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Guiding-controlling technology of coal seam hydraulic fracturing fractures extension

机译:煤层水力压裂裂缝扩展的导向控制技术

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摘要

Aiming at the uncontrollable problem of extension direction of coal seam hydraulic fracturing,this study analyzed the course of fractures variation around the boreholes in process of hydraulic fracturing,and carried out the numerical simulations to investigate the effect of artificial predetermined fractures on stress distribution around fractured holes.The simulation results show that partial coal mass occurs relatively strong shear failure and forms weak surfaces,and then fractures extended along the desired direction while predetermined fractures changed stress distribution.Directional fracturing makes the fractures link up and the pressure on coal mass is relieved within fractured regions.Combining deep hole controlling blasting with hydraulic fracturing was proposed to realize the extension guiding-controlling technology of coal seam fractures.Industrial experiments prove that this technology can avoid local stress concentration and dramatically widen the pressure relief scope of deep hole controlling blasting.The permeability of fractured coal seam increased significantly,and gas extraction was greatly improved.Besides,regional pressure relief and permeability increase was achieved in this study.
机译:针对煤层水力压裂扩展方向无法控制的问题,分析了水力压裂过程中井眼周围裂缝的变化过程,并进行了数值模拟,研究了人工预定裂缝对裂缝周围应力分布的影响。模拟结果表明,部分煤体发生了相对较强的剪切破坏,形成了较弱的表面,然后沿预定方向延伸,同时预定的缝隙改变了应力分布,使裂缝破裂。定向压裂使缝隙连接起来,减轻了煤体压力提出了深孔控制爆破与水力压裂相结合的方法,以实现煤层裂缝扩展导引控制技术。工业实验证明,该技术可以避免局部应力集中,显着拓宽了煤层裂缝的泄压范围。深孔控制爆破。裂隙煤层的渗透率显着提高,瓦斯抽采得到了极大的改善。此外,该研究还实现了区域卸压和渗透率的提高。

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