基于非结构化网格的裂缝性油藏建模与数值模拟一体化新技术应用——以JZS潜山油藏为例

Zuobin Lv, Chunliang Huo, Lizhen Ge, Jing Xu, Zhiqiang Zhu
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引用次数: 0

摘要

JZS油田为近海变质岩裂缝性潜山油田。它于2010年7月投入开发。油田生产总体形势良好,但也暴露出一些问题。主要表现在:裂缝空间分布的非均质性难以准确表征;在裂缝性储层数值模拟中,角点网格系统无法准确描述和预测流体窜流的裂缝流动。为解决上述问题,本文提出了一种基于非结构网格的裂缝性储层地质建模与数值模拟综合研究新方法。这种方法有三个关键方面。(1)将露头测量数据与井点信息和地震属性相结合,建立了多尺度(大、中、小)离散裂缝体系。在叠后三维地震数据的基础上,提取蚂蚁属性,将蚂蚁体结果转化为大尺度裂缝;利用基于叠前反演的方位各向异性属性,结合大型裂缝的分布方向,建立中等规模裂缝;基于露头观测、成像测井资料和叠前反演方位各向异性属性,根据大尺度和小尺度裂缝累计频率与裂缝长度的幂律分布关系,采用DFN技术构建小尺度裂缝。(2)对于多尺度裂缝,采用非结构化网格划分技术建立符合双介质非均质性的三维模型。本文提出了一种分层三角棱镜网格生成技术。基于非结构网格,建立了多尺度裂缝模型。(3)采用集合卡尔曼滤波(EnKF)自动历史拟合技术对研究区储层进行了三介质数值模拟,以大尺度裂缝为约束,建立了全三维非结构化网格模型,离散裂缝模型能准确描述裂缝系统及基质与裂缝之间的耦合关系。经过多次参数调整后,指标的符合率和拟合精度都比以前有所提高。基于大尺度裂缝离散化处理的多尺度离散裂缝模型,对中小尺度裂缝进行等效介质处理,保持了大尺度离散裂缝模型的渗流特征,保证了计算效率。结果表明,新方法在计算速度上有明显优势,拟合效果更接近实际生产性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of an Integrative New Technique on Modeling and Numerical Simulation for Fractured Reservoir Based on Unstructured Grid: A Case Study of JZS Buried Hill Reservoir
JZS oilfield is an offshore metamorphic rock fractured buried hill oilfield. It was put into development in July 2010. The overall production situation of the oilfield is good, but some problems have been exposed. The main performance is as follows: It is difficult to accurately characterize the heterogeneity of fracture space distribution; In the numerical simulation of fractured reservoir, it is impossible to accurately describe and predict the fracture flow of fluid channeling in corner point grid system. In order to solve the above problems, this study presents a new integrated fractured reservoir geological modeling and numerical simulation research method based on unstructured grid. There are three key aspects to this method. (1) The multi-scale (large, middle and small) discrete fracture system is established by combining outcrop measurement data with well point information and seismic attributes. On the basis of post-stack 3D seismic data, ants attributes are extracted, then the ant body results are transformed into large scale fractures; Using azimuth anisotropy attribute based on pre-stack inversion and combining the distribution orientation of large-scale fractures, the middle-scale fractures are established; According to the power law distribution relation between the cumulative frequency and the fracture length of large scale and small scale which based on outcrop observation, the imaging logging data and pre-stack inversion azimuth anisotropy attribute, small scale fractures are constructed by DFN technology.(2) For multi-scale fractures, the unstructured grid division technique is used to build a 3D model that conforms to the heterogeneity of dual media. In this study, a layered triangular prism grid generation technique is proposed. It is used to establish model of multi-scale fractures based on unstructured grid. Using large-scale fractures as a constraint, full 3D unstructured grid model is set up, and the discrete fracture model can accurately describe the fracture system and the coupling relationship between matrix and the fracture;(3)The triple-medium numerical simulation of the reservoir in the study area is carried out by using the automatic history fitting technology of ensemble kalman filter (EnKF). After several parameter adjustments, both the coincidence rate of the index and the fitting precision are higher than before. Multi-scale discrete fracture model based on the large-scale fractures discretization processing, equivalent medium processing to middle and small scale fractures, keeps the seepage characteristic of the large-scale discrete fractures model and ensures the calculation efficiency. The results show that the new method has obvious advantages in computing speed and that the fitting effect is closer to the actual production performance.
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