倪小威, 敖旋峰, 梁霄, 艾林, 徐观佑, 刘迪仁. 基于斯伦贝谢比与裂缝指数的煤体结构定量判识[J]. 煤矿安全, 2017, 48(8): 144-146,150.
    引用本文: 倪小威, 敖旋峰, 梁霄, 艾林, 徐观佑, 刘迪仁. 基于斯伦贝谢比与裂缝指数的煤体结构定量判识[J]. 煤矿安全, 2017, 48(8): 144-146,150.
    NI Xiaowei, AO Xuanfeng, LIANG Xiao, AI Lin, XU Guanyou, LIU Diren. Quantitative Identification of Coal Structure Based on Schlumberger Ratio and Crack Index[J]. Safety in Coal Mines, 2017, 48(8): 144-146,150.
    Citation: NI Xiaowei, AO Xuanfeng, LIANG Xiao, AI Lin, XU Guanyou, LIU Diren. Quantitative Identification of Coal Structure Based on Schlumberger Ratio and Crack Index[J]. Safety in Coal Mines, 2017, 48(8): 144-146,150.

    基于斯伦贝谢比与裂缝指数的煤体结构定量判识

    Quantitative Identification of Coal Structure Based on Schlumberger Ratio and Crack Index

    • 摘要: 为研究区块煤体结构,以原生结构煤与碎裂结构煤为主,统计分析发现:原生结构煤与碎裂结构煤在力学参数裂缝指数及斯伦贝谢比上有明显差异。原生结构煤裂缝指数一般大于0.23,小于0.33,集中分布于0.29;碎裂结构煤裂缝指数一般大于0.31,小于0.41,集中分布于0.35。碎裂结构煤斯伦贝谢比一般大于0.05,小于0.15,集中分布于0.11;原生结构煤斯伦贝谢比一般大于0.13,小于0.24,集中分布于0.19。由此形成了相应的煤体结构划分标准。利用裂缝指数与斯伦贝谢比联合判识煤体结构准确率达到84%。

       

      Abstract: Statistical analysis shows that there are obvious differences between the primary structure coal and the fractured coal in the mechanical parameters of the crack index and Schlumberger ratio. Fracture index of primary structure coal is generally greater than 0.23, less than 0.33, concentrated in the distribution of 0.29, while the fracture index of fractured coal is generally larger than 0.31, less than 0.41, concentrated in the distribution of 0.35. The Schlumberger ratio of the fractured structure coal is generally greater than 0.05, less than 0.15, concentrated in 0.11, while the Schlumberger ratio of the primary coal is greater than 0.13, less than 0.24, concentrated in 0.19. And the corresponding standard of coal structure is formed. The accuracy rate reached 84% by using the crack index and Schlumberger ratio to identify the media structure.

       

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