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3D geological modeling of fractured volcanic reservoir bodies in Block DX18 in Junggar Basin, NW China

机译:西北准Jung尔盆地DX18区块火山岩储层的3D地质建模

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The DX18 reservoir is composed of four mutually superimposed volcanic bodies and is a pore-fracture dual-media igneous reservoir. The fractures inside the volcanic bodies are mainly structural fractures with continuous distribution in space, and the continuity of fracture development positions is poor both vertically and horizontally. For the preparation of reservoir development scheme and further improving production well pattern, the fracture development and distribution characteristics are studied by 3D geological modeling. In view of the complexity of spatial structure of volcanic bodies, a body-controlled structure modeling is applied to describe the entire 3D shape of volcanic bodies. By integrating seismic data and logging interpretation, the relationship between various seismic attributes and fracture development zone is analyzed. Based on the analysis result above, a seismic-constrained modeling method which integrates the well data and seismic data is applied to establish the 3D property model for volcanic bodies. The fracture porosity model is constrained by seismic porosity data volume created by neural network processing, and the fracture density model is constrained by seismic dip volume. The later drilling and production performance proved that the main fracture development zones inside the volcanic bodies are accurately predicted and described by the seismic-constrained geological model and the coincidence ratio reaches 93.8%.
机译:DX18储集层由四个相互叠置的火山体组成,是一种孔隙裂缝双介质火成岩储集层。火山体内的裂缝主要是在空间上连续分布的结构性裂缝,裂缝发育位置在水平和垂直方向的连续性都很差。为了准备油藏开发方案并进一步改善生产井网,通过3D地质建模研究了裂缝发育和分布特征。考虑到火山岩体空间结构的复杂性,应用了一个受人体控制的结构模型来描述火山岩体的整个3D形状。通过整合地震数据和测井解释,分析了各种地震属性与裂缝发育带之间的关系。基于以上分析结果,结合井数据和地震数据的地震约束建模方法,被用于建立火山岩体的3D特性模型。裂缝孔隙度模型受神经网络处理创建的地震孔隙度数据量约束,而裂缝密度模型受地震倾角体积约束。后来的钻探和生产性能证明,利用地震约束地质模型可以准确地预测和描述火山体内的主要裂缝发育带,符合率达到93.8%。

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