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NASA NTRS · 20040171427

Spatial Distribution of Large Cloud Drops

Abstract

The analysis of aircraft measurements of individual drop sizes in clouds suggests that for sufficiently small volumes the mean number of cloud drops with a given radius is proportional to volume powered by a drop-size dependent exponent. For abundant small drops present, the exponent is 1 as assumed in conventional approach. However, for rarer large drops, the exponents fall below unity. We show striking examples of the spatial distribution of large cloud drops using models that simulate the observed power laws. In contrast to currently used models that assume homogeneity and therefore a Poisson distribution of cloud drops, these models show strong drop clustering, the more so the larger the drops. The degree of clustering is determined by the observed exponents. The strong clustering of large drops arises naturally from the observed power-law statistics. This clustering has vital consequences for rain physics explaining how rain can form so fast and also helps explain why remotely sensed cloud drop size is generally biased.

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BibTeXRIS

Marshak, Alexander, Knyazikhin, Yuri, Larsen, Michael, Wiscombe, Warren. 2004-01-01. Spatial Distribution of Large Cloud Drops. https://ntrs.nasa.gov/citations/20040171427

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