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Habit‐Dependent Vapor Growth Modulates Arctic Supercooled Water Occurrence
Author(s) -
Silber Israel,
McGlynn Paul S.,
Harrington Jerry Y.,
Verlinde Johannes
Publication year - 2021
Publication title -
geophysical research letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.007
H-Index - 273
eISSN - 1944-8007
pISSN - 0094-8276
DOI - 10.1029/2021gl092767
Subject(s) - supercooling , habit , maxima and minima , water vapor , atmospheric sciences , ice nucleus , polar , liquid water path , environmental science , climatology , seeding , meteorology , physics , thermodynamics , geology , nucleation , mathematics , aerosol , mathematical analysis , astronomy , psychotherapist , psychology
We present an analysis of long‐term data collected at Utqiaġvik, Alaska, to explore the impacts of cloud processes on the probability of finding supercooled water given cloud temperature, P ( L|T ), in the topmost unseeded liquid‐bearing layers. P ( L|T ) has local minima at temperatures around −6°C and −15°C. Simulations using habit‐evolving ice microphysics models suggest that these minima are the result of efficient vapor growth by non‐isometric habits found at these temperatures. We conclude that habit‐dependent vapor growth of ice crystals modulates the macrophysical occurrence of supercooled water in polar clouds, the effect of which should be included in model parametrizations to avoid biases and/or error compensation. Our methodology is adaptable for spherical ice treatments implemented in models (example parametrizations provided), amenable for use with satellite measurements to give global impartial observational targets for model evaluations, and may allow empirical characterization of bulk responses to seeding and possibly secondary ice effects.

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