陈捷. 高角度煤层群水力压裂裂缝形态特征分析[J]. 煤矿安全, 2015, 46(5): 179-182.
    引用本文: 陈捷. 高角度煤层群水力压裂裂缝形态特征分析[J]. 煤矿安全, 2015, 46(5): 179-182.
    CHEN Jie. Fracture Morphology Analysis of Hydraulic Fracturing in High Angle of Coal Seam Group[J]. Safety in Coal Mines, 2015, 46(5): 179-182.
    Citation: CHEN Jie. Fracture Morphology Analysis of Hydraulic Fracturing in High Angle of Coal Seam Group[J]. Safety in Coal Mines, 2015, 46(5): 179-182.

    高角度煤层群水力压裂裂缝形态特征分析

    Fracture Morphology Analysis of Hydraulic Fracturing in High Angle of Coal Seam Group

    • 摘要: 以松河井田GP-1、GP-2生产井施工参数、GC-1井参数井煤岩芯实验、试井资料为基础,分析和总结了研究区储层特点和压裂裂缝形态特征。分析发现:煤储层破裂压力梯度介于0.02~0.027 5 MPa/m之间,闭合压力梯度介于0.016 8~0.026 8 MPa/m,压裂施工压力较高,含有高温高压异常储层;通过微地震裂缝检测,煤储层主裂缝均沿北东向呈现一致性;裂缝垂向延展不局限在压裂段内,均穿越压裂段顶、底部,裂缝高度是射孔厚度的2.6~3.14倍,埋深越浅,倍数越大;裂缝形态受地应力、局部构造、煤岩力学特性和高角度煤层群储层特点等因素共同作用而表现出复杂多态性。

       

      Abstract: Based on the construction parameters of GP-1, GP-2 production well and the testing and experimental data of GC-1 parameters well in the Songhe Mine, the research area of the reservoir characteristics and fracturing fracture morphology are analyzed and summarized. Analysis shows that the fracture pressure gradient is from 0.02 to 0.027 5 MPa/m, and the closure pressure gradient is from 0.016 8 to 0.026 8 MPa/m of coal seam, abnormal high fracturing pressure, high temperature and high pressure reservoir. Through the monitoring results of micro seismic fracture, coal main crack along the north east to present the consistency, the vertical crack extension is not limited within the fracture section, the fracturing crack is 2.6 to 3.14 times the height of perforation thickness, the ratio decreases with the increase of buried depth of coal seam, the fracture morphology shows complex polymorphism as a result of in-situ stress, local structure, mechanics characteristics of coal seam and reservoir characteristics of high angle coal seam group.

       

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