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深层低渗凝析气藏气驱适应性研究

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针对深层低渗凝析气藏由衰竭开采转变为气驱开发过程中适应性不明确的问题,综合采用PVT(地层流体高压物性)分析仪、长岩心驱替物理模拟技术和数值模拟计算方法,开展了一系列评价研究.通过对比分析注CO2、天然气(伴生气、CH4)、N2对凝析气体系高压物性影响与提高凝析油采出程度情况,明确了深层低渗凝析气藏气驱的适应性.实验结果表明:CO2在凝析油中的溶解度和溶解气油比最大,具有较强降低凝析气藏饱和压力和露点压力的特点,提高凝析油采出程度的效果最佳.同时,采用长岩心物理模拟技术针对CO2驱进行了注入时机、注入方式、注气速度优化研究,明确了在露点压力以上脉冲式注气效果更好,为注气开发技术政策及现场方案的实施提供数据支撑.
Gas flooding adaptability of deep low permeability condensate gas reservoir
The transition from depletion mining to gas flooding in deep low permeability condensate gas reservoirs poses significant adaptability challenges.To address these,a series of evaluation studies were conducted using the Pressure-Volume-Temperature(PVT)analyzer,long core displacement physical simulation technology,and numerical simulation calculations.This research specifically examines the impacts of CO2 injection,natural gas(associated gas or pure CH4),and nitrogen(N2)on the high-pressure physical properties of condensate gas systems and their potential to improve condensate oil recovery.Comparative analyses reveal that CO2,due to its high solubility and favorable gas-oil dissolution ratio in condensate oil,significantly reduces the saturation pressure and dew-point pressure of condensate gas reservoirs,thereby offering the most substantial improvement in oil recovery rates.Further optimization studies using long core physical simulation technology focused on injection timing,modes,and rates for CO2 flooding.It was determined that pulsed gas injection strategies are particularly effective when implemented above the dew-point pressure.These findings provide essential data to support the formulation of technical policies and field plans for gas injection development in such challenging reservoir conditions.

condensate gas reservoirdeep low permeabilitygas injection mediumgas flooding adaptabilityparameter optimization

李中超、齐桂雪、罗波波、许寻、陈华

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中国石化酸性气开发重点实验室,河南濮阳 457000

中国石化中原油田分公司,河南濮阳 457000

中国石化中原油田分公司勘探开发研究院,河南濮阳 457000

凝析气藏 深层低渗 注气介质 气驱适应性 参数优化

中国石化重点科技项目中国石化重点科技项目

P17003-4P19019-6

2024

油气藏评价与开发
中国石油化工集团公司华东石油局

油气藏评价与开发

CSTPCD北大核心
影响因子:0.461
ISSN:2095-1426
年,卷(期):2024.14(3)
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