Highly Localised Droplet Clustering in Shallow Cumulus Clouds

Fuente: arXiv
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Autori principali: Thiede, Birte, Larsen, Michael L., Nordsiek, Freja, Schlenczek, Oliver, Bodenschatz, Eberhard, Bagheri, Gholamhossein
Natura: Preprint
Pubblicazione: 2025
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author Thiede, Birte
Larsen, Michael L.
Nordsiek, Freja
Schlenczek, Oliver
Bodenschatz, Eberhard
Bagheri, Gholamhossein
author_facet Thiede, Birte
Larsen, Michael L.
Nordsiek, Freja
Schlenczek, Oliver
Bodenschatz, Eberhard
Bagheri, Gholamhossein
contents The growth, lifetime, number density, and size of water droplets in warm atmospheric clouds determine the evolution, lifetime and light transmission properties of those clouds. These small-scale cloud properties, in addition to precipitation initiation, have strong implications for the Earth's energy budget since warm clouds cover large geographic areas. Spatio-temporal correlations on the millimetre scale and smaller may or may not affect these properties of clouds. To date, the pioneering measurements of such correlations in marine stratocumulus clouds have relied on averaging over holographically reconstructed volumes spanning at least ten kilometres. These have revealed weak but widespread spatial clustering of cloud droplets. Here we present results of strong localised clustering on scales of half a metre or less from holographic measurements collected with the Max Planck CloudKite in shallow cumulus clouds in the mid-Atlantic trade wind region near Barbados, with a spatial separation of only 12~cm between measurement volumes. This observation challenges the foundations of our understanding of cloud microphysics at the droplet scale, with implications for cloud modelling in weather and climate prediction.
format Preprint
id arxiv_https___arxiv_org_abs_2502_19272
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Highly Localised Droplet Clustering in Shallow Cumulus Clouds
Thiede, Birte
Larsen, Michael L.
Nordsiek, Freja
Schlenczek, Oliver
Bodenschatz, Eberhard
Bagheri, Gholamhossein
Atmospheric and Oceanic Physics
Fluid Dynamics
Geophysics
The growth, lifetime, number density, and size of water droplets in warm atmospheric clouds determine the evolution, lifetime and light transmission properties of those clouds. These small-scale cloud properties, in addition to precipitation initiation, have strong implications for the Earth's energy budget since warm clouds cover large geographic areas. Spatio-temporal correlations on the millimetre scale and smaller may or may not affect these properties of clouds. To date, the pioneering measurements of such correlations in marine stratocumulus clouds have relied on averaging over holographically reconstructed volumes spanning at least ten kilometres. These have revealed weak but widespread spatial clustering of cloud droplets. Here we present results of strong localised clustering on scales of half a metre or less from holographic measurements collected with the Max Planck CloudKite in shallow cumulus clouds in the mid-Atlantic trade wind region near Barbados, with a spatial separation of only 12~cm between measurement volumes. This observation challenges the foundations of our understanding of cloud microphysics at the droplet scale, with implications for cloud modelling in weather and climate prediction.
title Highly Localised Droplet Clustering in Shallow Cumulus Clouds
topic Atmospheric and Oceanic Physics
Fluid Dynamics
Geophysics
url https://arxiv.org/abs/2502.19272