On the Radar Detection of Cloud Seeding Effects in Wintertime Orographic Cloud Systems

Lead Author
Zaremba, T. J.
Full Reference
Zaremba, T. J., R. M. Rauber, L. Di Girolamo, J. R. Loveridge, and G. M. McFarquhar, 2023: On the Radar Detection of Cloud Seeding Effects in Wintertime Orographic Cloud Systems. J. Appl. Meteor. Climatol., 63, 27–45, doi: 10.1175/JAMC-D-22-0154.1.
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Impacts of Vertical Nonuniform Beam Filling on the Observability of Secondary Ice Production due to Sublimation

Lead Author
Carlin, J. T.
Full Reference
Carlin, J. T., E. L. Dunnavan, A. V. Ryzhkov, and M. Oue, 2023: Impacts of Vertical Nonuniform Beam Filling on the Observability of Secondary Ice Production due to Sublimation. J. Atmos. Oceanic Technol., 40, 65–84, doi: 10.1175/JTECH-D-22-0076.1.
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Publications

Evaluation of Physical Microphysical Property Retrieval Algorithms During the 2020 IMPACTS Field Campaign

Lead Author
Nicholls, S. D.
Full Reference
Nicholls, S. D., A. Heymsfield, G. M. Heymsfield, J. E. Yorks, A. Bansemer, C. Aubry, M. Deng, and J. Delanoë, 2025: Evaluation of Physical Microphysical Property Retrieval Algorithms During the 2020 IMPACTS Field Campaign. J. Atmos. Oceanic Technol., 42, 167-186, doi: 10.1175/JTECH-D-23-0106.1.
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Publications

Forecasting for ESCAPE: A multi-institution hybrid forecasting and nowcasting operation for sea-breeze convection supporting a ground-based and airborne field campaign

Lead Author
Dzambo, A. M.
Full Reference
Dzambo, A. M., E. Bruning, M. Oue, K. Brunner, D. Singewald, E. Rosky, N. Allwayin, S. Patil, Y. (J.) Qiao, Z. (H.) Xia, Y. Hu, Z. J. Lebo, Y. Huang, G.M. McFarquhar, P. Kollias, J. Souza, M. Miller, S. Weiss, and B. Ascher, 2024: Forecasting for ESCAPE: A multi-institution hybrid forecasting and nowcasting operation for sea-breeze convection supporting a ground-based and airborne field campaign. Bull. Amer. Meteor. Soc., doi: 10.1175/BAMS-D-23-0015.1.
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Publications

Microphysical processes producing high ice water contents (HIWCs) in tropical convective clouds during the HAIC-HIWC field campaign: evaluation of simulations using bulk microphysical schemes

Lead Author
Huang, Y.
Full Reference
Huang, Y., W. Wu, G. M. McFarquhar, X. Wang, H. Morrison, A. Ryzhkov, Y. Hu, M. Wolde, C. Nguyen, A. Schwarzenboeck, J. Milbrandt, A. V. Korolev, and I. Heckman, 2021: Microphysical Processes Producing High Ice Water Contents (HIWCs) in Tropical Convective Clouds during the HAIC-HIWC Field Campaign: Evaluation of Simulations Using Bulk Microphysical Schemes. Atmos. Chem. Phys., 21, 6919–6944, doi: 10.5194/acp-21-6919-2021.
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Microphysical processes producing high ice water contents (HIWCs) in tropical convective clouds during the HAIC-HIWC field campaign: dominant role of secondary ice production

Lead Author
Huang, Y.
Full Reference
Huang, Y., W. Wu, G. M. McFarquhar, M. Xue, H. Morrison, J. Milbrandt, A. V. Korolev, Y. Hu, Z. Qu, M. Wolde, C. Nguyen, A. Schwarzenboeck, and I. Heckman, 2022: Microphysical processes producing high ice water contents (HIWCs) in tropical convective clouds during the HAIC-HIWC field campaign: dominant role of secondary ice production. Atmos. Chem. Phys., 22, 2365–2384, doi: 10.5194/acp-22-2365-2022.
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Publications