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Optimization of refracturing timing for horizontal wells in tight oil reservoirs: A case study of Cretaceous Qingshankou Formation, Songliao Basin, NE China

机译:致密油藏水平井压裂时间的优化-以内蒙古松辽盆地白垩系青山口组为例

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Tight oil reservoirs in Songliao Basin were taken as subjects and a novel idealized refracturing well concept was proposed by considering the special parameters of volume fracturing horizontal wells, the refracturing potential of candidate wells were graded and prioritized, and a production prediction model of refracturing considering the stress sensitivity was established using numerical simulation method to sort out the optimal refracturing method and timing. The simulations show that: with the same perforation clusters, the order of fracturing technologies with contribution to productivity from big to small is refracturing between existent fractured sections, orientation diversion inside fractures, extended refracturing, refracturing of existent fractures; and the later the refracturing timing, the shorter the effective time. Based on this, the prediction model of breakdown pressure considering the variation of formation pressure was used to find out the variation pattern of breakdown pressure of different positions at different production time. Through the classification of the breakdown pressure, the times of temporary plugging and diverting and the amount of temporary plugging agent were determined under the optimal refracturing timing. Daily oil production per well increased from 2.3 t/d to 16.5 t/d in the field test. The research results provide important reference for refracturing optimization design of similar tight oil reservoirs.
机译:以松辽盆地致密油储层为研究对象,考虑体积压裂水平井的特殊参数,提出了一种新型的理想化压裂井概念,对候选井的压裂潜力进行了分级和优先排序,并考虑了压裂产量的预测模型。通过数值模拟方法建立应力敏感性,以选择最佳的压裂方法和时机。模拟结果表明:在相同射孔簇的情况下,对产能有较大贡献的压裂技术的顺序为:现有裂缝段之间的压裂,裂缝内部的定向转向,扩展压裂,现有裂缝的压裂。破裂时间越晚,有效时间越短。在此基础上,采用考虑地层压力变化的破裂压力预测模型,找出了不同生产时间下不同部位的破裂压力变化规律。通过对击穿压力的分类,确定了最佳压裂时机下临时堵漏和转向的时间以及临时堵漏剂的量。在现场测试中,每口井的日产油量从2.3吨/天增加到16.5吨/天。研究结果为类似致密油储层的压裂优化设计提供重要参考。

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