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王运海. 延川南深部煤层气井排采制度研究[J]. 煤炭科学技术, 2018, (6).
引用本文: 王运海. 延川南深部煤层气井排采制度研究[J]. 煤炭科学技术, 2018, (6).
WANG Yunhai. Study on drainage and production system of deep coalbed methane well in South Yanchuan Block[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (6).
Citation: WANG Yunhai. Study on drainage and production system of deep coalbed methane well in South Yanchuan Block[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (6).

延川南深部煤层气井排采制度研究

Study on drainage and production system of deep coalbed methane well in South Yanchuan Block

  • 摘要: 基于延川南煤层气田多年的勘探开发成果和排采实践,探讨和研究了深部煤储层应力敏感对煤层气井产气、产液的影响以及合理的排采制度。结果表明,由于深部煤储层具有低孔、低渗、强应力敏感的特征,排采速率过快煤岩易发生显著的压敏效应,造成渗透率降低,压降漏斗无法有效扩展,从而导致煤层气井产气低效;通过针对区内不同时期气井排采制度优化过程的对比和分析,逐步形成了“平衡排采、阶梯降压”的排采制度,延缓和减弱了应力敏感对储层的伤害,实现了泄压面积的持续扩大,从而保证了气井高产稳产的开发效果,这一排采制度的科学性和适用性在延川南煤层气田得到了证实。

     

    Abstract: Based on the results of exploration and drainage practices for many years in South Yanchuan Block CBM Field, the influence of stress sensitivity of deep coal reservoirs on gas and liquid production in coalbed methane wells as well as the reasonable drainage system are investigated and discussed. The results show that due to the charactersitics of low porosity, low permeability and strong stress sensitivity of deep coal reservoirs, high drainage rates are likely to result in significant compressive deformation of coal seams which leads to a decrease in permeability and a difficulty in the expansion of pressure drop funnels, and eventually a low productive efficiency of coalbed methane well. Through the comparison of the optimization processes of coalbed methane well drainage systems over different periods in South Yanchuan block, the drainage system of balanced drainage and stepped decompression is proposed. This system can delay and weaken the adverse effect of stress sensitivity on the coal reservoirs. As a result, the pressure relief areaes are continuously expanded so that high and stable yields of coalbed methane wells can be guaranteed. The scientificity and applicability of the proposed drainage system have been confirmed in South Yanchuan Block CBM.

     

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