团队成员

王宁羽

副研究员

地址:北京市海淀区清华大学泥沙馆A208室

邮编:100084

E-mail:wang-ningyu@tsinghua.edu.cn

教育背景

2015.082021.05:The University of Texas at Austin  石油工程系  哲学博士

2012.082015.01:清华大学  航天航空学院  工学硕士

2008.082012.07:清华大学  航天航空学院  工学学士


工作履历

2024.06至今:清华大学水圈科学与水利工程全国重点实验室  副研究员

2022.092024.01:The University of Texas at Austin  石油工程系  副研究员

研究领域

管道、渠道、河道、航道、港口、湖泊、水库清淤

管柱力学

钻井井下智能控制

超高温地层钻井

科研项目

2024.122027.12,“水工隧洞地质勘探的旋转导向水平钻探技术研究”, 项目负责人;

2025.022026.01,“静态推靠式旋转导向底部钻具组合动力学特性仿真研究”, 项目负责人;

2025.022025.12,“柔性钻具组合井下动力学特性仿真研究”, 项目负责人;

2025.022026.03,“基于无机纤维材料隔热工艺及全井温度模型关键技术研究”, 项目负责人;

2024.122030.12,“XXXX系统动力学与热力学建模”, 项目负责人;

2026.022026.07,“基于数学模型与现场监测的动力干涉减淤技术可行性评估”, 主要研究人员;

2024.082026.06,“钻井工程参数优化动力学稳定界限与井下钻具振动安全评价技术研究”, 主要研究人员;

2025.052025.05,“长距离引调水工程沼蛤污损防护技术研究与应用”, 主要研究人员;

2023.122027.05, 国家重点研发计划项目“跨流域人工调水系统低营养水体中藻类暴发机制与预防技术”, 主要研究人员。

学术兼职

黄河实验室(河南)悬河治理研究中心  主任

Carbonsphere  编委

学术成果

代表性论文

1. Khaled, M. S., Wang, N., Ashok, P., van Oort, E., and Wisian, K., 2024. Real-Time Prediction of Bottom-hole Circulating Temperature in Geothermal Wells Using Machine Learning Models. Geoenergy Science and Engineering. 238: 212891.

2. Khaled, M. S., Wang, N., Ashok, P., Chen, D., and van Oort, E., 2023. Strategies for Prevention of Downhole Tool Failure Caused by High Bottomhole Temperature in Geothermal and HPHT Oil and Gas Wells. SPE Drilling and Completion. 38(02): 243-260.

3. Khaled, M. S., Wang, N., Ashok, P., and van Oort, E., 2023. Downhole Heat Management for Drilling Shallow and Ultra-Deep High Enthalpy Geothermal Wells. Geothermics. 107: 102604.

4. Wang, N., Prodanović, M., and Daigle, H. 2022. Simulating the Efficiency of Electromagnetic Pigging in Pipelines and Production Tubing Aided by Nanopaint. SPE Journal. 27(03): 1607–1618.

5. Wang, N., Liu, Y., Cha, L., Balhoff, M. T., and Prodanović, M., 2022. Experimental Investigation of Trapped Oil Mobilization with Ferrofluid. SPE Journal. 27(01): 753-770.

6. Cha, L., Wang, N., Prodanović, M., and Balhoff. M. T. 2022. Fluid Droplet Deformation in Ferrofluid in a Rotating Magnetic Field. Journal of Magnetism and Magnetic Materials. 555: 1-8. co-first author and corresponding author.

7. Wang, N., Zhao, Y., Prodanović, M., Balhoff, M.T. and Huh, C., 2022. Fundamental mechanisms behind nanotechnology applications in oil and gas: Emerging Nano-EOR processes. Frontiers in Nanotechnology. 2022: 60.

8. Zhong, X., Liu, J., Chen, K., Chen, J., Wang, N., He, C., Lu, Q., Cheng, Z., and Huang, W., 2021. A time-optimal wellbore trajectory design for slide drilling system. Structural and Multidisciplinary Optimization. 63(2): 881-896

9. Wang, N., Prodanović, M., Daigle, H. 2019. Nanopaint Application for Flow Assurance with Electromagnetic Pig. Journal of Petroleum Science and Engineering. 180: 320-329

10. Wang, N., Cheng, Z., Lu, Y., Jiang, W., Zhou, J., He, B., and Ren, G. 2015. A Multibody Dynamics Model of Contact between the Drillstring and the Wellbore and the Rock Penetration Process. Advances in Mechanical Engineering. 7(5): 1-12