首页|基质裂缝耦合下的致密油/页岩油动态渗流实验

基质裂缝耦合下的致密油/页岩油动态渗流实验

扫码查看
基于核磁共振和CT扫描技术建立了动态驱渗结合的物理模拟实验方法,分析了致密油/页岩油动态渗吸微观孔喉动用机制及影响动态渗吸开发效果的因素,模拟了致密油/页岩油压裂—焖井—返排—开采一体化的动态渗流过程,明确了不同开发阶段的生产动态特征及对采出程度的贡献.研究表明:致密油/页岩油储层的渗流可分为大孔隙与裂缝间驱替快速产出的强驱替弱渗吸、小孔隙逆向渗吸缓慢采出的弱驱替强渗吸、动态平衡时的弱驱替弱渗吸3个阶段.驱替压力越大,驱替采出程度越高,渗吸采出程度越低,但驱替压力过大注入水易突破前缘,降低采出程度.渗透率越高,渗吸、驱替采出程度越大,渗吸平衡时间越短,最终采出率越高.裂缝可有效加大基质与水的渗吸接触面积,降低油水渗流阻力,促进基质、裂缝间的油水置换,提高基质排油速度和采收率.压裂后进行焖井有利于流体的渗吸置换与增能蓄能,有效利用返排液的携带、开采阶段的排驱置换作用是提高采收率的关键.
Experiment of dynamic seepage of tight/shale oil under matrix fracture coupling
A physical simulation method with a combination of dynamic displacement and imbibition was established by integrating nuclear magnetic resonance(NMR)and CT scanning.The microscopic production mechanism of tight/shale oil in pore throat by dynamic imbibition and the influencing factors on the development effect of dynamic imbibition were analyzed.The dynamic seepage process of fracking-soaking-backflow-production integration was simulated,which reveals the dynamic production characteristics at different development stages and their contribution to enhancing oil recovery(EOR).The seepage of tight/shale reservoirs can be divided into three stages:strong displacement and weak imbibition as oil produced rapidly by displacement from macropores and fractures,weak displacement and strong imbibition as oil produced slowly by reverse imbibition from small pores,and weak displacement and weak imbibition at dynamic equilibrium.The greater displacement pressure results in the higher displacement recovery and the lower imbibition recovery.However,if the displacement pressure is too high,the injected water is easy to break through the front and reduce the recovery degree.The higher the permeability,the greater the imbibition and displacement recovery,the shorter the time of imbibition balance,and the higher the final recovery.The fractures can effectively increase the imbibition contact area between matrix and water,reduce the oil-water seepage resistance,promote the oil-water displacement between matrix and fracture,and improve the oil displacement rate and recovery of the matrix.The soaking after fracturing is beneficial to the imbibition replacement and energy storage of the fluid;also,the effective use of the carrying of the backflow fluid and the displacement in the mining stage is the key to enhancing oil recovery.

tight oilshale oilphysical simulationnuclear magnetic resonanceCT scanningdynamic imbibitionproduction performanceEOR

杜猛、杨正明、吕伟峰、李忠诚、王国锋、陈信良、亓翔、姚兰兰、张育豪、贾宁洪、李海波、常艺琳、霍旭

展开 >

中国科学院大学,北京 100049

中国科学院渗流流体力学研究所,河北廊坊 065007

中国石油勘探开发研究院,北京 100083

提高油气采收率全国重点实验室,北京 100083

中国石油吉林油田勘探开发研究院,吉林松原 138000

中国石油青海油田公司,甘肃敦煌 817500

展开 >

致密油 页岩油 物理模拟 核磁共振 CT扫描 动态渗吸 生产动态 提高采收率

中国石油科技重大专项中国石油CCUS科技重大专项

技2021-1172021ZZ01-03

2024

石油勘探与开发
中国石油天然气股份有限公司勘探开发研究院 中国石油集团科学技术研究院

石油勘探与开发

CSTPCD北大核心
影响因子:4.977
ISSN:1000-0747
年,卷(期):2024.51(2)
  • 28