to guide the distribution of petrophysical properties of Es1 formation, block Nv32. Statistical analysis of the porosity, permeability, oil saturation and N/G model present that the porosity occurrence distribution is mainly concern between 0.2% - 36.39% of block Nv32 with an average porosity value of 17.5%, permeability between 0.017 mD to 974.8 mD, having an average permeability of 59.44 mD, oil saturation between 0.00 to 0.95 having an average value of 0.22, and N/G is mainly concentrated between 0.01 to 1.00 within an average value of 0.61. This research has indicated the reliability of the three-dimensional model technique as a suitable tool to provide a sufficient understanding of petrophysical distribution. The south-western and north-western indicate that oilfield is very promising an exploratory well should be drilled to find out the thickness and size of the reservoir.
机译:水库的三维地质模型是预测水库性能的基本工具,提高ES1形成中储层唯一性的理解。本文侧重于使用Petrel软件来构建三维水库地质模型,其特征和评估位于中国河北省沧州市南部的神道油田西部的块NV32,并具有含油面积1.4公里。本研究依赖于从地质,地球物理学和岩石物理学提供的22个井的井日志的集成数据,以识别和提供地下内部结构和储层异质性的精确描述。输入数据用于构建结构模型,沉积相模型,岩石物理性质(孔隙度,渗透率,饱和度和N / G型号,最后确定储层体积。使用指定的值方法模拟岩性相。而且,使用顺序高斯模拟方法为每个区域构建岩石物理(孔隙,渗透性,油饱和度和净批量),以指导ES1形成的岩石物理性质的分布,阻断NV32。孔隙率,渗透性,油饱和度和N / g模型表明孔隙率发生分布主要涉及嵌段NV32的0.2%-36.39%,平均孔隙率值为17.5%,渗透率为0.017md至974.8md,平均渗透率为59.44md,饱和度平均值0.22,N / g的0.00至0.95主要浓缩0.01至1.00,平均值为0.61。这个研究表明了三维模型技术的可靠性作为一种合适的工具,以提供足够了解岩石物理分布。西南和西北部表明油田非常有前途,应该钻井井,以找出水库的厚度和尺寸。

著录项

  • 来源
    《长江油气(英文版)》 |2020年第002期|P.54-72|共19页
  • 作者单位

    School of Petroleum Engineering China University of Petroleum (East China) Qingdao China;

    School of Petroleum Engineering China University of Petroleum (East China) Qingdao China;

    School of Petroleum Engineering China University of Petroleum (East China) Qingdao China;

    School of Petroleum Engineering China University of Petroleum (East China) Qingdao ChinaDepartment of Petroleum Technology University of Karachi Karachi Pakistan;

    College of Computer Science China University of Geosciences Wuhan China;

    Faculty of Earth Resources China University of Geosciences Wuhan China;

    Faculty of Earth Resources China University of Geosciences Wuhan China;

    School of Chemistry and Environment South China Normal University Guangzhou China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 中国工业经济;
  • 关键词

    3D Reservoir Geological Model; Es1 Formation; Block Nv32; Structural Model; Petrophysical Model;

    机译:3D储层地质模型;Es1组;Nv32区块;结构模型;岩石物理模型;
  • 入库时间 2022-08-19 04:45:44
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