In this paper, by in-depth geological research of Kalamkas Oilfield in Central Asia, the geological body has been re-ascertained; combined with fine study of reservoir engineering, based on the understanding of the di...In this paper, by in-depth geological research of Kalamkas Oilfield in Central Asia, the geological body has been re-ascertained; combined with fine study of reservoir engineering, based on the understanding of the distribution of remaining oil horizontal wells have been given full play to stabilizing oil production and controlling water cut, reducing the producing pressure drop, improving well productivity and other advantages, and the development and deployment has been optimized; horizontal wells have been applied to solve problems such as old well casing damages, shutting down wells, low-productivity and low- efficiency wells, and high water cut wells to improve the utilization rate of old wells; through separate layer system improved injection production pattern, adjustment wells have been optimized and deployed, and part measures wells have been preferably selected to tap the residual oil improve the degree of reserves control realize the stabilization of oil production and control of water cut in an old oilfield, and further improve the development effects.展开更多
为验证绒囊流体在含高矿化度地层水地层中稳油控水效用,在温度120℃、围压15 MPa、回压1.5 MPa条件下,采用恒流速法测定绒囊流体封堵前后,含不同矿化度盐水和煤油的人造砂岩柱塞稳定流动渗透率和注入压力变化。实验结果表明,0.1 m L/mi...为验证绒囊流体在含高矿化度地层水地层中稳油控水效用,在温度120℃、围压15 MPa、回压1.5 MPa条件下,采用恒流速法测定绒囊流体封堵前后,含不同矿化度盐水和煤油的人造砂岩柱塞稳定流动渗透率和注入压力变化。实验结果表明,0.1 m L/min恒定流速下,绒囊流体封堵前后,含Fe2++Ca2++Mg2+矿化度分别为1×104 mg/L、10×104 mg/L、20×104 mg/L盐水岩心驱替压力由0.46~0.63 MPa升至1.39~2.23 MPa,封堵能力提高205.83%~262.64%;渗透率140.82~193.30 m D降至66.96~109.85 m D,损失率43.15%~52.53%。以煤油模拟地层原油,相同条件下测定封堵前后效果,驱替压力0.48~0.52 MPa升至0.51~0.55 MPa,增幅5.83%~8.08%;渗透率232.05~272.52 m D降至211.09~249.25 m D,损失率2.26%~4.51%。在地层水矿化度8×104 mg/L、4×104 mg/L的Y井和Z井实施绒囊流体稳油控水,通过提高泵次、深抽等工艺,油井产水量分别降低46.38%、15.99%,产油量提高6 200%、180%。研究和应用表明,绒囊流体抗高矿化度堵水体系能够实现稳油控水。展开更多
文摘In this paper, by in-depth geological research of Kalamkas Oilfield in Central Asia, the geological body has been re-ascertained; combined with fine study of reservoir engineering, based on the understanding of the distribution of remaining oil horizontal wells have been given full play to stabilizing oil production and controlling water cut, reducing the producing pressure drop, improving well productivity and other advantages, and the development and deployment has been optimized; horizontal wells have been applied to solve problems such as old well casing damages, shutting down wells, low-productivity and low- efficiency wells, and high water cut wells to improve the utilization rate of old wells; through separate layer system improved injection production pattern, adjustment wells have been optimized and deployed, and part measures wells have been preferably selected to tap the residual oil improve the degree of reserves control realize the stabilization of oil production and control of water cut in an old oilfield, and further improve the development effects.
文摘为验证绒囊流体在含高矿化度地层水地层中稳油控水效用,在温度120℃、围压15 MPa、回压1.5 MPa条件下,采用恒流速法测定绒囊流体封堵前后,含不同矿化度盐水和煤油的人造砂岩柱塞稳定流动渗透率和注入压力变化。实验结果表明,0.1 m L/min恒定流速下,绒囊流体封堵前后,含Fe2++Ca2++Mg2+矿化度分别为1×104 mg/L、10×104 mg/L、20×104 mg/L盐水岩心驱替压力由0.46~0.63 MPa升至1.39~2.23 MPa,封堵能力提高205.83%~262.64%;渗透率140.82~193.30 m D降至66.96~109.85 m D,损失率43.15%~52.53%。以煤油模拟地层原油,相同条件下测定封堵前后效果,驱替压力0.48~0.52 MPa升至0.51~0.55 MPa,增幅5.83%~8.08%;渗透率232.05~272.52 m D降至211.09~249.25 m D,损失率2.26%~4.51%。在地层水矿化度8×104 mg/L、4×104 mg/L的Y井和Z井实施绒囊流体稳油控水,通过提高泵次、深抽等工艺,油井产水量分别降低46.38%、15.99%,产油量提高6 200%、180%。研究和应用表明,绒囊流体抗高矿化度堵水体系能够实现稳油控水。