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11篇 您的检索式:作者名="Minakov"
    题名 作者 年代 出处 被引量
1纳米流体驱提高原油采收率的三维孔隙尺度模拟显示文摘基于不同渗透率岩心的三维微观模型,采用流体体积法对纳米流体驱油进行数值模拟;利用实验测得的含SiO_(2)纳米颗粒的悬浮液界面张力、接触角和黏度,针对质量分数为0~1%、具有不同粒径的SiO_(2)纳米颗粒的水基悬浮液,研究了纳米颗粒质量分数和粒径、驱替液流速、原油黏度和岩心渗透率对纳米流体驱油效率的影响。研究表明:采收率随着颗粒质量分数的增加而增加,纳米颗粒质量分数增加到0.5%时,与水驱相比采收率可提高约19%;纳米流体驱油采收率随着纳米颗粒粒径的减小而增加;在毛管数接近临界值的注入模式下使用纳米流体驱油对高黏低渗储集层提高采收率最为有效,且提高采收率幅度随着驱替速度的增加而减小;原油黏度越大,岩石渗透率越小,纳米流体驱油提高采收率的效果越明显。图16表2参37。MINAKOV Andrey Viktorovich GUZEI Dmitriy Viktorovich PRYAZHNIKOV Мaxim Ivanovich FILIMONOV Sergey Anatol'yevich VORONENKOVA Yulia Olegovna 2021石油勘探与开发2021,48,4:5
2High-current electron gun with a field-emission cathode and diamond grid显示文摘N. N. Dzbanovskii P. V. Minakov A. A. Pilevskii A. T. Rakhimov B. V. Seleznev N. V. Suetin A. Yu. Yur’ev 2005Technical Physics2005,,10:1
3PASES: An Energy-aware Design Space Exploration Framework for Wireless Sensor Networks 显示文摘Minakov I Passerone R 2013Journal of Systems Architecture2013,59,8:1
4Crystallization of polypropylene at various cooling rates显示文摘A. Gradys P. Sajkiewicz A.A. Minakov S. Adamovsky C. Schick T. Hashimoto K. Saijo 2005Materials Science & Engineering A2005,,:1
5Multi-agent Meta- search Sngine Based on Domain Ontology 显示文摘KANTEEV M MINAKOV I RZEVSKI G 2007Springer2007,,476:1
6Formation of the Eurasia Basin in the Arctic Ocean as inferred from geohistorical analysis of the anomalous magnetic field显示文摘V. Yu. Glebovsky V. D. Kaminsky A. N. Minakov S. A. Merkur’ev V. A. Childers J. M. Brozena 2006Geotectonics2006,,4:1
7Scanning microcalorimetry at high cooling rate 显示文摘ADAMOVSKY S A MINAKOV A A SCHICK C 2003Thermochim Acta2003,403,:1
8Field resting of oil wetting agents at samotlor field显示文摘Minakov I I 1997Oil Industry1997,6,:1
9Crystallization of polypropylene at various cooling rates显示文摘Gradys A Sajkiewicz P Minakov A A Adamovsky S Schick C Hashimoto T Saijo K 2005Mater Sci Eng2005,,:1
103D pore-scale modeling of nanofluids-enhanced oil recovery显示文摘The numerical modeling of oil displacement by nanofluid based on three-dimensional micromodel of cores with different permeability was carried out by the volume of fluid(VOF)method with experimentally measured values of interfacial tension,contact angle and viscosity.Water-based suspensions of SiO_(2) nanoparticles with a concentration of 0–1%and different particle sizes were considered to study the effect of concentration and size of nanoparticles,displacement fluid flow rate,oil viscosity and core permeability on the efficiency of oil displacement by nanofluid.The oil recovery factor(ORF)increases with the increase of mass fraction of nanoparticles.An increase in nanoparticles’concentration to 0.5% allows an increase in ORF by about 19% compared to water flooding.The ORF increases with the decrease of nanoparticle size,and declines with the increase of displacing rate.It has been shown that the use of nanosuspensions for enhanced oil recovery is most effective for low-permeable reservoirs with highly viscous oil in injection modes with capillary number close to the immobilization threshold,and the magnitude of oil recovery enhancement decreases with the increase of displacement speed.The higher the oil viscosity,the lower the reservoir rock permeability,the higher the ORF improved by nanofluids will be.MINAKOV Andrey Viktorovich GUZEI Dmitriy Viktorovich PRYAZHNIKOV Maxim Ivanovich FILIMONOV Sergey AnatoFyevich VORONENKOVA Yulia Olegovna 2021Petroleum Exploration and Development2021,48,4:0
11利用磁场异常地史分析研究北冰洋欧亚海盆的形成演化显示文摘通过校正俄罗斯和美国以前及最近所有磁测数据,建立了欧亚海盆新的综合磁场数据库和磁异常剖面图。磁测数据地史分析主要包括以下几个步骤:沿每条磁测线识别线性磁异常,计算北美板块和欧亚板块相对运动的欧拉旋转极位置,海底扩张速率的时空分析,以及板块重建等。本文建立了整个欧亚海盆新生代主要磁等时线样式(24、20、18、13、6、5、2a磁异常条带)。海盆西部的磁等时线样式与最近出版的磁等时线图一致(Brozena等,2003)。首次对海盆东部磁等时线进行了详细刻画,并扩展到拉普捷夫海大陆架区。建立了欧亚海盆海底扩张的主要阶段,每一阶段以特定扩张速率和扩张不对称程度为特征,沿着Gakkel海岭追踪得到的这些特征差别。每一特定阶段,建立了欧亚海盆海底扩张的系统模式。依据重力资料,勾画了板块间初始裂开时对应的洋陆过渡带的轮廓,并讨论了Gakkel海岭两侧磁场和海底地形差异特征。以最新及近期发表的数据为基础,详细讨论了欧亚海盆演化的阶段特征。研究成果与北大西洋和邻近的北极盆地的板块动力学机制具有很好的一致性。V. Yu. Glebovsky V.D. Kaminsky A.N. Minakov 韩冰(译) 杨丽娟(校对) 2011海洋地质2011,,1:0
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