李小刚, 贺宇廷, 杨兆中, 张平, 宋瑞, 程璐. 纵向叠置多薄煤层压裂裂缝竞争延伸数值模拟[J]. 煤炭学报, 2018, (6). DOI: 10.13225/j.cnki.jccs.2018.4049
引用本文: 李小刚, 贺宇廷, 杨兆中, 张平, 宋瑞, 程璐. 纵向叠置多薄煤层压裂裂缝竞争延伸数值模拟[J]. 煤炭学报, 2018, (6). DOI: 10.13225/j.cnki.jccs.2018.4049
LI Xiaogang, HE Yuting, YANG Zhaozhong, ZHANG Ping, SONG Rui, CHENG Lu. Numerical simulation of hydraulic fractures propagation in multiple thin coal seams[J]. Journal of China Coal Society, 2018, (6). DOI: 10.13225/j.cnki.jccs.2018.4049
Citation: LI Xiaogang, HE Yuting, YANG Zhaozhong, ZHANG Ping, SONG Rui, CHENG Lu. Numerical simulation of hydraulic fractures propagation in multiple thin coal seams[J]. Journal of China Coal Society, 2018, (6). DOI: 10.13225/j.cnki.jccs.2018.4049

纵向叠置多薄煤层压裂裂缝竞争延伸数值模拟

Numerical simulation of hydraulic fractures propagation in multiple thin coal seams

  • 摘要: 滇东黔西地区煤层具有纵向多薄层叠置的特点,且割理裂隙等结构弱面较为发育。前人的多层、薄层压裂裂缝模拟多针对砂岩储层,关于结构弱面对水力压裂裂缝影响的研究多集中在页岩和裂缝性砂岩,对结构弱面发育、高泊松比、低杨氏模量的多薄煤层水力压裂裂缝竞争延伸规律缺少系统的揭示。考虑层间流量动态分配和割理裂隙发育特征,建立拟三维裂缝延伸数学模型。以滇东上二叠统煤层为例,模拟并分析了直井多层组合压裂时各层裂缝竞争延伸。研究表明:结构弱面分布不同导致各层裂缝形态差异较大;水力裂缝被结构弱面捕获使得裂缝变窄,增加了压裂砂堵风险;杨氏模量较小的煤层多层合压,层间流量分配差异相对较小;对射孔参数已确定的井,增加压裂液黏度、提高排量可减小层间流量差异,进而促进各层缝长充分扩展;减小压裂液黏度,降低排量可控制缝高。

     

    Abstract: The coal seams in eastern Yunnan and western Guizhou have the characteristics of vertical multi-layer lami- nation and the structural weak surfaces of the cleavage cracks are relatively developed. In previous research,the simu- lations of fractures propagation in multiple thin layers are mostly aimed at sandstone reservoirs,and the research on the influence of natural fractures on hydraulic fracturing is mostly aimed at shale and fractured sandstone. Therefore,there is a lack of systematic theoretical research on the propagation of hydraulic fractures in thin coal reservoirs with natural fractures,high Poisson’s ratio and low Young modulus. In this paper,a pseudo three dimensional fractures propagation model was established,considering the dynamic distribution of interlayer flow and the characteristics of cleat fracture development. Taking the coal reservoirs in eastern Yunnan and western Guizhou as an example,the propagation of frac- tures in each layer was simulated and analyzed. The research shows that the different distributions of natural fractures leads to the morphology of fractures in each layer having great differences;the width of fractures captured by natural fractures will decrease,and the risk of sand plugging will increase;the differences of liquid injection volume of each layer will be relatively small when the coal seam has a low Young’s modulus;for wells with determined perforated pa- rameters,the increase of the viscosity of fracturing fluid and the increase of the injection rate can reduce the difference of flow between layers,and then promote the full expansion of each seam length;the fractures height will be decreased by reducing the viscosity and injection rate of fracturing fluid.

     

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