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The Application of Downhole Seismic Imaging in Identifying Natural Fracture Systems; An Integrated Approach Utilizing Core and Borehole Image Data

机译:井下地震成像在识别天然骨折系统中的应用; 利用核心和钻孔图像数据的综合方法

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Producing unconventional reservoirs characterized by low porosities and permeabilities during early stages of exploration and field appraisal can be challenging, especially in high temperature and high pressure (HPHT) downhole conditions. In such reservoirs, the natural fracture network can play a significant role in flowing hydrocarbons, increasing the importance of encountering such network by the boreholes. Consequently, the challenge would be to plan wells through these corridors, which is not always easy. To add to the challenge, well design restrictions dictate, the drilling of only vertical and in minor cases deviated wells. This can reduce the possibility of drilling through sub-vertical fracture sets significantly, and once seismic resolution is considered, it may seem that all odds are agents encountering a fracture network. This article addresses a case where a vertical well is drilled, in the above-mentioned reservoir setting, and missed the natural fracture system. The correct mitigation can make a difference between plugging and abandoning the well or putting it on production. The technique utilized is based on a borehole acoustic reflection survey (BARS) acquired over a vertical well to give a detailed insight on the fracture network 120 ft away from the borehole. Integrating this technique with core and high-resolution borehole image logs rendered an excellent match, increasing the confidence level in the acoustically predicted fracture corridors. Based on these findings new perforation intervals and hydraulic stimulation are proposed to optimize well performance. Such application can reverse the well decommissioning process, opening new opportunities for the rejuvenation of older wells.
机译:在勘探和野外评估的早期阶段产生具有低孔隙率和渗透率的非传统水库可能是挑战性的,特别是在高温和高压(HPHT)井下条件下。在这种储存器中,天然骨折网络可以在流动的烃中发挥重要作用,提高了钻孔遇到这种网络的重要性。因此,挑战将是通过这些走廊计划井,这并不总是容易的。为了增加挑战,精美的设计限制决定,钻探只有垂直和次要案件偏离井。这可以减少通过显着的亚垂直骨折组钻探的可能性,并且一旦考虑地震分辨率,似乎所有赔率都是遇到骨折网络的代理。本文在上述储存器设置中解决了垂直井的情况,并错过了自然骨折系统。正确的缓解可以在堵塞和放弃井或将其放在生产之间产生差异。利用的技术基于垂直井获取的钻孔声反射测量(条),以在远离钻孔的裂缝网络120ft的详细洞察中。将该技术与核心和高分辨率钻孔图像日志集成,呈现出优异的匹配,增加了声学预测的骨折走廊中的置信水平。基于这些发现,提出了新的穿孔间隔和液压刺激以优化良好的性能。这些申请可以扭转井退役过程,开启新井中的恢复活力的新机会。

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