Optimization of gas recycling technique in development of gas-condensate fields

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2023-03-30 DOI:10.33271/mining17.01.101
S. Matkivskyi
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Abstract

Purpose. The research purpose is to increase the efficiency of development of gas condensate fields with a high condensate yield in the reservoir gas and to develop optimal ways of increasing their hydrocarbon recovery. Methods. The effectiveness of the implementation of reservoir pressure maintenance technologies using dry gas for the development of gas condensate fields with a high condensate yield in the reservoir gas is studied on the basis of a heterogeneous 3D model using the Schlumberger Eclipse and Petrel software packages. The technological indicators of the development of gas-condensate reservoir are studied for different pressure values at the beginning of the dry gas injection. Calculations were made for pressures at the beginning of injection at the level of: 1.0 Рinit; 0.8 Рinit; 0.6 Рinit; 0.4 Рinit; 0.2 Рinit. Findings. It has been determined that when the dry gas is injected into a gas-condensate reservoir, reservoir pressure is maintained at a significantly higher level than it is in the case of depletion. This ensures stable operation of production wells over a longer period of the reservoir development. According to the research results, it should be noted that in the case of implementation of the reservoir pressure maintenance technology, a part of the precipitated condensate is transferred to the gas phase, which makes it necessary to extract it together with the reservoir gas. Based on the modeling results, the ultimate condensate recovery factor have been calculated. The calculation results indicate that in the case of the cycling process implementation, the ultimate condensate recovery factor of the gas-condensate reservoir increases by 7.26% compared to depletion development. Originality. Based on the calculation data analysis, the optimal pressure value at the beginning of dry gas injection into a gas-condensate reservoir has been determined, which is 0.842 Рinit. Practical implications. The use of the conducted research results will optimize the development system of gas-condensate fields with high initial condensate yield in the reservoir gas and increase the efficiency of development the explored hydrocarbon reserves in the conditions of a significant shortage of hydrocarbon raw materials in Ukraine. The conducted research results indicate the high technological efficiency of the reservoir pressure maintenance technology using dry gas.
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凝析气田开发中天然气再循环技术的优化
目的。研究目的是为了提高储层气中凝析油产量高的凝析气田的开发效率,寻找提高其油气采收率的最佳途径。方法。利用斯伦贝谢Eclipse和Petrel软件包,在非均质三维模型的基础上,研究了利用干气实施储层压力维持技术在开发高凝析气藏中的有效性。研究了干气注入初期不同压力值下凝析气藏开发的技术指标。在1.0 Рinit水平下计算注入开始时的压力;0.8Рinit;0.6Рinit;0.4Рinit;0.2Рinit。发现。已经确定,当干气注入凝析气藏时,储层压力保持在明显高于枯竭情况下的水平。这确保了在油藏开发的较长时期内生产井的稳定运行。根据研究结果,需要注意的是,在实施储层保压技术的情况下,有一部分沉淀凝析油被转移到气相,这使得有必要将其与储层气一起提取。根据模拟结果,计算了凝析油的最终采收率。计算结果表明,在循环开发过程中,凝析气藏的最终凝析油采收率比衰竭开发提高了7.26%。创意。通过对计算数据的分析,确定了凝析气藏干气注入初期的最优压力值为0.842 Рinit。实际意义。在乌克兰油气原料严重短缺的情况下,利用所开展的研究成果,将优化储层气中初始凝析产量高的凝析气田开发体系,提高已探明油气储量的开发效率。研究结果表明,干气储层保压技术具有较高的技术效率。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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