CSS:恢复优化策略

E. Trigos, Eduardo Lozano, A. M. Jimenez
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引用次数: 2

摘要

本文的主要目的是分享某稠油油田十多年来的循环蒸汽增产(CSS)经验,该油田面临着注入能力低、出砂、蒸汽窜流、蒸汽效率低等诸多挑战。对于确定对CSS生产和效率影响较大的每个项目,开发了一种分析和优化方法。第一步是确定项目,重新收集信息并量化影响;然后由储层团队对信息进行分析,通过数值模拟等工具提出解决方案并进行评价;然后,找到的最佳解决方案是在田间进行试点,根据结果在全田范围内实施或重新种植,直到获得希望的结果。最后,采取了相应的纠正措施,以避免在今后的油田开发中出现类似的问题。课程学员被透露给该组织的成员。对于低注入能力的情况,这是在油田开发的第一阶段确定的;我们对实验室岩心进行了研究,发现了页岩膨胀的存在,这是主要原因。抑制剂粘土在实验室进行了测试,并在第一个循环中实施;对于下一步的发展,我们也获得了高压设置的蒸汽发生器。另一方面,在增产5次以上的井中发现了蒸汽窜;在模拟工具的帮助下,开发了一种注入此类井的方法,并在现场成功实施。在蒸汽中注入氮气、泡沫或凝胶等其他流体改善了低蒸汽效率;本文介绍了开发方法。本文收集了大量改进蒸汽循环增产的经验,并结合现场经验,采用试验室、数值模拟等工具,取得了一定的增产效果。本文介绍了实际数据场、CSS信息和开发方法。因此,本文对今后CSS的实现过程以及其他具有类似功能的领域具有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CSS: Strategies to Recovery Optimization
This paper was written with the main propose to share the experience of more than ten years of cyclic steam stimulation (CSS) in a heavy oil field with a big amount of challenges such as low injectivity, sanding, steam channeling, low steam efficiency, among others. For each item identified with a high impact on the CSS production and efficiency, a methodology to analyses and optimization was developed. the first step is identifying the item, recollect the information and quantify the impact; after that, the information is analyzed by the reservoir team, some solution is suggested and evaluated by numerical simulation and other tools; then, the best solution found is apply like a pilot on the field and according to the results it is implemented in a full field scale or replanting until to get the hope results. Finally, corrective actions are taken to avoid similar troubles in the future development of the field. Lesson learners are divulged to the members of the organization. For the case of low injectivity, this was identifying in the first stage of development of the field; we carried on lab cores to found the presence of swelling shales like the main causes. Inhibitors clays were test on lab and implemented in the first cycles; for the next steps of development we acquired steam generators with a high-pressure setting too. On the other hand, steam channeling was identified in wells with more of five cycles of stimulation; others wells with potential channeling was identified too, and a methodology to inject this kind of wells was development with the help of simulation tools and successfully implemented in field. The injection of other fluids with the steam like nitrogen, foam or gels improved the low steam efficiency; the development methodology is included in the paper. This papers include a lot of experiences in the improving of cyclic steam stimulation, test lab, numerical simulation and other tools are combined with the field experience obtaining an improve in the oil production. Real data field, CSS information and developed methodologies are included in the paper. For this reason, this paper is useful to future implementation of CSS process and in other fields with similar features.
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