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