Publications

You can also find my publications on my Google Scholar profile.

๐Ÿ“ In Preparation / Submitted

-Wei, H., Stewart, A. L., McWilliams, J. C., Capรณ, E. Formation of abyssal downwelling-favorable prograde flows via mesoscale eddy potential vorticity mixing: dependence on environmental parameters. In preparation. (Preprint available upon request)


๐Ÿ“š Peer-Reviewed Publications

  1. Wei, H., Srinivasan, K., Stewart, A. L., Solodoch, A., Manucharyan, G., Hogg, A. (2025). Full-depth reconstruction of long-term Meridional Overturning Circulation variability from satellite-measurable quantities via machine learning. Journal of Advances in Modeling Earth Systems, 17(7), e2024MS004915.

  2. Li, D., Wei, H., & Ruan, X. (2025). The importance of eddy stirring in wind-driven coastal upwelling. Journal of Physical Oceanography, 55(1), 29โ€“42.

  3. Wei, H., Wang, Y., & Mak, J. (2024). Parameterizing eddy buoyancy fluxes across prograde shelf/slope fronts using a slope-aware GEOMETRIC closure. Journal of Physical Oceanography, 54(2), 359โ€“377.

  4. Xie, C.*, Wei, H.*, & Wang, Y. (2023). Bathymetry-aware mesoscale eddy parameterizations across upwelling slope fronts: A machine learning-augmented approach. Journal of Physical Oceanography, 53(12), 2861โ€“2891. (*Contributed equally)

  5. Xie, C., Wei, H., & Wang, Y. (2023). Impact of parameterized isopycnal diffusivity on shelf-ocean exchanges under upwelling-favorable winds: offline tracer simulations augmented by artificial neural network. Journal of Advances in Modeling Earth Systems, 15(4), e2022MS003424.

  6. Wei, H., Wang, Y., Stewart, A. L., & Mak, J. (2022). Scalings for eddy buoyancy fluxes across prograde shelf/slope fronts. Journal of Advances in Modeling Earth Systems, 14(12), e2022MS003229. (Issue cover)

  7. Hu, Z., Lian, S., Zitman, T., Wang, H., He, Z., Wei, H., et al. (2022). Wave breaking induced by opposing currents in submerged vegetation canopies. Water Resources Research, 58(4), e2021WR031121.

  8. Wei, H., & Wang, Y. (2021). Full-depth scalings for isopycnal eddy mixing across continental slopes under upwelling-favorable winds. Journal of Advances in Modeling Earth Systems, 13(6), e2021MS002498. (Issue cover)

  9. Hu, Z., Lian, S., Wei, H., Li, Y., Stive, M., & Suzuki, T. (2021). Laboratory data on wave propagation through vegetation with following and opposing currents. Earth System Science Data, 13(10), 4987โ€“4999.


๐ŸŽ“ Dissertation

Wei, H. (2024). Parameterizing Mesoscale Eddy Fluxes Across Continental Slopes. Ph.D. dissertation, The Hong Kong University of Science and Technology. (Available online)