Staff information
Huilin Huang
Aerosols and Aerosol-Cloud Int
Earth Scientist
Pacific Northwest National Laboratory
PO Box 999
MSIN:
Richland, WA 99352
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PNNL Publications
2025
- Huang H., Y. Qian, G. Bisht, J. Wang, T. Chakraborty, D. Hao, and J. Li, et al. 2025. "WRF-ELM v1.0: a regional climate model to study land-atmosphere interactions over heterogeneous land use regions." Geoscientific Model Development 18. PNNL-SA-199431. doi:10.5194/gmd-18-1427-2025
2024
- Burton C., S. Lampe, D.I. Kelley, W. Thiery, S. Hantson, N. Christidis, and L. Gudmundsson, et al. 2024. "Global burned area increasingly explained by climate change." Nature Climate Change 14. PNNL-SA-189368. doi:10.1038/s41558-024-02140-w
- Li J., K. Zhang, M. Hassan Mozumder, S. Zhang, P. Ma, B. Singh, and Q. Yan, et al. 2024. "Assessing the Sensitivity of Aerosol Mass Budget and Effective Radiative Forcing to Horizontal Grid Spacing in E3SMv1 Using A Regional Refinement Approach." Geoscientific Model Development 17, no. 3:1327-1347. PNNL-SA-183690. doi:10.5194/gmd-17-1327-2024
- Liu Y., H. Huang, T. Zhang, D. Xu, and Y. Chen. 2024. Improving North American Wildfire Prediction by Integrating a Machine-Learning Fire Model in a Land Surface Model. PNNL-36676. Richland, WA: Pacific Northwest National Laboratory. Improving North American Wildfire Prediction by Integrating a Machine-Learning Fire Model in a Land Surface Model
- Park C., K. Takahashi, S. Fujimori, T. Jansakoo, C. Burton, H. Huang, and S. Kou-Giesbrecht, et al. 2024. "Attributing human mortality from fire PM2.5 to climate change." Nature Climate Change 14. PNNL-SA-202627. doi:10.1038/s41558-024-02149-1
- Yang Z., J. Wang, Y. Qian, T. Chakraborty, P. Xue, W.J. Pringle, and C. Huang, et al. 2024. "Summer Convective Precipitation Changes over the Great Lakes Region under a Warming Scenario." Journal of Geophysical Research: Atmospheres 129, no. 14:e2024JD041011. PNNL-SA-195053. doi:10.1029/2024JD041011
2023
- Hao D., G. Bisht, H. Wang, D. Xu, H. Huang, Y. Qian, and L. Leung. 2023. "A cleaner snow future mitigates Northern Hemisphere snowpack loss from warming." Nature Communications 14. PNNL-SA-190229. doi:10.1038/s41467-023-41732-6
- Hao D., G. Bisht, K. Rittger, E. Bair, C. He, H. Huang, and C. Dang, et al. 2023. "Improving snow albedo modeling in E3SM land model (version 2.0) and assessing its impacts on snow and surface fluxes over the Tibetan Plateau." Geoscientific Model Development 16, no. 1:75-94. PNNL-SA-170799. doi:10.5194/gmd-16-75-2023
- Liu Y., S. Feng, Y. Qian, H. Huang, and L.K. Berg. 2023. "How do North American weather regimes drive wind energy at the sub-seasonal to seasonal timescales?." npj Climate and Atmospheric Science 6. PNNL-SA-178053. doi:10.1038/s41612-023-00403-5
2022
- Huang H., Y. Qian, C. He, E. Bair, and K. Rittger. 2022. "Snow albedo feedbacks enhance snow impurity-induced radiative forcing in the Sierra Nevada." Geophysical Research Letters 49, no. 11:Art. No. e2022GL098102. PNNL-SA-169953. doi:10.1029/2022GL098102
- Huang H., Y. Qian, Y. Liu, C. He, J. Zheng, Z. Zhang, and A. Gkikas. 2022. "Where does the dust deposited over the Sierra Nevada snow come from?." Atmospheric Chemistry and Physics 22, no. 23:15469-15488. PNNL-SA-174540. doi:10.5194/acp-22-15469-2022