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On the Importance of High Frequency Gravity Waves for Ice Nucleation in the Tropical Tropopause LayerRecent investigations of the influence of atmospheric waves on ice nucleation in cirrus have identified a number of key processes and sensitivities: (1) ice concentrations produced by homogeneous freezing are strongly dependent on cooling rates, with gravity waves dominating upper tropospheric cooling rates; (2) rapid cooling driven by high-frequency waves are likely responsible for the rare occurrences of very high ice concentrations in cirrus; (3) sedimentation and entrainment tend to decrease ice concentrations as cirrus age; and (4) in some situations, changes in temperature tendency driven by high-frequency waves can quench ice nucleation events and limit ice concentrations. Here we use parcel-model simulations of ice nucleation driven by long-duration, constant-pressure balloon temperature time series, along with an extensive dataset of cold cirrus microphysical properties from the recent ATTREX high-altitude aircraft campaign, to statistically examine the importance of high-frequency waves as well as the consistency between our theoretical understanding of ice nucleation and observed ice concentrations. The parcel-model simulations indicate common occurrence of peak ice concentrations exceeding several hundred per liter. Sedimentation and entrainment would reduce ice concentrations as clouds age, but 1-D simulations using a wave parameterization (which underestimates rapid cooling events) still produce ice concentrations higher than indicated by observations. We find that quenching of nucleation events by high-frequency waves occurs infrequently and does not prevent occurrences of large ice concentrations in parcel simulations of homogeneous freezing. In fact, the high-frequency variability in the balloon temperature data is entirely responsible for production of these high ice concentrations in the simulations.
Document ID
20160005167
Acquisition Source
Ames Research Center
Document Type
Abstract
Authors
Jensen, Eric J.
(NASA Ames Research Center Moffett Field, CA United States)
Date Acquired
April 19, 2016
Publication Date
April 17, 2016
Subject Category
Meteorology And Climatology
Report/Patent Number
ARC-E-DAA-TN30031
Report Number: ARC-E-DAA-TN30031
Meeting Information
Meeting: EGU General Assembly 2016
Location: Vienna
Country: Austria
Start Date: April 17, 2016
End Date: April 22, 2016
Sponsors: European Geosciences Union
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Keywords
simulation
ice
nucleation
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