目录
姓 名 王锴
出生年月 1989年6月 性别
单位 石油工程学院
职称 副教授
Email
导师类型 硕导 兼职
研究方向
研究方向
油气井振动监测及应用
海洋油气井完整监测技术及应用
承担科研项目(近三年)
项目名称开始日期结项日期项目级别
复杂井筒多相流动安全保障技术研发 2021-04-01 2023-03-31
基于流量监测的溢漏早期发现系统 2021-08-24 2021-10-30
深水气井出砂诱发多频碰撞响应机理及砂粒径反演方法 2022-01-01 2024-12-01
基于多频碰撞响应驱动的深水气井出砂定量识别方法研究 2022-01-01 2024-12-31
钻头振动信号传收与信噪处理方法研究及样机开发 2022-11-03 2024-12-31
天然气水合物开发储层稳定性研究 2022-12-30 2025-12-31
深水油气及可燃冰工况钛合金油套管管柱设计及应用研究 2023-07-01 2025-06-30
海上中深层油藏高效开采技术调研英文文献购置合同 2023-08-25 2023-12-31
数字化转型关键技术调研英文文献下载合同 2023-09-21 2023-12-31
水下采油树完整性管理及出砂探测与冲蚀设计与分析 2023-12-01 2025-12-31
微砂粒碰撞输油管壁瞬态振动响应机理与含砂量表征方法 2024-01-01 2025-12-31
获得科研奖励(近三年)
奖励名称批准部门时间等级级别本人位次
海上油气井筒振动监测预警技术创新及装备研发 中国发明协会 2023 31 31 1
发表科研论文(近三年)
论文题目发表时间刊物名称卷期
A leakage particle-wall impingement based vibro-acoustic characterization of the leaked sand-gas pipe flow 2021 particoulogy 55
Multi-frequency characterization of particle-wall interactions in a solid-liquid dispersion conveying pipe flow using a non-intrusive vibration detection method 2021 Chemical Engineering Journal 413
Multi-scale characterization and identification of dilute solid particles impacting walls within an oil-conveying flow with an experimental evaluation by dual vibration sensors 2021 Chemical Engineering Journal 416
Triaxial vibration response performance characteristics of solid particles in elbows under slurry flow conditions 2023 IEEE Transactions on Instrumentation & Measurement 72
The fusion of deep learning and acoustic emission response methods for identifying solid particles in annular multiphase flows 2023 Geoenergy Science and Engineering 225
Experimentally investigating sand particle characteristics under annular multiphase flow conditions using a triaxial vibration method 2023 SPE Journal 28
Sand particle characterization and identification in annular multiphase flow using an intelligent method 2024 Physics of Fluids 36
Measuring solid particles in sand-carrying gas flow using multiscale vibration response statistics and deep learning algorithms 2024 Mechanical Systems and Signal Processing 209
Solid particle size characterization by a high-frequency collision response in pneumatic particulate flow 2024 Particuology 86