首页|高含水油藏CO2驱油与封存联合优化研究

高含水油藏CO2驱油与封存联合优化研究

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为实现高含水油藏CO2驱采收率最高、CO2封存量最大的多重目的,考虑CO2注入成本、驱油及封存收益等指标,建立基于经济净现值(NPV)的高含水油藏CO2驱油与封存联合优化目标函数,结合油藏数值模拟方法,运用随机扰动近似梯度算法(SPSA)对优化目标函数进行迭代求解.以胜利油田某高含水油藏为例,根据不同时刻油藏含水率不同的特点,设置不同转注CO2时机,分别开展注水和注CO2方案优化,对比2种注入方式下生产动态及NPV差异,分析注CO2时机对累积产油量及CO2封存量的影响,并确定最优转注CO2时机;此外,设置不同CO2注入价格、封存补贴方案,分析其对经济效益的影响.研究结果显示,为使高含水油藏CO2驱项目盈利,转注时含水率应低于0.97;当CO2注入价格为1.2元/m3,封存补贴为0.114元/m3时,高含水油藏转注CO2时机越早,收益越高.
Collaborative optimization of CO2 flooding and storage in high water cut reservoirs
In order to achieve the multiple purposes of the highest CO2 flooding recovery and the largest CO2 storage in high water cut reservoirs,an objective function of collaborative CO2 flooding and storage optimization for high water cut reservoirs based on economic net present value(NPV)was established by considering CO2 injection cost,CO2 flooding and storage benefits.Combined with the reservoir numerical simulation method,we used simultaneous perturbation stochastic approximation(SPSA)to solve the objective function iteratively.Taking a high water cut reservoir in Shengli Oilfield as an example,the different injection timings of water transferring to CO2 were set according to the different characteristics of water cut in the reservoir at different times.The opti-mization of water injection and CO2 injection schemes was carried out,respectively,and the differences in production behavoir and NPV under the two injection methods were compared.The influence of gas injection timing on cumulative oil production and CO2 storage was analyzed,and the optimal gas injection timing was determined.In addition,the effects of different gas injection prices and CO2 storage subsidy schemes on their economic benefits were analyzed.The results show that the water cut should be lower than 0.97 during waterf transferring CO2 injection to make the CO2 flooding project profitable in high water cut reservoirs.The high project profit can be guaranteed as CO2is injected earlier when the CO2 injection price is 1.2 yuan/m3,and the carbon subsidy is 0.114 yuan/m3.

CO2 floodingcollaborative optimizationCO2 storagereal-time optimizationhigh water cut reservoir

刘佳、孟凡坤、徐云峰、温成粤、李玉佳

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油气钻采工程湖北省重点实验室,湖北武汉 430100

长江大学石油工程学院,湖北武汉 430100

CO2驱油 联合优化 CO2封存 实时优化 高含水油藏

国家自然科学基金青年基金中国石油前瞻性基础性重大科技项目(十四五)

521040182021DJ1505

2024

油气地质与采收率
中国石油化工股份有限公司胜利油田分公司

油气地质与采收率

CSTPCD北大核心
影响因子:2.177
ISSN:1009-9603
年,卷(期):2024.31(3)
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