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高强度凝胶体系配方研制及高盐低渗裂缝性油藏调剖性能评价

Formulation Development of High Strength Gel System and Evaluation on Profile Control Performance for High Salinity and Low Permeability Fractured Reservoir.

作者信息

Zhang Chengli, Qu Guodong, Song Guoliang

机构信息

School of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, China.

School of Mathematics and Statistics, Northeast Petroleum University, Daqing 163318, China.

出版信息

Int J Anal Chem. 2017;2017:2319457. doi: 10.1155/2017/2319457. Epub 2017 May 16.

Abstract

For the large pores and cracks of reservoirs with low temperatures, high salinity, and low permeability, a new type of high strength gel ABP system is developed in this paper. The defects of conventional gels such as weak gel strength, no gelling, and easy dehydration are overcome under the conditions of low temperature and high salinity. The temperature and salt resistance, plugging characteristics, and EOR of the gel system are studied. Under the condition of 32°C and 29500 mg/L salinity, the ABP system formulation is for 0.3% crosslinking agent A + 0.09% coagulant B + 3500 mg/L polymer solution P. The results show that when the temperature was increased, the delayed crosslinking time of the system was shortened and the gel strength was increased. The good plugging characteristics of the ABP system were reached, and the plugging rate was greater than 99% in cores with different permeability. A good profile control performance was achieved, and the recovery rate was improved by 19.27% on the basis of water flooding. In the practical application of the gel system, the salinity of formation water and the permeability of fractures are necessary to determine the appropriate formulation.

摘要

针对低温、高盐、低渗透率油藏的大孔道和裂缝,本文研发了一种新型高强度凝胶ABP体系。该凝胶体系克服了常规凝胶在低温高盐条件下凝胶强度弱、不凝胶和易脱水等缺陷。研究了该凝胶体系的耐温耐盐性、封堵特性及提高采收率效果。在32℃、矿化度29500mg/L条件下,ABP体系配方为0.3%交联剂A+0.09%促凝剂B+3500mg/L聚合物溶液P。结果表明,随着温度升高,体系的延迟交联时间缩短,凝胶强度增大。ABP体系具有良好的封堵特性,在不同渗透率岩心中封堵率均大于99%。具有良好的调剖性能,在水驱基础上采收率提高了19.27%。在凝胶体系实际应用中,需要根据地层水矿化度和裂缝渗透率确定合适的配方。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d892/5448037/8d007583a790/IJAC2017-2319457.001.jpg

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