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西南石油大学石油与天然气工程学院导师教师师资介绍简介-魏兵

本站小编 Free考研考试/2021-10-01

魏 兵
职 称:教授
职 务:复杂油藏三次采油研究中心执行主任
博导/硕导:博导
所属 部门:开发所
学科 专业:石油工程
研究 方向:提高采收率方法与理论
联系 方式:bwei@swpu.edu.cn
个人 主页:/


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研究领域
研究团队
联系方式

魏兵,教授,博士生导师,博士/博士后毕业于加拿大新不伦瑞克大学(University of New Brunswick),俄罗斯喀山联邦大学客座研究员,俄罗斯自然科学院通讯成员,四川省学术与技术带头人后备人选,全国矿业石油安全工程领域优秀青年科技人才,西南石油大学复杂油藏三次采油中心执行主任,复杂油气藏提高采收率青年科技创新团队带头人。主要从事非常规油藏提高采收率方法和理论研究,主持国家自然科学基金面上项目、青年基金,国家973项目、国家十三五科技重大专项、四川省面上基金、中石油科技创新基金、加拿大博士后基金等项目20 余项。获省部级科技进步二等奖 2项,出版英文专著2 部,申请国内国际专利14项,在石油、能源、化学化工主流发表学术论文84篇,其中SCI论文65篇,IF=191,国内外学术报告30余次,担任Frontiers in Chemistry (SCI二区,IF=3.8)和International Journal of Oil Gas and Coal Engineering(EI收录)客座副主编。
个人简历
●2019.12- 至今 西南石油大学石油与天然气工程学院/油气藏地质与开发工程国家重点实验室,教授/博导
●2015.01—2019.12 西南石油大学石油与天然气工程学院/油气藏地质与开发工程国家重点实验室,副教授
●2013.10—2014.11 加拿大University of New Brunswick,石油工程,博士后
●2009.09—2013.09 加拿大University of New Brunswick,石油工程,博士
●2006.09—2009.06 中国石油大学(北京),化学工程,硕士
●2002.09—2006.06 曲阜师范大学,化学工程,学士




主要研究项目
●基于纤丝纳米材料(CNF)高稳泡沫驱体系的构筑及液膜夹断-分离行为研究,国家自然科学基金面上项目,2020.1-2023.12,主持
●致密储层高效排驱模式及排驱机理研究,国家973项目,2015.1-2019.12,主持
●缝洞型稠油油藏注空气/CO2可行性实验, 国家十三五科技重大专项, 2016.1-2020.12,主持
●玛湖凹陷百口泉组致密储层注气(CO2、空气、N2)提高采收率可行性研究, 中石油, 2017.10-2019.10
●长庆致密油-CO2混相压力及界面张力规律测试, 北京大学, 2018.10-2019.5,主持
●高温高盐环境中纳米纤维素/有机碱杂化体系的构建及油水界面行为研究, 国家自然科学青年基金, 2019.1-2021.12,主持
●基于纳米纤维纳米液的构建及驱油机理研究, 中石油创新基金, 2015.9-2017.9,主持
●NCF表面功能化修饰及驱油机理研究,四川省面上基金, 2017.4-2019.3,主持
●加拿大博士后基金(Mitacs),原油在低渗油藏的流动行为及提高采收率技术研究,2013/11-2014/12,主持
●加拿大新不伦瑞克省和魁北克省联合基金(NB-Quebec Cooperation),功能性聚合物的流变性研究,2011/01-2012/12,主持




代表性成果

Peer-review Journals
65. 魏兵*,田庆涛,毛润雪,等. 纳米纤维素材料在油气田开发中的应用与展望. 油气地质与采收率. 已接收.
64. 魏兵*,尚静, 蒲万芬,卡杰特 瓦西里,赵金洲. 超临界CO2在致密油藏中的扩散前缘预测. 西南石油大学学报(自然科学版), 已接收
63. Bing Wei*, Tao Song, Yan Gao, et al. Effectiveness and sensitivity analysis of solution gas re-injection in Baikouquan tight formation, Mahu sag for enhanced oil recovery. Petroleum, accepted.
62. 魏兵*,尚静,相华, 等. 油藏条件对超临界CO2扩散行为及浓度场分布的影响规律. 油田化学, 已接收.
61. 魏兵*,宋涛,赵金洲, 等. 溶解气回注提高致密油藏采收率效果及敏感性分析—以新疆玛湖凹陷百口泉组为例. 西南石油大学学报(自然科学版), 2019, 41, 85-95.
60. Bing Wei*, Xiang Zhang, Runnan Wu, et al. Supercritical CO2-EOR in an Asphaltenic Tight Sandstone Formation and the Changes of Rock Petrophysical Properties Induced by Asphaltene Precipitation. Journal of Petroleum Science and Engineering, 2020, DOI:10.1016/j.petrol.2019.106515.
59. Bing Wei*, Xiang Zhang, Jiang Liu, et al. Adsorptive Behaviors of Supercritical CO2 in Tight Porous Media and Triggered Chemical Reactions with Rock Minerals during CO2-EOR and –Sequestration. Chemical Engineering Journal, https://doi.org/10.1016/j.cej.2019. 122577.
58. Bing Wei*, Ke Gao, Tao Song, et al. Nuclear Magnetic Resonance (NMR) Monitoring of Mass Exchange in a Low Permeability Matrix-Fracture Model during CO2 Cyclic Injection: A Mechanistic Study. SPE Journal. SPE-199345-PA.
57. Jingpin Liu*, Zhiwen Dai, Congjun Liu, Kaihe Lv, Xianbin Haung, Jinsheng Sun, Bing Wei*. Inhibition of the Hydration Expansion of Sichuan Gas Shale by Adsorption of Compounded Surfactants. Energy undefinedamp; Fuels. 2019, 33, 6020-2026.
56. Bing Wei*, Yuanyuan Wang, Runxue Mao, et al. Design of Nanocellulose Fibrils containing Lignin Segment (L-NCF) for Producing Stable Liquid Foams as “Green” Flooding Agents for Oil Recovery. ACS Sustainable Chemstry undefinedamp; Engineering. 2019, 7, 11426-11437..
55. Bing Wei*, Jian Ning, Runxue Mao, et al. Rational Design and Fabrication of an Alkali-induced O/W Emulsion Stabilized with Cellulose Nanofibrils (CNFs): Implication for Eco-friendly and Economic Oil Recovery Application. Soft Matter. 2019, 15, 4026-6034..
54. Bing Wei*, Xiang Zhang, Runnan Wu, Peng Zou, Ke Gao, Xinguang Xu,*, Wanfen Pu, 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, 246, 34-41.
53. Yang Yang, Wanfen Pu, Xingguang Xu, Bing Wei*, Colin Wood*. Scalablesynthesisofcore-shellmicrogelparticlesusingthe‘drywater’method. Chemical Communications. 2019, 55, 2849-2852
52. Lin Sun*, Baojun Bai*, Bing Wei*, Wanfen Pu, et al. Recent advances of surfactant-stabilized N2/CO2 foams in enhanced oil recovery. Fuel, 2019, 241, 83-93.
51. Xiang Zhang, Bing Wei*, Jing Shang, Ke Gao, et al. Alterations of Geochemical Properties of a Tight Sandstone Reservoir Caused by Supercritical CO2-Brine-Rock Interactions in CO2-EOR and Geosequestration. Journal of CO2 Utilization. 2018, 28, 408-418.
50. Kexing Li*, Xueqi Jing, Dan Du, Wanfen Pu, Bing Wei*. Pore-level investigations on the oil displacement mechanisms of a viscoelastic surfactant in porous media. Journal of Petroleum Science and Engineering. 2019, 173, 748-757.
49. Bing Wei*, Qinzhi Li, Jian Ning, Yuanyuan Wang, Lin Sun, Wanfen Pu. Macro- and Micro-scale Observations of a Surface-functionalized Nanocellulose based Aqueous Nanofluids in Chemical Enhanced Oil Recovery (C-EOR). Fuel, 2019, 1321-1333.
48. Jian Ning, Bing Wei*, Runxue Mao, Yuanyuan Wang, Jing Shang, Lin Sun. Pore-Level Observations of an Alkali-Induced Mild O/W Emulsion Flooding for Economic Enhanced Oil Recovery. Energy undefinedamp; Fuels, 2018, 32, 10595-10604.
47. Bing Wei,* Jian Ning, Jielin He, et al. Relation between brine-crude oil-quartz contact angle formed on flat quartz slides and in capillaries with brine composition: Implications for low-salinity waterflooding. Colloid and surface A: Physicochemical and Engineering Aspects 2018, 555, 660-667.
46. Bing Wei*, Peng Zou, Jiang Shang, et al. Integrative Determination of the Interactions between SARA Fractions of an Extra-heavy Crude Oil during Combustion. Fuel, 2018, 234, 580-587.
45. Shuai Zhao, Wanfen Pu*, Bing Wei*, Xingguang Xu*. A comprehensive investigation of polymer microspheres (PMs) migration in porous media: EOR implications. Fuel, 2019, 235, 249-258.
44. Bing Wei*, Yuanyuan Wang, Yangbing Wen, et al. Bubble Breakup Dynamics and Flow Behaviors of a Surface-functionalized Nanocellulose based Nanofluid Stabilized Foam in Constricted Microfluidic Devices. Journal of Industrial and Engineering Chemistry, 2018, 68, 24-32.
43. 吴润楠,魏兵*,邹鹏,等. 超临界CO2对普通稠油和超稠油物性的影响规律研究. 油田化学, 2018, 35, 440-446.
42. 蒲万芬, 沈超, 唐兴建, 魏兵*, 赵娜, 梅子来. 化学驱体系油水界面扩张粘弹性研究进展. 油田化学, 2018, 35, 562-570.
41. 宁健, 魏兵*, 高炎, 王牧明, 蒲万芬, 王崇阳, 王生奎. 低成本O/W型乳液与岩心孔吼配伍性及其驱油效率. 油田化学, 2018, 35, 328-332.
40. Wanfen Pu*, Shuai Zhao, Song Wang, Bing Wei*, Chengdong Yuan, Yibo Li. Investigation into the migration of polymer microspheres (PMs) in porous media: Implications for profile control and oil displacement. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2018;265:265-275.
39. Bing Wei*, Peng Zou, Xiang Zhang, Xingguang Xu, Colin Wood, Yibo Li. Investigations of Structure-Properties-Thermal Degradation Kinetics Alterations of Tahe Asphaltenes Caused by Low Temperature Oxidation. Energy undefinedamp; Fuels. 2018, 32, 1506–1514.
38. Wanfen Pu, Chao Shen, Bing Wei*, Yang Yang, Yibo Li. A comprehensive review of polysaccharide biopolymers for enhanced oil recovery (EOR) from flask to field. Journal of Industrial and Engineering Chemistry. 2018, 61, 1-11.
37. Bing Wei*, Hao Li, Qinzhi Li, Laiming Lu, etc. Investigation of Synergism between Surface-grafted Nano-cellulose and Surfactants in Stabilized Foam Injection Process. Fuel. 2017, 207, 352-364.
36. Wanfen Pu, Feng Jiang, Pei Chen, Bing Wei*. POSS Based Hydrogel with Mechanical Robust, Cohesiveness and Rapid Self-Healable without healing for times by Electrostatic Interaction. Soft matter. 2017, DOI: 10.1039/C7SM01492A.
35. Bing Wei*, Runnan Wu, Laiming Lu, et al. Influence of Individual Ions on oil/Brine/Rock Interfacial Interactions and Oil?Water Flow Behaviors in Porous Media. Energy undefinedamp; Fuels, 2017, 31, 12035–12045.
34. Bing Wei*, Laiming Lu, Wanfen Pu*, et al. Production dynamics of CO2 cyclic injection and CO2 sequestration in tight porous media of Lucaogou formation in Jimsar sag. Journal of Petroleum Science and Engineering. 2017, 157, 1084-1094.
33. Bing Wei*, Hao Li, Qinzhi Li, et al. Stabilization of Foam Lamella Using Novel Surface-GraftedNanocellulose-Based Nanofluids. Langmuir, 2017, 33, 5127-5139.
32. Bing Wei*, Laiming Lu, Qinzhi Li, et al. Mechanistic Study of Oil/Brine/Solid Interfacial Behaviors during Low-Salinity Waterflooding Using Visual and Quantitative Methods. Energy undefinedamp; Fuels, 2017, 31, 6615-6624.
31. Qinzhi Li, Bing Wei*, Laiming Lu, etc. Investigation of physical properties and displacement mechanisms of surface-grafted nano-cellulose fluids for enhanced oil recovery Fuel. 2017, 207, 352-364.
30. 蒲万芬, 王崇阳, 李一波, 魏兵*, 金发扬. 致密油储层CO2驱核磁共振实验研究, 科学技术与工程, 2017, 17, 30-34.
29. 魏兵*. 一种驱油用高稳定性多糖类聚合物的物理性能. 油田化学, 2017, 1, 103-107.
28. Yibo Li, Yafei Chen, Dong Li, Wanfen Pu, Bing Wei*. Viscosity profile prediction of a heavy crude oil during lifting in two deep artesian wells. Chinese Journal of Chemcial Engineering. 2017, i:10.1016/j.cjche.2016.11.014.
27. Wanfen Pu, Feng Jiang, Bing Wei*, et al. A Gel-like Comb Micro-Block Hydrophobic Associating Polymer: Synthesis, Solution Property and the Sol-Gel transition at Semi-Dilute Region. Macromolecular Research. 2017, 25, 151-157.
26. Wanfen Pu, Feng Jiang, Bing Wei*, et al. Influences of Structure and Multi-intermolecular forces on Rheological and Oil Displacement Properties of Polymer Solutions in the Presence of Ca2+/Mg2+. RSC Advances, 2017, 7, 4430-4436.
25. Bing Wei*, Hao Gao, Wanfen Pu*, Fanqi Zhao, et al. Interactions and Phase behaviors between Oleic phase and CO2 from Swelling to Miscibility in CO2-based Enhanced Oil Recovery (EOR) Process: A Comprehensive Visualization Study. Journal of Molecular Liquids. 2017, 232, 277-284.
24. Wanfen Pu, Zhezhi Liu, Yibo Li, Bing Wei*, et al. A novel insight of laboratory investigation and simulation for high pressure air injection in light oil reservoir. Journal of Natural Gas Science and Engineering. 2017, 38, 333-344.
23. Qinzhi Li, Wanfen Pu, Bing Wei*, et al. Static adsorption and dynamic retention of an anti-salinity polymer in low permeability sandstone core. Journal of Applied Polymer Science. 2016, DOI: 10.1002/app.44487.
22. Qinzhi Li, Bing Wei*, Yan Xue, et al. Improving the physical properties of nano-cellulose through chemical grafting for potential use in enhancing oil recovery. Journal of Bioresources and Bioproducts. 2016, 1, 186-191.
21. Fayang Jin, Zhezhi Liu, Wanfen Pu*, Dong Zhong, Chengdong Yuan, Bing Wei*. Experimental Study of In-situ CO2 Foam Technique and Application in Yangsanmu Oilfield. Journal of Surfactants and Detergents. 2016, 19, 1231-1240.
20. Wanfen Pu, Yang Yang*, Bing Wei*, Chegdong Yuan. The Potential of a β-Cyclodextrin/Adamantane Modified Copolymer in Enhancing Oil Recovery through Host- Guest Interactions. Industrial and Engineering Chemistry Research. 2016, 55, 8679-8689.
19. Bing Wei*, Laiming Lu, Hao Li, Yan Xue. Novel Wax-Crystal Modifier based on β-Cyclodextrin: Synthesis, Characterization and Behavior. Journal of Industrial and Engineering Chemistry. 2016, 43, 86-92.
18. Wanfen Pu, Bing Wei*, Fayang Jin, etc. Experimental investigation of CO2 huff-n-puff process for enhancing oil recovery in tight reservoirs. Chemical Engineering Research and Design. 2016, 111, 269-276.
17. Bing Wei*, Qinzhi Li, Fayang Jin, Hao Li, Chongyang Wang. The Potential of a Novel Nano-fluid in Enhancing Oil Recovery. Energy undefinedamp; Fuels. 2016, 30, 2882-2891.
16. Kexing Li*, Xueqi Jin, Hao Ren, Bing Wei*. Laboratory Study Displacement Efficiency of Viscoelastic Surfactant Solution in EOR. Energy undefinedamp; Fuels. 2016, 30, 4467-4474.
15. Bing Wei*, Hao Li, Yan Xue. A facile approach to synthesize a “star-like” material based on β-cyclodextrin for enhancing the flowability of paraffinic oils. Journal of Macromolecular Science Part A. 2016, 53, 452-456.
14. Bing Wei*, Hao Li, Lingle Kong. Flow Characteristics of Partially Hydrolyzed Polyacrylamides during Converging into a Capillary. Journal of Macromolecular Science, Part B. 2016, 5, 483-493.
13. Wanfen Pu, Feng Jiang, Yanyan He, Bing Wei*, Yanli Tang. Synthesis of a Novel Comb Micro-Block Hydrophobically Associating Copolymer for Ca2+/Mg2+ Resistance. RSC Advances. 2016, 6, 43634-43637.
12. Kexing Li*, Xueqi Jing, Song He, Bing Wei*. Static Adsorption and Retention of Viscoelastic Surfactant in Porous Media: EOR Implication. Energy undefinedamp;Fuels. 2016, 30, 9089-9096.
11. Bing Wei*, Laiming Lu, Wanfen Pu, et al. From Phase Behavior to Understand the Dominant Mechanism of Alkali-Surfactant-Polymer Flooding in Enhancing Heavy Oil Recovery. Journal of Surfactants and Detergents. 2016, 20, 355-366.
10. Bing Wei*. β-Cyclodextrin associated polymeric systems: Rheology, flow behavior in porous media and enhanced heavy oil recovery performance. Carbohydrate Polymers. 2015, 134, 398-405.
9. Bing Wei*. Flow Characteristics of Three Enhanced Oil Recovery Polymers in Porous Media. Journal of Applied Polymer Science. 2015, 132, DOI: 10.1002/app.41598.
8. Bing Wei, Laura Romero-Zeron,* Denis Rodrigue. Evaluation of Two New Self-assembly Polymeric Systems for Enhanced Heavy Oil Recovery. Industrial and Engineering Chemistry Research. 2014, 53, 16600-16611.
7. Bing Wei*. Recent advances on mitigating wax problem using polymeric wax crystal modifier. Journal of Petroleum Exploration undefinedamp; Production Technology. 2014, 5, 1-11.
6. Bing Wei*, Laura Romero-Zeron. The Evaluation of a Technological Trend in Polymer Flooding for Heavy Oil Recovery. Petroleum Science and Technology. 2014, 32, 2396-2404.
5. Bing Wei, Laura Romero-Zeron,* Denis Rodrigue. Formulation of a Self-Assembling Polymeric Network System for Enhanced Oil Recovery Applications. Advances in Polymer Technology. 2014, 33-1082-1088.
4. Bing Wei, Laura Romero-Zeron,* Denis Rodrigue. Novel self-assembling polymeric system based on a hydrophobic modified copolymer: Formulation, rheological characterization, and performance in enhanced. Polymers for Advanced Technologies. 2014, 25, 732-741.
3. Bing Wei, Laura Romero-Zeron,* Denis Rodrigue. Improved Viscoelasticity of Xanthan Gum Through Self-Association With Surfactant: beta-Cyclodextrin Inclusion Complexes for Applications in Enhanced Oil Recovery. Polymer Engineering and Science. 2014, 55, 523, 532.
2. Bing Wei, Laura Romero-Zeron,* Denis Rodrigue. Mechanical Properties and Flow Behavior of Polymers for Enhanced Oil Recovery. Journal of Macromolecular Science, Part B. 2014, 53, 625-644.
1. Bing Wei, Laura Romero-Zeron,* Denis Rodrigue.Oil displacement mechanisms of viscoelastic polymers in enhanced oil recovery (EOR): a review. Journal of Petroleum Exploration undefinedamp; Production Technology. 2013, 4, 113-121.
Conference Paper and Presentation
12. Bing Wei, Shengen Chen, Qingtao Tan, et al. In-situ Generation and Propagation of a Nanocellulose Reinforced Supercritical CO2 Foam in Fractured Tight Formations for Conformance control. SPE- 200336, SPE Improved Oil Recovery, Tulsa, USA, 2020.
11. Bing Wei, Ke Gao, Xiang Zhang, et al. Mobilizing Tight Matrix Oil through CO2 Huff-n-puff Method in a Fractured Sandstone Rock: A Case Study. SPE-196114, SPE Annual Technical Conference and Exhibition,Calgary, Canada, 2019.
10. Tianhong Zhao, Ying Chen, Wanfen Pu, Bing Wei, et al. Enhanced Oil Recovery Using a Potential Nanofluid Based on the Halloysite Nanotube/Silica Nanocomposites. SPE-193641, SPE International Conference on Oilfield Chemistry, Galveston, Texas, USA, 2019.
9. Bing Wei, Yuanyuan Wang, et al. Relation between Chemical Composition of a "Green" Nanofluid and Its Foam Film Stabilization for Robust Foam Injection EOR. SPE-193633, SPE International Conference on Oilfield Chemistry, Galveston, Texas, USA, 2019.
8. Bing Wei, Xiang Zhang, Laiming Lu, et al. Re-defining the Potential-Determining-Ions (PDIs) for Low Salinity Effect (LSE) based on Oil/Brine/Solid Interfacial Behaviors and Oil Water Relative Permeability. SPE-191976, SPE Asia Pacific Oil undefinedamp; Gas Conference and Exhibition, Brisbane, Australia, 2018.
7. Bing Wei, Jian Ning, etc. A Smart Emulsion Flooding for Economic Chemical EOR: A Block 9 Case Study. Paper SPE-190352, SPE EOR Conference at Oil undefinedamp; Gas West Asia, Muscat, Oman, 2018.
6. Bing Wei, Qinzhi Li, Yuanyuan Wang, Fayang Jin, ect. Nano-suspension in Enhanced Oil Recovery (EOR) using Macro and Micro Methods. PaperSPE-190283, SPE Improved Oil Recovery Conference Tulsa, Oklahoma, USA, April 14 - 16, 2018.
5. Bing Wei, Qinzhi Li, et al. Green EOR utilizing Well-defined Nano-cellulose based Nano-fluids from Flask to Field. Paper SPE-188174,Abu Dhabi International Petroleum Exhibition and Conference (ADIPEC), 2017.
4. Bing Wei, Xiang Zhang, Runnan Wu, et al. Production Response of Supercritical CO2 Cyclic Injection and CO2 Sequestration Potential in Tight Porous Media of Lucaogou Formation in Jimsar Sag. Paper SPE-188765, Abu Dhabi International Petroleum Exhibition and Conference (ADIPEC), 2017.
3. Bing Wei. Displacement mechanisms of high pressure air injection (HPAI) in low permeability reservoir. International Thermal EOR conference. Invited talk. Kazan, Russia, June 18-23, 2017.
2. Yan Xue, Xinyong Wang, Bo Zhang, Bing Wei, Zhongbin, Ye. Preparation and Evaluation of a Temperature- and Salinity-Responsive Swellable Hydrogel as Intelligent Plugging Agent. Paper SPE-184532-MS, SPE International Conference on Oilfield Chemistry, 2017.
1. Bing Wei, Shishi Pang, Wanfen Pu, et al. Mechanisms of N2 and CO2 Assisted Steam Huff-n-Puff Processes in Enhancing Heavy Oil Recovery: A Case Study using Experimental and Numerical Simulation. Paper SPE-184532-MS, 20th Middle East Oil undefinedamp; Gas Show and Conference, SPE-184532-MS, 2017.






非常规油藏提高采收率方法与理论
1.基质-裂缝间传质扩散行为理论
2.物质/能量均衡波及方法与理论
3. 高效排驱方法与理论




提高采收率团队现有教授/博导3人,副教授6人,讲师1人,博士12人,硕士40余人。团队在在化学驱(聚合物驱、表面活性剂驱、聚表二元驱,泡沫驱)、调剖和堵水、空气及空气泡沫驱领域具有扎实的理论基础和丰富的科研实践经验。团队出版专著2部,发表学术论文150余篇,其中SCI收录50余篇,EI收录20多篇;授权发明专利5项,软件著作权1项。获省部级科技进步二等奖2项。近年来,团队承担了堵水方面的国家重大专项7项、国家自然科学基金5项、省部级重点攻关项目8项及国际合作项目3项,三大石油公司项目100余项,积累了丰富的理论基础及现场应用经验,某些成果在国内很多油田得到了推广应用。


E-mail:bwei@swpu.edu.cn
地址:四川省成都市新都区新都大道8号西南石油大学研发楼305B
邮编:610500


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