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Measurement and Analysis of Full-Scale Hydraulic Fracture Initiation and Reorientation

机译:大型水力压裂起裂与重新定向的测量与分析

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摘要

Hydraulic fracture breakdown and reorientation data collected from two instrumented test borehole sites have been analyzed to assess the effect of the initiation type (axial or transverse) on the treating pressure. Vertical boreholes were drilled and fractures were placed in a conglomerate at depths of 140-180 m in a far-field stress field that favored horizontal fracture growth. Axial initiation resulted in high injection pressure, which was attributed to near-borehole tortuosity generated as the hydraulic fracture reoriented to align with the far-field stresses. Acoustic scanner logging of the boreholes after fracturing demonstrated that, in many cases, axial initiation occurred and when this was the case, treating pressures were high and consistent with near-borehole tortuous fracture paths. A fracture initiation analysis determined that initiation at abrasively cut circumferential slots should occur before axial initiation. Slots were cut to locate the initiation sites and to make transverse fracture initiation more likely. Transverse initiation from the vertical boreholes at pre-cut slots lowered the injection pressures during the fracture treatment by up to 12 MPa for water injected at approximately 500 L per minute.
机译:分析了从两个仪器化的测试钻孔位置收集的水力压裂破裂和重新定向数据,以评估初始类型(轴向或横向)对处理压力的影响。在一个有利于水平裂缝扩展的远场应力场中,钻了垂直井眼,并将裂缝放置在140-180 m深度的砾岩中。轴向起爆导致高注入压力,这归因于当液压裂缝重新定向以适应远场应力时产生的近井曲折。破裂后钻孔的声波扫描仪测井表明,在许多情况下,发生了轴向起爆,并且在这种情况下,处理压力很高,并且与近井曲折裂缝路径一致。断裂起爆分析确定,在轴向起爆之前,应在磨削的圆周槽处起爆。切开狭缝以定位起爆点,并使横向裂缝起爆的可能性更大。对于以每分钟约500 L的速度注入的水,在预切槽处从垂直钻孔的横向启动将压裂过程中的注入压力降低了12 MPa。

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