首页> 外文期刊>Journal of Petroleum Science & Engineering >A fracture identification method for low-permeability sandstone based on R/S analysis and the finite difference method: A case study from the Chang 6 reservoir in Huaqing oilfield, Ordos Basin
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A fracture identification method for low-permeability sandstone based on R/S analysis and the finite difference method: A case study from the Chang 6 reservoir in Huaqing oilfield, Ordos Basin

机译:基于R / S分析的低渗透砂岩骨折识别方法及有限差分法:华庆油田昌6水库的案例研究,鄂尔多斯盆地

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摘要

Low-permeability reservoirs are characterized by poor physical properties, strong heterogeneity and natural fractures. Accurate identification of the fracture distribution is of great significance for the exploration and development of low-permeability reservoirs. Field outcrop, core and imaging log analyses show that stratabound vertical and high-angle structural fractures are the main types of fractures in the Chang 6 formation in the Huaqing oilfield. The fracture orientations include NE-SW, NNE-SSW, NW-SE, and NNW-SSE. The NE-SE-oriented fractures formed in the Himalayan stage, while the NW-SE fractures formed in the Yanshan period, and the other fractures derived from the fracturing in the Yanshan period during the Himalayan tectonic activity. The traditional resealed range (R/S) analysis method is upgraded by introducing the finite difference (FD) method in this research, and the newly proposed method is called the R/S-FD method. Core data show that the R/S-FD method can accurately recognize vertical fractures and high-angle fractures. By comparing the fracture development section on the imaging log, it is found that fractures discrimination parameter F has a good linear relationship with both the fracture linear density and the fracture surface density. This method is verified by dynamic data (water injection profiles) and static data (image logging), and the results show that the recognition error is eliminated when the lower limit of F is 0.5, resulting in a crack identification accuracy of 76.9%. Combining the R/S and finite difference methods reduces the artificial recognition error of the traditional R/S method, and the recognition process is automated and intelligent. The R/S-FD method can be used in combination with multiple logging curves. A high fracture recognition accuracy could be accomplished by using this proposed method with only conventional logging curves, of great practical significance to some low-permeability oilfields that lack image logging data.
机译:低渗透储层的特点是物理性质差,异质性强,自然骨折。准确的骨折分配识别对于低渗透油藏的勘探和发展具有重要意义。现场露天,核心和成像日志分析表明,斯特拉特·垂直和高角度结构骨折是华庆油田中常数6形成的主要类型的骨折。裂缝取向包括NE-SW,NNE-SSW,NW-SE和NNW-SSE。在喜马拉雅阶段形成的Ne-Se导向骨折,而在燕山期间形成的NW-SE骨折,以及在喜马拉雅山区构造活动期间燕山时期的压裂源于燕山时期的压裂。通过在本研究中引入有限差异(FD)方法来升级传统的重新密封范围(R / S)分析方法,新的方法称为R / S-FD方法。核心数据表明,R / S-FD方法可以准确地识别垂直骨折和高角度裂缝。通过将裂缝开发部分与成像日志进行比较,发现裂缝辨别参数F与断裂线密度和断裂表面密度的良好线性关系。该方法通过动态数据(水注入轮廓)和静态数据(图像记录)验证,结果表明,当F的下限为0.5时,消除了识别误差,导致裂纹识别精度为76.9%。结合R / S和有限差分方法降低了传统R / S方法的人工识别误差,识别过程是自动化的和智能化。 R / S-FD方法可以与多个测井曲线组合使用。通过使用这种提出的测井曲线使用这种提出的方​​法可以实现高裂缝识别精度,对一些缺少图像记录数据的一些低渗透性油田具有很大的实际意义。

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