陈秀娟,罗兵,周晓,等. 基于岩石力学特征的海相页岩脆性测井评价−以川东红星地区吴二段为例[J]. 石油钻采工艺,2025,47(6):684-694. DOI: 10.13639/j.odpt.202506032
引用本文: 陈秀娟,罗兵,周晓,等. 基于岩石力学特征的海相页岩脆性测井评价−以川东红星地区吴二段为例[J]. 石油钻采工艺,2025,47(6):684-694. DOI: 10.13639/j.odpt.202506032
CHEN Xiujuan, LUO Bing, ZHOU Xiao, et al. Brittle logging evaluation of marine shale based on rock mechanical characteristics:A case study of Wu-2 member in Hongxing area, eastern Sichuan[J]. Oil Drilling & Production Technology, 2025, 47(6): 684-694. DOI: 10.13639/j.odpt.202506032
Citation: CHEN Xiujuan, LUO Bing, ZHOU Xiao, et al. Brittle logging evaluation of marine shale based on rock mechanical characteristics:A case study of Wu-2 member in Hongxing area, eastern Sichuan[J]. Oil Drilling & Production Technology, 2025, 47(6): 684-694. DOI: 10.13639/j.odpt.202506032

基于岩石力学特征的海相页岩脆性测井评价以川东红星地区吴二段为例

Brittle logging evaluation of marine shale based on rock mechanical characteristics:A case study of Wu-2 member in Hongxing area, eastern Sichuan

  • 摘要: 泥页岩储层脆性指数的精准预测直接关系到目的层的压裂设计及效果。川东红星地区二叠系吴二段是主要勘探目的层之一,岩性变化快,非均质性较强,导致其脆性特征难以准确评价。针对此问题,以红星地区二叠系吴二段页岩储层为研究对象,首先针对高石英页岩、高灰质页岩、灰岩和高黏土页岩等4种岩性的岩样开展三轴压缩、巴西劈裂等力学实验,重点剖析了岩心矿物组分、力学弹性参数特征、应力-应变特征及脆性特征,实验结果表明,高石英页岩样品呈脆性剪切破裂,且伴有层理劈裂。其次,基于岩石力学实验,优选出精度最高的基于弹性参数的脆性指数测井评价方法。平面预测表明,研究区内11口导眼井预测结果与测井解释结果绝对误差普遍低于1.5%,相对误差在±2%以内,三维脆性指数与单井脆性指数的计算结果吻合较好,表明该评价方法能有效预测吴二段页岩的脆性空间展布,对指导研究区的压裂设计具有重要意义。

     

    Abstract: The accurate prediction of mudstone/shale reservoir brittleness index is directly related to the fracturing design and effect of the formation of interest. Wu-2 member is currently one of the main exploration targets for Permian shale gas in Hongxing area of eastern Sichuan. The lithology changes rapidly and the heterogeneity is strong, which seriously restricts the accurate evaluation of brittleness attributes. In response to this geological reality, this study focuses on Wu-2 Member shale reservoir in Hongxing area, and such mechanical experiments as triaxial compression and Brazilian tensile tests are conducted on four lithological types: high quartzose shale, high calcareous shale, limestone, and high clay shale. The focus is to analyze the mineral composition, mechanical elastic parameter characteristics, stress-strain characteristics, and brittleness features of the rock core. The experimental results demonstrate that high-quartz- content shale samples exhibit brittle shear fracture, accompanied by bedding splitting failure. Based on rock mechanics experiments, a highest-precision elastic-parameters-based evaluation method for the brittleness index logging was optimized. Regionally, the absolute error between the predicted results and logging interpretation results for the 11 pilot wells in the region of interest is generally less than 1.5%, with relative error within ±2%. The results show that the three-dimensional brittleness index is in good agreement with the calculated brittleness index of a single well, which indicates that this evaluation method enables the effective prediction of brittleness space distribution of shale in Wu-2 member. This study plays significant role in guiding the fracturing design in the region of interest.

     

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