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The Benefits of Reworking Declining CBM Wells

机译:重新加工削减CBM Wells的好处

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There are three distinguishing phases in the production life of a wet CBM well:a period of inclining gas rate due to dominance of relative permeability effects,a period of rate stabilization during which the gas rate peaks followed by the depletion phase during which gas production rate declines.The declining gas production rate can be attributed to many factors such as:1.Declining reservoir pressure.2.Loss of productivity due to compaction and permeability loss.3.Loss of productivity due to fine migration that creates a choke skin near wellbore.While the decline in reservoir pressure is inevitable,the loss of productivity due to the choke skin and permeability loss for a declining CBM well can be remedied or slowed down through a multi-stage hydraulic refracturing.The impact of such fracturing on improving well productivity and boosting the gas production rate is investigated.Reworking the well through refracturing could help clean up the zone near wellbore,re-activate or improve the coal network of natural fractures;lead to more effective dewatering and even create new contacts between the reservoir and formation.The area near wellbore will benefit from re-invigoration of fracture network and creation of an area of enhanced permeability.In this study the benefit of completing a new vertical and/or horizontal CBM well with a multi-stage hydraulic fracture is examined.The production of wells with such completions are compared to typical single-stage fracturing and benefits of creating an inner zone of enhanced permeability in short-term and long term are investigated.A numerical dual-porosity reservoir model is used to generate the CBM gas production forecasts.
机译:湿CBM的生产寿命中存在三个区别阶段:由于相对渗透效应的主要显性,速度余速度的一段时间,速率稳定期间,燃气速率峰随后耗尽阶段下降。瓦斯生产率下降可归因于许多因素,如:1。储存储层压力.2。由于压实和渗透性损失导致的生产率.3。由于精细迁移,生产率的生产率造成的较好的迁移造成的。储层压力下降不可避免,通过多级液压抑制,可以纠正或放缓由于扼流圈皮肤和渗透性损失而导致的生产率损失。这种压裂对提高良好生产率的影响并调高天然气生产率。通过耐腐蚀,可以帮助清理井筒附近的区域,重新激活或改善自然骨折的煤炭网络;导致更有效的脱水,甚至在储层和地层之间产生新的接触。韦尔伯勒附近的地区将受益于骨折网络的重新敏感,并创建一个增强的渗透性领域。这项研究的利益检查使用多级液压骨折的新型垂直和/或水平CBM良好。使用这种完井的井生产与典型的单级压裂和在短期内产生增强的渗透性内部区域的益处研究了长期。使用数值双孔隙度储层模型用于产生CBM天然气生产预测。

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