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Spektrinen partikkelimikrofysiikka×Köhlerin teoria×
TieteenalaMeteorologiaMeteorologia
MenetelmäperheProcess / pipelineProcess / pipeline
Syntyvuosi19991936
KehittäjäKhain, OvtchinnikovHilding Kohler
TyyppiExplicit particle size distribution modelThermodynamic equilibrium framework
AlkuperäislähdeKhain, A. P., Ovtchinnikov, M., Pinsky, M., Pokrovsky, A., & Krugliak, H. (2000). Notes on the state-of-the-art numerical modeling of cloud microphysics. Atmospheric Research, 55(3–4), 159-224. DOI ↗Köhler, H. (1936). The nucleus in and the growth of hygroscopic droplets. Transactions of the Faraday Society, 32, 1152-1161. DOI ↗
RinnakkaisnimetBin microphysics, Spectral microphysics, Explicit microphysicsKohler theory, Kohler equilibrium, Cloud droplet nucleation
Liittyvät33
TiivistelmäSpectral bin microphysics is a detailed cloud microphysical modeling approach that explicitly represents the particle size distribution (PSD) by dividing particles into discrete size bins. Rather than assuming a fixed shape for the PSD, bin models track the number and mass of particles in each size category, allowing detailed simulation of cloud and precipitation processes.Köhler theory is a foundational framework in cloud microphysics that predicts the equilibrium supersaturation required for an aerosol particle of given size and composition to grow into a cloud droplet. Published in 1936 by Hilding Köhler, it combines the Kelvin effect (vapor pressure enhancement over curved surfaces) with the Raoult effect (vapor pressure depression from dissolved solute) to explain cloud droplet formation.
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ScholarGateVertaile menetelmiä: Spectral Bin Microphysics · Kohler Theory. Haettu 2026-06-18 osoitteesta https://scholargate.app/fi/compare