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稠油油藏多元热流体吞吐油藏参数界限研究 被引量:1

Research on Reservoir Parameters Limit of Multicomponent Thermal Fluid Stimulation in Heavy Oil Reservoir
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摘要 多元热流体为蒸汽、氮气、二氧化碳的高温高压混合气体,具有降低原油黏度,提高地层压力,改善油藏剖面,提高稠油油藏开发效果等作用。为研究适合多元热流体吞吐的稠油油藏条件,通过数值模拟方法,定量研究了地质流体参数对稠油油藏注多元热流体吞吐效果的影响程度,影响程度强弱确定了各参数界限。结果表明:高强度影响因素原油黏度应该低于6000 mPa·s,有效厚度大于3~11 m,中强度影响因素剩余油饱和度应该大于0.45~0.65,渗透率大于130×10^-3~1000×10^-3μm^2,低强度影响因素纯总比应该大于0.42,孔隙度大于0.20,油藏深度超过300 m。研究结果为稠油油藏多元热流体吞吐高效开发提供技术依据。 Multicomponent thermal fluid is a high temperature and high pressure gas mixture of steam,N 2 and CO 2,it can reduce the oil viscosity,increase the reservoir pressure,improve the reservoir profile and the development effect in heavy oil reservoir.In order to make clear the heavy oil reservoir conditions suited to multicomponent thermal fluid stimulation,The impact of geological-fluid parameters on multicomponent thermal fluid stimulation is studied quantitatively in heavy oil reservoir by numerical reservoir simulation,the limits of each parameter are determined according to the influence degree.The results show that high degree parameters are viscosity and effective thickness which should be less than 6000 mPa·s and larger than 3~11 m,respectively.Medium degree factors are remaining oil saturation and permeability,their value should larger than 0.45~0.65 and 130×10^-3~1000×10^-3μm^2,low level parameters include net to gross,porosity and reservoir depth,which should be larger than 0.42,0.2 and 300 m,respectively.The results provide a technical support of efficient multicomponent thermal fluid stimulation in heavy oil reservoirs.
作者 胡元伟 金德 木合塔尔 张磊 HU Yuan-wei;JIN De;MU He-taer;ZHANG Lei(Research Institute of Exploration&Development of Xinjiang Oil Field Company,Karamay 834000,China;Engineering&Technology company of Xinjiang Oil Field Company,Karamay 834000,China;Research Institute of Engineering&Technology of Xinjiang Oil Field Company,Karamay 834000,China)
出处 《科学技术与工程》 北大核心 2020年第21期8537-8542,共6页 Science Technology and Engineering
基金 国家科技重大专项(2016ZX05012-001)。
关键词 多元热流体 黏度 稠油油藏 开发效果 吞吐 界限 heavy oil reservoir development effect multicomponent thermal fluid viscosity stimulation limit
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