贾慧敏, 胡秋嘉, 祁空军, 覃蒙扶, 毛崇昊, 张光波. 煤层气流压回升型不正常井储层伤害机理与治理[J]. 煤田地质与勘探, 2019, 47(4): 69-75. DOI: 10.3969/j.issn.1001-1986.2019.04.011
引用本文: 贾慧敏, 胡秋嘉, 祁空军, 覃蒙扶, 毛崇昊, 张光波. 煤层气流压回升型不正常井储层伤害机理与治理[J]. 煤田地质与勘探, 2019, 47(4): 69-75. DOI: 10.3969/j.issn.1001-1986.2019.04.011
JIA Huimin, HU Qiujia, QI Kongjun, QIN Mengfu, MAO Chonghao, ZHANG Guangbo. Damage mechanism and countermeasures of reservoir with abnormal pickup of CBM flow pressure in well[J]. COAL GEOLOGY & EXPLORATION, 2019, 47(4): 69-75. DOI: 10.3969/j.issn.1001-1986.2019.04.011
Citation: JIA Huimin, HU Qiujia, QI Kongjun, QIN Mengfu, MAO Chonghao, ZHANG Guangbo. Damage mechanism and countermeasures of reservoir with abnormal pickup of CBM flow pressure in well[J]. COAL GEOLOGY & EXPLORATION, 2019, 47(4): 69-75. DOI: 10.3969/j.issn.1001-1986.2019.04.011

煤层气流压回升型不正常井储层伤害机理与治理

Damage mechanism and countermeasures of reservoir with abnormal pickup of CBM flow pressure in well

  • 摘要: 合理控制套压和井底流压、合理排水降压采气是提高煤层气井开发效果的关键技术。井底流压回升可抑制煤层气解吸产出,造成储层伤害,降低煤层气井产量,影响煤层气井开发效果。通过沁水盆地樊庄区块生产实践动态分析、理论研究和室内实验,提出了煤层气流压回升型不正常井起因,通过理论研究和现场数据分析,明确煤层气井流压回升对储层伤害机理,提出流压回升对储层伤害程度评价方法及治理对策。研究结果表明:煤层气井煤没度增加导致套压降低,套压下降速率越快,则井底流压下降越快;煤没度增加速率过快的煤层气井,其井底流压回升对储层伤害严重,导致气体产出阻力增加,部分气体被毛细管压力封堵在孔隙中,难以产出。流压回升伤害指数可以表征流压回升导致储层伤害程度,抽油泵凡尔漏失和气锁导致煤层气井排水量小于煤层向井筒供水量是井底流压回升的主要原因,其治理措施可通过液压冲洗清除固定凡尔煤粉,通过机械振动清除游动凡尔煤粉,通过恒沉没防气锁工艺与煤层气井间断抽水工艺相结合措施治理气锁。

     

    Abstract: The reasonable control of the casing pressure and the bottom-hole pressure and the reasonable depressurization of reservoir pressure is the key technology for the CBM development. The pickup of the bottom-hole flow pressure(BHFP) will restrain CBM' desorption, lead to reservoir permeability damage and reduce the production of CBM wells. Based on production practice of Fanzhuang block in Qinshui basin, this paper puts forward the cause of a CBM abnormal well type, pickup of the BHFP, clarifies the damage mechanism of the pickup of the BHFP through theoretical research and field data analysis, and puts forward the evaluating method of the damage degree of reservoir and the countermeasures of the pickup of the bottom-hole flow pressure. The results of research show that in general if the submergence degree of coal seam increases, the casing pressure will decrease and the faster the decrease of the casing pressure becomes, the faster the decrease of the bottom-hole flow pressure is. If the submergence degree of coal seam increase faster, the bottom hole flow pressure will rise. The pickup of the BHFP results in the increase of the gas output resistance and the decrease of output power, so some gas content is blocked in the pores by capillary pressure and hard to produce, which is the damage mechanism to the reservoir caused by the pickup of the BHFP. The damage index can indirectly represent the damage degree of reservoir caused by the pickup of the BHFP. The valve leakage and air lock of the displacement pump are the main reasons for the pickup of the BHFP, which result in the drainage amount of water less than the supply amount of water from coal seams to bottom hole. The treatment of wells with abnormal BHFP pickup is hydraulic flush to remove the coal powders to deal with fixing valve leakage, mechanical vibration to remove coal powders to deal with floating valve leakage and the combination of permanent-submerged-technology and pumping-unit-intermittent-working technology to deal with gas lock.

     

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