EXPERIENCE IN THE IMPLEMENTATION OF WATER-GAS EXPOSURE TECHNOLOGY IN THE FIELDS

S. Zakenov, L. Nurshakhanova
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Abstract

Deterioration of the qualitative and quantitative characteristics of the hydrocarbon resource base leads to an increase in the share of hard-to-recover reserves. In an environment where the share of hard-to-recover oil reserves in the oil industry is steadily increasing, the need to create effective methods to increase oil recovery is acute. The method of flooding at the present stage of the development of the oil industry is considered the most progressive, meeting the basic principles of oil field development. However, during flooding, a large proportion of oil reserves remains in the reservoir, and therefore, technologies are currently being sought and developed in all major oil companies that will increase the oil recovery coefficient. Currently, there is a growing interest in the application of the technology of water-gas exposure to oil formations to increase oil production. This is due to the fact that the water-gas effects combine the positive aspects of well-known oil production technologies, such as flooding and the method of pumping hydrocarbon gas into the reservoir. Experimental and theoretical studies have established that one of the most effective methods of oil recovery can be methods based on injection of hydrocarbon gases and water-gas mixtures into the reservoir. Experiments were conducted to study the mechanism of displacement and determine the coefficient of displacement of oil by gases and water in various combinations in relation to some fields. The experiments were carried out under conditions as close as possible to reservoir conditions: recombined or reservoir oil samples, core from productive deposits were used. The pressure and temperatures corresponded to their reservoir values. As the results of experiments, the increase in the oil displacement coefficient depends on the type of gas injected (hydrocarbon equilibrium and nonequilibrium with reservoir oil, acidic, inert, etc.) and modification of the injection technology of agents (sequential, alternate, joint). To study the expected results of testing the technology of water-gas exposure at the Kalamkas field, the experience of using this method at other fields is considered. The paper presents an analysis of the experience of implementing the technology of water-gas exposure at various locations. A review analysis of the results of the technology implementation was carried out to determine the advantages and possibilities of using the technology of watergas exposure in the conditions of the Mangystau field.
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有油气田水气暴露技术实施经验
油气资源基础定性和定量特征的恶化导致难以开采储量的比例增加。在石油行业中,难以开采的石油储量所占的份额正在稳步增加,因此迫切需要创造有效的方法来提高石油采收率。在石油工业发展的现阶段,驱油方法被认为是最先进的,符合油田开发的基本原则。然而,在驱油过程中,很大一部分石油储量仍留在储层中,因此,目前各大石油公司都在寻求和开发提高采收率系数的技术。目前,人们对油气暴露技术的应用越来越感兴趣,以提高石油产量。这是由于水气效应结合了众所周知的采油技术的积极方面,如驱油和向储层中泵入碳氢气体的方法。实验和理论研究表明,向储层注入烃类气体和水气混合物是最有效的采油方法之一。针对部分油田进行了驱替机理研究,确定了不同组合的气水驱油系数。实验是在尽可能接近油藏条件的条件下进行的:使用复合油或油藏油样品,取自生产性矿床的岩心。压力和温度对应于它们的储层值。实验结果表明,驱油系数的提高取决于注气类型(烃类平衡和非平衡与储层油、酸性、惰性等)和注气技术的改进(顺序、交替、联合)。为了研究Kalamkas油田水气暴露技术测试的预期结果,考虑了该方法在其他油田的应用经验。本文分析了不同地点实施水气暴露技术的经验。对技术实施的结果进行了回顾分析,以确定在Mangystau油田条件下使用水暴露技术的优势和可能性。
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