CO2驱油与封存安全监测体系的构建及实践 ——以黄土塬地区特低渗透油藏为例
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刘瑛(1976—),女,浙江临海人,高级工程师,从事油气田开发方面的研究与管理工作。E-mail:liuy_2012@163.com。

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国家重点研发计划项目“二氧化碳提高油藏采收率与地质封存一体化关键技术及应用示范”(2022YFE0206700)和“CO2驱油技术及地质封存安全监测”(2018YFB0605500),陕西省青年科技新星项目“促进CO2与原油混相的伴生气体系构筑及其改善CO2驱油效果评价”(2021KJXX-86)。


Establishment and practice of safety monitoring system during CO2 flooding and storage:A case study of ultra-low permeability reservoirs in loess tableland
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    摘要:

    黄土塬地区地表条件复杂,特低渗透油藏CO2驱井网密度大、注入压力高、易气窜以及为减缓气窜以水气交替开发为主的特点造成CO2泄漏点源多、强度高,以致该区域CO2监测点位布局和监测精度要求高,现有安全监测体系难以适应。通过对黄土塬地区特低渗透油藏CO2泄漏风险进行识别,分析CO2在地质体的空间运移特征,构建了涵盖盖层、井筒、深层和浅层地下水、地表土壤、地表水和大气的立体化多指标CO2安全监测体系,并在此基础上,开展了矿场CO2安全监测实践,进一步建立了CO2封存安全评价体系。安全监测和评价结果表明,CO2注入后各指标未出现异常,试验区未发生CO2地质泄漏,CO2封存安全等级为Ⅰ级。

    Abstract:

    The loess tableland has complex surface conditions,and CO2 flooding in ultra-low permeability reservoirs faces the high density of well patterns,the high injection pressure,and the easy gas channeling. Moreover,the development is characterized by water-alternating-gas injection to mitigate gas-channeling.As a result,there are multiple CO2 leakage points and high intensity in this area,so the layout and monitoring accuracy of CO2 monitoring points are demanding,and the existing safety monitoring systems are hardly applicable. In view of these problems,according to the identification of CO2 leakage risks in ultra-low permeability reservoirs in the loess tableland and the analysis of CO2 spatial migration in geological bodies,a three-dimensional multi-index CO2 safety monitoring system was established,covering cap rock,wellbores,deep and shallow groundwater,soil,surface water,and atmosphere. Besides,CO2 safety monitoring was practically carried out to further build a safety evaluation system of CO2 storage. From the results of safety monitoring and evaluation,there was no abnormality for all indexes after CO2 injection and no CO2 geological leakage occured in the test area. The safety of CO2 storage was at the levelⅠ.

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刘瑛,王香增,杨红,梁全胜,沈振振,王伟,王维波,郑晶,康元勇. CO2驱油与封存安全监测体系的构建及实践 ——以黄土塬地区特低渗透油藏为例[J].油气地质与采收率,2023,30(2):144~152

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  • 在线发布日期: 2023-05-10