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A combined stimulation technology for coalbed methane wells: Part 2. Application

机译:煤层气井联合增产技术:第2部分。应用

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摘要

Based on the theory and technology of combined stimulation, this paper, the second of a two-part series, presents an application of the combined stimulation technology to a low-deliverability CBM well in the Sunan Syncline, Anhui Province, China. During the stimulation, a low-damage fracturing fluid was adopted. Based on the laboratory test results, the property of the low-damage fracturing fluid is analyzed. Additionally, the stimulation effect is evaluated according to the calculation of the reservoir permeability and the drainage conditions. Results show that the low-damage fracturing fluid has good compatibility with the reservoirs, and can effectively prevent the reservoir to be damaged by water sensitivity, water blocking effect and flow rate sensitivity, and decrease the migration resistance of fracturing fluid in both tubing and reservoir fractures. The calculated reservoir permeability during the stimulation indicates good fracturing results for different kinds of reservoirs. The reservoir permeability at the early drainage stage after the combined stimulation is 3.4 times of the reservoir permeability after the first stimulation of this well. After conducted the combined stimulation, the daily gas production of the well has excessed 1000 m(3)/d since 21st December 2017 which indicates a successful application of this technology.
机译:基于组合增产的理论和技术,本文是由两部分组成的系列文章中的第二部分,介绍了组合增产技术在安徽省肃南向斜低产能煤层气井中的应用。在增产过程中,采用了低损伤压裂液。根据实验室测试结果,分析了低损伤压裂液的性能。另外,根据储层渗透率和排水条件的计算来评估增产效果。结果表明,低破坏压裂液与储层相容性好,能有效防止储层受到水敏性,阻水作用和流速敏感性的损害,降低了压裂液在油管和储层中的迁移阻力。骨折。在增产过程中计算出的储层渗透率表明,不同类型的储层具有良好的压裂效果。组合增产后早期排水阶段的储层渗透率是该井第一次增产后的储层渗透率的3.4倍。自2017年12月21日以来,在进行组合增产后,该井的日产气量已超过1000 m(3)/ d,这表明该技术已成功应用。

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