Steady-state supersaturation distributions for clouds under turbulent forcing
The supersaturation equation for a vertically moving adiabatic cloud parcel is analysed. The effects of turbulent updrafts are incorporated in the shape of a stochastic Lagrangian model, with spatial and time correlations expressed in terms of turbulent kinetic energy. Using the Fokker-Planck equati...
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Zusammenfassung: | The supersaturation equation for a vertically moving adiabatic cloud parcel
is analysed. The effects of turbulent updrafts are incorporated in the shape of
a stochastic Lagrangian model, with spatial and time correlations expressed in
terms of turbulent kinetic energy. Using the Fokker-Planck equation, the
steady-state probability distributions of supersaturation are analytically
computed for a number of approximations involving the timescale separation
between updraft fluctuations and phase-relaxation, multiplicative noise
simplification and droplet or ice particle size fluctuations. While the
analytical results are presented in general for single-phase clouds, the
calculated distributions are used to compute mixed-phase cloud properties --
mixed fraction and mean liquid water content in an initially icy cloud -- and
are argued to be useful for generalising and constructing new parametrisation
schemes. |
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DOI: | 10.48550/arxiv.2305.02871 |