Articles | Volume 16, issue 1
https://doi.org/10.5194/acp-16-21-2016
https://doi.org/10.5194/acp-16-21-2016
Research article
 | 
14 Jan 2016
Research article |  | 14 Jan 2016

Observational estimates of detrainment and entrainment in non-precipitating shallow cumulus

M. S. Norgren, J. D. Small, H. H. Jonsson, and P. Y. Chuang

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Cited articles

Barnes, G. M., Fankhauser, J. C., and Browning, W. D.: Evolution of the vertical mass flux and diagnosed net lateral mixing in isolated convective clouds, Mon. Weather Rev., 124, 2764–2784, 1996.
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Blyth, A. M., Lasher-Trapp, S. G., and Cooper, W. A.: A study of thermals in cumulus clouds, Q. J. Roy. Meteorol. Soc., 131, 1171–1190, 2005.
Bretherton, C. S. and Smolarkiewicz, P. K.: Gravity-waves, compensating subsidence and detrainment around cumulus clouds, J. Atmos. Sci., 46, 740–759, 1989.
Carpenter, R., Droegemeier, K., and Blyth, A.: Entrainment and detrainment in numerically simulated cumulus congestus clouds. Part II: Cloud budgets, J. Atmos. Sci., 55, 3433–3439, 1998a.
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Clouds transport air from near the surface to higher altitudes. However, the amount of air transported in this way is poorly understood. In this study, measurements from aircraft of small clouds over Texas show that the amount is limited to the volume of the visible cloud and not more. This means that these clouds are not very effective at transporting pollution and moisture to upper reaches of the atmosphere, which in turn affects their redistribution and wider impact.
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