4.7 Article

Supercooled liquid water and secondary ice production in Kelvin-Helmholtz instability as revealed by radar Doppler spectra observations

Journal

ATMOSPHERIC CHEMISTRY AND PHYSICS
Volume 21, Issue 17, Pages 13593-13608

Publisher

COPERNICUS GESELLSCHAFT MBH
DOI: 10.5194/acp-21-13593-2021

Keywords

-

Funding

  1. Horizon 2020 project [689443, 654109, 739530, 871115]
  2. Academy of Finland [328616, 329274, 307331, 337549]
  3. Academy of Finland (AKA) [328616, 329274, 328616, 329274] Funding Source: Academy of Finland (AKA)

Ask authors/readers for more resources

Mixed-phase clouds are globally omnipresent and play a major role in the Earth's radiation budget and precipitation formation. This study reveals the onset of drizzle and the generation of large liquid droplets and secondary ice particles within a mixed-phase layer, using Doppler spectral analysis to identify regions of increased turbulence. It is hypothesized that Kelvin-Helmholtz instability provides conditions favorable for enhanced droplet growth and formation of secondary ice particles.
Mixed-phase clouds are globally omnipresent and play a major role in the Earth's radiation budget and precipitation formation. The existence of liquid droplets in the presence of ice particles is microphysically unstable and depends on a delicate balance of several competing processes. Understanding mechanisms that govern ice initiation and moisture supply are important to understand the life cycle of such clouds. This study presents observations that reveal the onset of drizzle inside a similar to 600m deep mixed-phase layer embedded in a stratiform precipitation system. Using Doppler spectral analysis, we show how large supercooled liquid droplets are generated in Kelvin-Helmholtz (K-H) instability despite ice particles falling from upper cloud layers. The spectral width of the supercooled liquid water mode in the radar Doppler spectrum is used to identify a region of increased turbulence. The observations show that large liquid droplets, characterized by reflectivity values larger than 20 dBZ, are generated in this region. In addition to cloud droplets, Doppler spectral analysis reveals the production of columnar ice crystals in the K-H billows. The modeling study estimates that the concentration of these ice crystals is 3-8 L-1, which is at least 1 order of magnitude higher than that of primary ice-nucleating particles. Given the detail of the observations, we show that multiple populations of secondary ice particles are generated in regions where larger cloud droplets are produced and not at some constant level within the cloud. It is, therefore, hypothesized that K-H in- stability provides conditions favorable for enhanced droplet growth and formation of secondary ice particles.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.7
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available