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A Case Study of Energy Storage Stimulation for Ultra-Low Permeability Oil Reservoir

机译:超低渗透油藏储能刺激的案例研究

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The Tight oil reservoir has the characteristic of low porosity (average of 8%), ultra-low permeability (average of 0.1 mD), low abundance and high clay content. The conventional fracturing techniques in exploration area was not successful in some cases, a novel series of horizontal well energy-storage fracturing techniques is proposed to improve the conventional fracturing technique, which based on increasing modified volume and replenishing formation energy. This technology involves in spacing optimization along the horizontal well section, optimization of fracturing fluid parameter, and forming complex network cracks. Afterwards, well shut-in can store energy and contribute to oil/water replacement. A total of 6 horizontal wells with 73 sections were tested in the field with successfully oil testing up to 95% after the techniques, which produces a good industrial oil flow. Furthermore, the single-well production can approach 8-10 times higher than that from the straight wells and 2-3 times higher than that from other horizontal wells in the same well block. The energy-storage fracturing technique provides a technical support for prospection and development of tight oil reservoir.
机译:紧密储油器具有低孔隙率(平均8%),超低渗透率(平均0.1MD),低丰度和高粘土含量的特征。在某些情况下,勘探区域的常规压裂技术在某些情况下,提出了一种新颖的水平井储能压裂技术,以改善传统的压裂技术,基于增加的改性体积和补充形成能量。该技术涉及沿水平井部分的间距优化,对压裂流体参数的优化,形成复杂的网络裂缝。之后,良好的可以存储能量并有助于油/水更换。在该领域测试了总共6个水平孔,在该领域进行了在该领域进行了高达95%的地板测试,这产生了良好的工业油流量。此外,单井生产可以比直线井从直线井的时间高8-10倍,比来自同一井块中的其他水平孔的2-3倍。储能压裂技术为封闭油藏的防潮和发展提供了技术支持。

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