
姓名:隋微波
职称:教授
教育和工作经历:
1999 - 2003 中国石油大学(北京),石油工程,学士
2002 - 2005 中国石油大学(北京),油气田开发,硕士
2005 - 2009 德克萨斯A&M大学(Texas A&M University),石油工程,博士
2009 - 2012 中国石油大学(北京)石油工程学院,讲师
2011 - 2015 中国石油大学(北京)人事处,副处长
2012 - 2021 中国石油大学(北京)石油工程学院,副教授
2021 - 至今 中国石油大学(北京)石油工程学院,教授
电子邮箱:suiweibo@cup.edu.cn
个人主页:
所在系所:石油工程学院
教学情况:《油藏工程(全英文)》本科生课程;《石油工程专业英语》本科生课程
研究方向:油气井分布式光纤监测理论模型与解释方法;数字岩心与微观渗流;非常规储层水力压裂裂缝扩展机理
招生方向:石油工程
代表性论文著作:
[1] 郭欢,隋微波,卢运虎,等.基于分布式光纤应变监测的水泥环完整性评价机制研究[J/OL].岩石力学与工程学报,1-13[2026-09-09].
[2] 韦世明,刘媛,陈勉,隋微波,金衍.基于高频光栅监测的水力压裂裂缝动态演化实验研究[J/OL].力学学报,1-14[2026-09-09].
[3] 李佳欣,隋微波,杨向同,等.基于分布式光纤应变感测的泥页岩水化力学响应特征研究[J].石油科学通报,2026,11(4):1082-1094.
[4] 隋微波,韦世明,王行,等.水力压裂分布式光纤监测方案与数据采集策略分析[J].石油科学通报,2026,11(3):734-756.
[5] 宋毅,曾波,孙玉铎,隋微波等.超深页岩储层水力压裂邻井光纤监测远场应变响应特征研究[J].石油科学通报,2026,11(3):690-706.
[6] 宋佳忆,隋微波,杜广浩等.水力压裂分布式光纤声波监测多频段数据特征分析方法[J].石油科学通报,2026,11(02).
[7] Song J, Sui W, Guo H, et al. Near-wellbore fracture diagnosis via strain decoupling from integrated in-well LF-DAS and DTS data[J]. Sensors, 2026, 26(6): 1813.
[8] Song J, Sui W, Du G, et al. Near-Wellbore Hydraulic Fracture Characterization by In-Well Fiber Optic LF-DAS and DTS[J]. Applied Sciences, 2026, 16(9): 4261.
[9] Mao Y, Chen M, Sui W, et al. Super-Resolution Enhancement of Fiber-Optic LF-DAS for Closely Spaced Fracture Monitoring During Hydraulic Fracturing[J]. Processes, 2026, 14(9): 1380.
[10] Mao Y, Chen M, Sui W, et al. Dynamic Inversion of Hydraulic Fracture Swarms Using Offset Well LF-DAS Data and Adaptive Particle Swarm Optimization[J]. Applied Sciences, 2026, 16(8): 3732.
[11] 方正,陈勉,杨向同,卢运虎,李佳欣,黄波,韦世明,隋微波,王溯.基于光纤应变监测的层理次生裂缝动态扩展室内试验研究[J].石油科学通报,2026,11(4):1032-1047.
[12] 王溯,隋微波,张鲲鹏,等.水平井压裂正交裂缝扩展诱发光纤应变演化特征研究[J].石油科学通报,2026,11(4):1065-1081.
[13] 毛渝,陈勉,隋微波,等.邻井分布式光纤监测水力裂缝扩展半解析正演模型[J].石油科学通报,2025,10(04):778-790.
[14] 郝亚龙,陈勉,韦世明,王琪琪,隋微波,张宇等.邻井LF-DAS光纤应变率信号响应正演模型[J].石油机械,2025,53(08):100-108.
[15] 朱炬辉,郑衣珍,何乐,宋佳忆,龚蔚,黄义涛,隋微波等.基于CFD-DEM的压裂水平井暂堵剂运移与封堵有效性研究[J].石油科学通报,2025,10(03):511-526.
[16] Guo, H., Sui, W., Song, J. et al. Fiber Optic Strain and Temperature Sensing for Gas-liquid Production Profiling. SPE-226773-MS. Paper presented at the SPE Offshore Europe Conference & Exhibition, Aberdeen, Scotland, UK, September 2025.
[17] Du, G., Sui, W., Song, J. et al. Data-Driven Characteristic Frequency Extraction and Operational Parameter Mapping in DAS Monitoring of Hydraulic Fracturing. SPE-226719-MS. Paper presented at the SPE Offshore Europe Conference & Exhibition, Aberdeen, Scotland, UK, September 2025.
[18] Song, J., W. Sui, et al. Near-Wellbore Fracture Diagnosis via Strain Decoupling from Integrated In-Well LF-DAS and DTS Data, URTEC-4257682-MS, paper presented at the SPE/AAPG/SEG Unconventional Resources Technology Conference, Houston, Texas, USA, June 2025.
[19] Li, Z.; Li, M.; Guo, H.; Wu, Y.; Sheng, L.; Jiao, J.; Li, Z.; Sui, W. Experimental Investigation of the Evaluation of the Cement Hydration Process in the Annular Space Using Distributed Fiber Optic Temperature Sensing. Sensors, 2025, 25, 958.
[20] Li, Z.; Wu, Y.; Yang, Y.; Li, M.; Sheng, L.; Guo, H.; Jiao, J.; Li, Z.; Sui, W. A Sensitive Frequency Band Study for Distributed Acoustical Sensing Monitoring Based on the Coupled Simulation of Gas–Liquid Two-Phase Flow and Acoustic Processes. Photonics 2024, 11, 1049.
[21] 桑宇,隋微波,曾波,等.深层天然裂缝性页岩储层水力压裂光纤监测远场应变分析[J].天然气工业,2024,44(05):56-67.
[22] 韦世明,郝亚龙,隋微波,等.不同倾角水力裂缝扩展的邻井光纤监测信号特征研究[J].石油科学通报,2024,9(05):764-776.
[23] Song, Jiayi, Sui, Weibo, He, Jinbao, et al. Combining DAS and DTS Measurements for Oil-Water Two-Phase Flow Profiling in Sucker Rod Pump Wells. SPE Paper presented at the ADIPEC, Abu Dhabi, UAE, October 2023 (SPE-216018-MS).
[24] 隋微波,温长云,孙文常,李俊卫,郭欢,杨艳明,宋佳忆.水力压裂分布式光纤传感联合监测技术研究进展[J].天然气工业,2023,43(02):87-103.
[25] Sui, W.; Wang, Y.; Li, J. Microscopic Study of Shale Anisotropy with SEM In Situ Compression and Three-Point Bending Experiments. Energies, 2023, 16, 2440.
[26] 隋微波,程思.基于卷积神经网络的砂岩数字岩心绝对渗透率计算方法[J].油气地质与采收率,2022,29(01):128-136.
[27] Sui W, Tian Y, Zheng Y, et al. Modeling Temporary Plugging Agent Transport in the Wellbore and Fracture with a Coupled Computational Fluid Dynamics–Discrete Element Method Approach[J]. Energy & Fuels, 2021, 35(2): 1422-1432.
[28] Sui W, Hou Y, Cheng Z. Microscopic Stress Sensitivity Analysis with In Situ SEM Study and Digital Core Deformation Simulation[J]. Geofluids, 2021.
[29] 隋微波,尤园,程思,郑衣珍.模拟退火法结合两点簇函数重构与表征页岩有机质各向异性[J].石油科学通报,2021,6(01):46-57.
[30] 隋微波,刘荣全,崔凯.水力压裂分布式光纤声波传感监测的应用与研究进展[J].中国科学:技术科学,2021,51(04):371-387.
[31] Sui W, Zhang D, Cheng S, et al. Improved DTS profiling model for horizontal gas wells completed with the open-hole multi-stage fracturing system[J]. Journal of Natural Gas Science and Engineering, 2020, 84: 103642.
[32] 隋微波,张迪,王梦雨,王秀宇.智能完井温度监测技术在油气田开发中的应用及理论模型研究进展[J].油气地质与采收率,2020,27(03):129-138.
[33] 隋微波,权子涵,侯亚南,程浩然.利用数字岩心抽象孔隙模型计算孔隙体积压缩系数[J].石油勘探与开发,2020,47(03):564-572.
[34] Sui W, Zhang D. Gas Rate Prediction in an Openhole Multi-Stage Fractured Well with a Revised Thermal Model[C]. SPE Asia Pacific Oil & Gas Conference and Exhibition, 2020.
[35] Sui W, Zhang D, Cheng S, et al. DTS Flow Profiling for A Horizontal Multi-Stage Fractured Well in Tight Gas Reservoirs by Improved Model Considering Open-Hole Packer Completion Scenario[C]. SPE Annual Technical Conference and Exhibition, 2020.
[36] Cheng Z, Ning Z, Wang Q, Sui W et al. Experimental Investigation of Boundary Conditions Effects on Spontaneous Imbibition in Oil-Water and Gas-Water Systems for Tight Sandstones[C]. SPE Middle East Oil and Gas Show and Conference, 2019.
[37] 王秀宇,巨明霜,杨文胜,隋微波.致密油藏动态渗吸排驱规律与机理[J].油气地质与采收率,2019,26(03):92-98.
[38] 程志林,宁正福,曾彦,王庆,隋微波,张文通,叶洪涛,陈志礼.格子Boltzmann方法模拟多孔介质惯性流的边界条件改进[J].力学学报,2019,51(01):124-134.
[39] 隋微波, 田英英, 姚晨昊. 页岩水化微观孔隙结构变化定点观测实验研究[J/OL]. 石油勘探与开发, 2018(05):1-8.
[40] 程志林, 隋微波, 宁正福, 高彦芳, 侯亚南, 常春晖, 李俊键. 数字岩芯微观结构特征及其对岩石力学性能的影响研究[J]. 岩石力学与工程学报, 2018, 37(02):449-460.
[41] 张爽,隋微波. 页岩储层有机质分布定量分析及重构模型. 油气地质与采收率,2016,23(02):p22-p28.
[42] 邹孟飞, 隋微波, 王旭东, 张爽. 基于非常快速模拟退火法的页岩岩心双重区域重构方法[J]. 油气地质与采收率, 2015, 22(05):117-122.
[43] 李星君,刘奎,隋微波. 气井非稳态生产条件下伤害表皮温度表征. 天然气与石油,2015,33(02):p73-p77.
[44] Xingru Wu, Weibo Sui, Yuanlin Jiang. Semiquantitative Applications of Downhole-Temperature Data in Subsurface Surveillance. SPE Production & Operation, 4(29), p323-p328, 2014.
[45] Weibo Sui, Mengfei Zou, Xudong Wang, Digital Core Reconstruction of Gas Shale Based on Dual-Region Strategy and Very Fast Simulated Annealing Algorithm, 2014 SPE/AAPG/SEG Unconventional Resources Technology Conference, 25-27 Aug 2014, Denver, Colorado, United States.
[46] Xingru Wu, Weibo Sui, Yuanlin Jiang, Innovative Applications of Downhole Temperature Data (SPE 167477), Proceedings of 2013 SPE Middle East Intelligent Energy Conference and Exhibition, 28–30 October 2013, Dubai, UAE.
[47] Weibo Sui, Ding Zhu, Determining Multilayer Formation Properties from Transient Temperature and Pressure Measurements in Gas Wells with Commingled Zones, Journal of Natural Gas Science and Engineering, 9(2012), p60-p72, 2012.
[48] W. Sui, C. Ehlig-Economides, D. Zhu, A. D. Hill, Determining Multilayer Formation Properties from Transient Temperature and Pressure Measurements. Petroleum Science and Technology, 30(7), p672-p684, 2012.
[49] Guo T, Zhang S, Wang L, Sui W et al. Optimization of proppant size for frac pack completion using a new equipment[J]. Journal of Petroleum Science and Engineering, 2012, 96: 1-9.
[50] 隋微波,张士诚,基于瞬态温度压力监测的分层测试反模型,油气地质与采收率,19 (1)p99-p103,2012
[51] 隋微波,张士诚,井下实时温度监测现场应用及理论模型研究新进展,测井技术,p502-p507,2011
[52] 隋微波,张士诚,多层合采油藏分层测试新方法可行性分析,油气地质与采收率,17 (5),p90-p94,2010
[53] Sui W, Zhu D, Hill A D, et al. Model for transient temperature and pressure behavior in commingled vertical wells[C]. SPE Russian Oil and Gas Technical Conference and Exhibition, 2008.
[54] Sui W, Zhu D, Hill A D, et al. Determining multilayer formation properties from transient temperature and pressure measurements[C]. SPE Annual Technical Conference and Exhibition, 2008.
[55] W. Sui, J. Mou, L. Bi, J. Deng, C. Ehlig-Economides, New Flow Regimes for Well Near Constant Pressure Boundary (SPE 106922), Proceedings of the 69th European Association of Geoscientists and Engineers Conference and Exhibition, 2007 SPE Latin American and Caribbean Petroleum Engineering Conference, Buenos Aires, Argentina, 15–18 April 2007.
[56] 隋微波,张士诚,低渗透复杂断块油藏整体压裂参数优化研究,石油勘探与开发,34 (1),p98-p103,2007.
主要科学研究项目:
1、国家自然科学基金面上项目,负责人
2、国家自然科学基金青年科学基金项目,负责人
3、教育部留学回国人员科研启动基金,负责人
4、中石油科技创新基金,负责人
5、多项油田应用课题(油气井分布式光纤监测方向),负责人
重要奖励与荣誉:
1、SPE杰出讲师(SPE Distinguished Lecturer),2025-2026年度
2、中国石油大学(北京)青年教师教学效果卓越奖,2019
社会与学术兼职:
1、SPE Award Committee,委员(2019)
2、SPE Distinguished Achievement Award for Petroleum Engineering Faculty,主席(2018)
3、SPE Distinguished Achievement Award for Petroleum Engineering Faculty,委员(2016-2017)
4、SPE Academia Committee,委员(2015-2017)
5、SPE Energy Information Committee,委员(2012-2017)
6、石油工程全英文本科专业负责人(2018至今)
7、中国石油大学(北京)本科教学督导专家(2023至今)