TY - JOUR
T1 - Deep convective clouds with sustained supercooled liquid water down to - 37.5 °C
AU - Rosenfeld, Daniel
AU - Woodley, William L.
PY - 2000/5/25
Y1 - 2000/5/25
N2 - In cirrus and orographic wave clouds, highly supercooled water has been observed in small quantities (lees than 0.15 gm-3). This high degree of supercooling was attributed to the small droplet size and the lack of ice nuclei at the heights of these clouds. For deep convective clouds, which have much large droplets near their tips and which take in aerosols from near the ground, no such measurements have hitherto been reported. However, satellite data suggest that highly supercooled water (down to -38°C) frequently occurs in vigorous continental convective storms. Here we resort in situ measurements in deep convective clouds from an aircraft, showing that most of the condensed water remains liquid down to -37.5 °C. The droplets reach a median volume diameter of 17 μm and amount to 1.8 g m-3, one order of magnitude more than previously reported. At slightly colder temperatures only ice was found, suggesting homogeneous freezing. Because of the poor knowledge of mixed-phase cloud processes, the simulation of clouds using numerical models is difficult at present. Our observations will help to understand these cloud processes, such as rainfall, hail, and cloud electrification, together with their implications for the climate system.
AB - In cirrus and orographic wave clouds, highly supercooled water has been observed in small quantities (lees than 0.15 gm-3). This high degree of supercooling was attributed to the small droplet size and the lack of ice nuclei at the heights of these clouds. For deep convective clouds, which have much large droplets near their tips and which take in aerosols from near the ground, no such measurements have hitherto been reported. However, satellite data suggest that highly supercooled water (down to -38°C) frequently occurs in vigorous continental convective storms. Here we resort in situ measurements in deep convective clouds from an aircraft, showing that most of the condensed water remains liquid down to -37.5 °C. The droplets reach a median volume diameter of 17 μm and amount to 1.8 g m-3, one order of magnitude more than previously reported. At slightly colder temperatures only ice was found, suggesting homogeneous freezing. Because of the poor knowledge of mixed-phase cloud processes, the simulation of clouds using numerical models is difficult at present. Our observations will help to understand these cloud processes, such as rainfall, hail, and cloud electrification, together with their implications for the climate system.
UR - http://www.scopus.com/inward/record.url?scp=0034713365&partnerID=8YFLogxK
U2 - 10.1038/35013030
DO - 10.1038/35013030
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AN - SCOPUS:0034713365
SN - 0028-0836
VL - 405
SP - 440
EP - 442
JO - Nature
JF - Nature
IS - 6785
ER -