Nonlinear Simulations of Gravity Wave Tunneling and Breaking over Auckland Island

Lead Author
Mixa, Tyler
Publisher
American Meteorological Society
Full Reference
Mixa, T., A. Dörnbrack, and M. Rapp, 2021: Nonlinear Simulations of Gravity Wave Tunneling and Breaking over Auckland Island. Journal of the Atmospheric Sciences, 78 (5), p. 1567-1582, doi: 10.1175/JAS-D-20-0230.1.
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Publications

Large-amplitude mesospheric response to an orographic wave generated over the Southern Ocean Auckland Islands (50.7°S) during the DEEPWAVE project

Lead Author
Pautet, P. D.
Publisher
JGR Atmospheres
Full Reference
Pautet, P. D., M. J. Taylor, D. C. Fritts, K. Bossert, B. P. Williams, D. Broutman, J. Ma, S. D. Eckermann, and J. D. Doyle, 2016: Large-amplitude mesospheric response to an orographic wave generated over the Southern Ocean Auckland Islands (50.7°S) during the DEEPWAVE project. JGR Atmospheres, 121,4, doi: 10.1002/2015JD024336.
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Publications

Regional Distribution of Mesospheric Small-Scale Gravity Waves During DEEPWAVE

Lead Author
Puatet, P. D.
Publisher
JGR Atmospheres
Full Reference
Puatet, P. D., M. J. Taylor, S. D. Eckermann, and N. Criddle, 2019: Regional Distribution of Mesospheric Small-Scale Gravity Waves During DEEPWAVE. JGR Atmospheres, 124, 13, doi: 10.1029/2019JD030271.
Publication Type
Publications

On the Predictability of Multiday Episodes of Severe Convective Storms During the Mesoscale Predictability Experiment

Lead Author
Dawson, Logan C.
Publisher
Purdue University
Full Reference
Dawson, L. C., 2017: On the Predictability of Multiday Episodes of Severe Convective Storms During the Mesoscale Predictability Experiment. Dissertation, Purdue University.
Publication Type
Theses

Upscale feedbacks observed and modeled during the mesoscale predictability experiment

Lead Author
Woznicki, Joseph M. 
Publisher
Purdue University
Full Reference
Woznicki, J. M., 2014: Upscale feedbacks observed and modeled during the mesoscale predictability experiment. Dissertation, Purdue University.
Publication Type
Theses

Processing Doppler Lidar and Cloud Radar Observations for Analysis of Convective Mass Flux Parameterizations Using DYNAMO Direct Observations

Lead Author
Hardesty, R. M.
Publisher
University of Colorado Boulder, CIRES
Full Reference
Hardesty, R. M, 2014: Processing Doppler Lidar and Cloud Radar Observations for Analysis of Convective Mass Flux Parameterizations Using DYNAMO Direct Observations. Annual Report, COLORADO UNIV AT BOULDER COOPERATIVE INST FOR RESEARCH IN ENVIRONMENTAL SCIENCES.
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Reports