致密长石砂岩储层压裂液伤害机理及SC-CO2解水锁作用实验研究
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王娟娟(1982—),女,河南鹤壁人,高级工程师,博士,从事油气田开发及油田化学研究。E-mail:wangjj.dbsj@sinopec.com。

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Mechanism of fracturing fluid damage and experimental study on water lock release of SC-CO2 in tight feldspathic sandstone reservoir
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    摘要:

    针对松辽盆地JS-LS气田沙河子组致密砂岩气藏压裂后返排率低、气井产能差的问题,利用岩心驱替实验、矿物组分分析、润湿性测试及微观分析等测试手段,分析了致密长石砂岩储层压裂液伤害机理及超临界二氧化碳(SC-CO2)解水锁作用机理。研究结果表明:研究区沙河子组储层岩性为典型的致密长石砂岩,其较小的孔喉尺寸与极强的亲水性导致压裂液侵入后滞留明显,使得平均束缚水饱和度达到60.51%,平均液膜厚度为373.31 nm,束缚水和液膜占据了大量孔隙空间,水锁渗透率伤害率占渗透率总伤害率的55.54%,形成以水锁伤害为主的压裂液伤害。SC-CO2极强的扩散性、穿透能力以及在水中较高的溶解度使其在解水锁方面与常规前置液氮具有明显不同的功效。SC-CO2在高压条件下溶于水形成碳酸,通过萃取溶解与储层矿物发生溶蚀作用,改善了储层渗透率,并与水形成混相以降低界面张力。相较于N2和天然气,SC-CO2在排驱过程中大幅度降低毛细管力,使岩心中束缚水体积膨胀,破坏液膜,从而降低了束缚水饱和度与液膜厚度,平均束缚水饱和度降至26.754%,平均液膜厚度降至179.35 nm。SC-CO2几乎可以进入到储层任意大于CO2分子直径的孔喉中,从而进一步增强其解水锁的能力。

    Abstract:

    In view of the low flowback rate and poor gas well productivity in tight sandstone reservoirs of Shahezi Formation in theJS-LS gas field,Songliao Basin,the mechanism of fracturing fluid damage and water lock release of supercritical carbon dioxide (SC-CO2)in tight feldspathic sandstone reservoirs were analyzed based on the results of core displacement experiment,mineral composition analysis,wettability test,and microscopic analysis. The results showed that the reservoir lithology of Shahezi Formation in the study area is a typical tight feldspathic sandstone,whose smaller pore size and strong hydrophilicity lead to the obvious retention of fracturing fluid after invasion. The average irreducible water saturation is 60.51%,corresponding to an average liquid film thickness of 373.31 nm. The irreducible water and liquid film occupy a lot of pore space. The water lock damage rate accounts for 55.54% of the total damage rate of permeability. This results in fracturing fluid damage,mainly in the form of a water lock.SC-CO2 is significantly different from conventional pre-liquid N2 in terms of removing the water lock due to the strong diffusivity,penetrating ability,and high solubility in water. Moreover,SC-CO2 dissolves into water under high pressure and forms carbonic acid. It dissolves reservoir minerals by extraction,then improving reservoir permeability. In addition,it forms a miscible phase with water and eliminates interfacial tension. Compared with N2 and natural gas,SC-CO2 significantly reduces capillary force in the process of displacement,expands the irreducible water volume in the core,destroys the liquid film,and reduces the irreducible water saturation and the liquid film thickness. It reduces the average irreducible water saturation to 26.754% and the average liquid film thickness to 179.35 nm. Moreover,SC-CO2can enter almost any pore throat larger than the diameter of CO2 molecules in the reservoir,further enhancing its ability to release water lock.

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王娟娟,王军舰,张 冲,董传瑞,葛 地.致密长石砂岩储层压裂液伤害机理及SC-CO2解水锁作用实验研究[J].油气地质与采收率,2025,32(3):100~112

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  • 收稿日期:2024-03-20
  • 最后修改日期:2025-01-20
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  • 在线发布日期: 2025-06-19
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