基于井站利用的提高采收率试验,降低聚合物驱后成本

Shuling Gao, Shukai Peng, Peihui Han, Guo Chen, Haibo Liu, Wei Yan, E. Gao
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引用次数: 0

摘要

如何有效提高特高含水油藏采收率是国内外油田开发中需要解决的重大技术问题。目前,大庆油田聚合物驱后的油藏含水率和平均采收率分别高达95%和56%,地下剩余地质储量的44%具有很大的开发潜力。在开发特高含水油田时,应考虑降低新井、新站的投资成本,以达到降本增效的目的。具体而言,在三元复合驱试验后,对注站的备用井和配注系统进行了再利用,显著降低了投资成本。为了进一步提高聚合物驱后油藏的采收率,提出了备用井站回用与三元复合驱相结合的新方案。在大庆油田B2X区块进行了35口注水井和44口生产井的现场试验,减少新钻井和新注站建设成本3183.5万美元。通过物理模拟实验对注入参数和体系配方进行优化,确定了本次试验的三元复合配方为使用2500万分子量聚合物、石油磺酸盐表面活性剂和碳酸钠。数值模拟预测表明,三元复合驱可以进一步提高10%以上的采收率。该试验已进行,效果良好。分别于2015年2月和5月注入聚合物预段塞和ASP主段塞。截至2017年10月,累计注入孔隙体积0.61 PV,注入压力提高4.2 MPa,流体吸收厚度比提高31.4%,单井最大含水率下降20.8%,阶段增量采收率8.13%。由于不新井、不新建注站,降低了成本,现场试验取得了良好的技术经济开发效果。目前,试验区已增加了116.1万桶(15.89万吨)石油,经济效益达5807万美元。通过数值模拟预测,最终增量采收率将提高10.44%,累计增产149.1万桶(20.4万吨),经济效益为7457万美元(按50美元/桶计算)。通过将井站与三元复合驱相结合,大大降低了投资成本,取得了良好的技术经济开发效果。该方法可广泛应用于大庆油田聚合物驱后的特高含水区块。
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Enhanced Oil Recovery Test Based on Wells and Stations Utilization to Reduce Cost After Polymer Flooding
How to improve oil recovery for ultra-high water cut reservoir efficiently is a major technical problem needed to resolve in oilfield development at home and abroad. Currently, the water cut of reservoir and average oil recovery recovery factor have been as high as 95% and 56% after polymer flooding in Daqing Oilfeild, respectively, with 44% of the remaining geological reserves underground showing a great potential for further tapping. During the development of ultra-high water cut oilfield, we should consider reducing the investment cost of the new well drilling and stations so as to decrease cost and increase benefit. Specifically, we re-utilize the spare wells and injection distribution system of the injection stations after ASP flooding tests and significantly reduce investment cost. In this paper, we propose a new scheme of combining spare well station reusing and ASP flooding to further enhance oil recovery for the reservoir after polymer flooding. The field test, with 35 injection wells and 44 production wells, has been conducted in B2X block in Daqing Oilfield to reduce the cost of new drilling wells and new injection stations construction by 31.835 million dollars. By implementing physical simulation experiment to optimize the injection parameters and system formula, we determined that ASP formula for this test is to use polymer with 25 million molecular weight, petroleum sulfonate surfactant and sodium carbonate. The numerical simulation forecast shows that ASP flooding could further improve oil recovery by more than 10 percent. This test has been carried out and good response has been seen. The polymer pre-slug and the ASP main slug were injected in February and May 2015 respectively. Up to October 2017, the accumulated injection pore volume has been 0.61 PV, the injection pressure has risen by 4.2 MPa, the fluid absorption thickness ratio has increased by 31.4%, largest water cut decline of single well has reached 20.8% and the stage incremental oil recovery was 8.13%. Due to the reduced cost of no new drilling wells and no new injection station construction, the field test has achieved good technical and economic development effect. Now, the test area has increased oil by 1.161million barrels (158.9 thousand tons), with 58.07 million dollars economic returns. The prediction via numerical simulation shows that the final incremental oil recovery would be increased by 10.44%, the accumulated increasing oil production would be 1.491 million barrels (204 thousand tons), and the economic returns would be 74.57 million dollars (calculated as $50 per barrel). Through combing largely reducing the investment cost by reusing well station with ASP flooding, this field test achieved good technical and economic development effect. It can be broadly applied in ultra-high water cut blocks after polymer flooding in Daqing Oilfield.
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