Complex matrix treatment technologies selection and adaptation for the injection wells of the Republic of Tatarstan oilfields

IF 0.8 Q3 ENGINEERING, PETROLEUM
Georesursy Pub Date : 2022-12-20 DOI:10.18599/grs.2022.4.8
A. Lutfullin, E. M. Abusalimov, A. E. Folomeev, A. R. Khatmullin, A. Sharifullin, M. R. Sitdikov
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Abstract

Nowadays, oil fields on the territory of the Republic of Tatarstan are developed with application of systems for reservoir pressure maintenance, involving injection of large volumes of water into the formation. Efficiency of waterflooding depends on the quality of the injected agent, and, despite the use of various technologies of preparation and treatment of injected water, with the lapse of time critical matrix porosity and permeability inevitably decreases. In this work the main sources of injection wells critical matrix clogging are considered: mechanical impurities, oil products and scales formation, and the results of the component composition analysis of deposits from cluster pumping stations are given. Using the Oddo-Thomson methodology, it is revealed that injected water is prone to calcite and barite deposition at bottomhole conditions. Physicochemical and core-flooding study of several reagents for removing colmatants: acid compositions, hydrocarbon solvents and complexing agents were carried out and their optimal formulations were determined. The matrix treatment technology, including the sequential injection of compositions based on hydrochloric and mud acids, was substantiated. An algorithm for calculating the optimal reagent volume has been developed on the basis of research data on the mineralogical composition of mechanical impurities and ionic composition of injected water. Four types of matrix treatment technologies were determined for the conditions of injection wells at the Romashkinskoye oil field Devonian formation, taking into account the composition of colmatant, and acid treatment designs were developed.
鞑靼斯坦油田注水井复杂基质处理技术选择与适应
如今,鞑靼斯坦共和国境内的油田都采用了储层压力维持系统,包括向地层注入大量水。注水效率取决于注入剂的质量,尽管使用了各种注入水的制备和处理技术,但随着时间的推移,基质的孔隙度和渗透率不可避免地会降低。本文考虑了注水井临界基质堵塞的主要来源:机械杂质、油品和结垢,并给出了丛式泵站沉积物成分分析的结果。利用Oddo-Thomson方法,揭示了注入水在井底条件下容易沉积方解石和重晶石。对酸性组分、烃类溶剂和络合剂等几种除垢剂进行了物理化学和岩心驱油研究,确定了它们的最佳配方。基质处理技术,包括基于盐酸和泥浆酸的组合物的顺序注入,得到了证实。根据机械杂质矿物组成和注入水离子组成的研究数据,开发了一种计算最佳试剂体积的算法。针对Romashkinskoye油田泥盆纪组注水井的条件,考虑到冷却剂的组成,确定了四种类型的基质处理技术,并制定了酸处理设计。
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来源期刊
Georesursy
Georesursy ENGINEERING, PETROLEUM-
CiteScore
1.50
自引率
25.00%
发文量
49
审稿时长
16 weeks
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