開年第一講
時間:3月19日(週六) 晚 20:00
主題:低場核磁共振基礎及流體流動通道特徵表徵方法
魏兵教授 在線直播
提高採收率 學術交流
專家介紹

魏兵 教授
西南石油大學、油氣藏地質與開發工程國家重點實驗室
- 國內外頁岩油提高採收率領域研究進展
- 低場核磁共振在EOR的研究概述
- 一維核磁共振在驅替、滲吸的應用案例
- D-T2、 T1–T2等二維核磁技術原理及應用案例

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低場核磁共振技術應用
- Characterizing Pore-level Oil Mobilization Processes in Unconventional Reservoirs assisted by State-of-the-Art Nuclear Magnetic Resonance Technique.Energy 2021.(SCI,EI/IF:7.147)
- Visualization of CO2 Foam Generation, Propagation and Sweep in a Complex 2D Heterogeneous Fracture Network[J]. Fuel 2021.(SCI,EI/IF:6.609)
- Design and Fabrication of Anionic/Cationic Surfactant Foams Stabilized by Liginin-Cellulose Nanofibrils (LCNFs) for Enhanced Oil Recovery[J]. Energy & Fuels.2021.(SCI,EI/IF:3.605)
- Effectiveness and sensitivity analysis of solution gas re-injection in Baikouquan tight formation, Mahu sag for enhanced oil recovery.Petroleum, 2020.(SCI,EI/IF:4.090)
- Nuclear Magnetic Resonance (NMR) Monitoring of Mass Exchange in a Low Permeability Matrix-Fracture Model during CO2 Cyclic Injection: A Mechanistic Study. SPE Journal,2019.(SCI,EI/IF:3.478)
- Nuclear Magnetic Resonance (NMR) Mapping of Remaining Oil Distribution in Sequential Rate Waterflooding Processes for Improving Oil Recovery. Journal of Petroleum Science and Engineering,2020.(SCI,EI/IF:4.346)
- Colind Wood. Pore-scale Monitoring of CO2 and N2 Flooding Processes in a Tight Formation under Reservoir Conditions using Nuclear Magnetic Resonance (NMR): A Case Study. Fuel, 2019.(SCI,EI/IF:6.609)
- Recent advances of surfactant-stabilized N2/CO2 foams in enhanced oil recovery. Fuel,2019.(SCI,EI/IF:6.609)

圖:David Sinton對魏教授成果評價
審稿意見:本篇文章對本領域科學研究以及石油界更深入(better understand)的理解CO2提高緻密油藏採收率機理具有重要意義。(SPE Journal, 2019, 25, 440-450. 石油領域內權威期刊)I believe this paper can contribute to the current knowledge in the field and help the petroleum industry to better understand the CO2 injection for enhanced oil recovery.
3.Clement Sanchez(歐洲科學院院士,法國巴黎第六大學教授,獲法國材料和冶金協會最高獎)

圖:Clement Sanchez對魏教授成果評價

圖:Hiroyuki Yano對魏教授成果評價

圖:Qinglin Wu對魏教授成果評價
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