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contributor authorVerlinde, J.
contributor authorHarrington, J. Y.
contributor authorYannuzzi, V. T.
contributor authorAvramov, A.
contributor authorGreenberg, S.
contributor authorRichardson, S. J.
contributor authorBahrmann, C. P.
contributor authorMcFarquhar, G. M.
contributor authorZhang, G.
contributor authorJohnson, N.
contributor authorPoellot, M. R.
contributor authorMather, J. H.
contributor authorTurner, D. D.
contributor authorEloranta, E. W.
contributor authorTobin, D. C.
contributor authorHolz, R.
contributor authorZak, B. D.
contributor authorIvey, M. D.
contributor authorPrenni, A. J.
contributor authorDeMott, P. J.
contributor authorDaniel, J. S.
contributor authorKok, G. L.
contributor authorSassen, K.
contributor authorSpangenberg, D.
contributor authorMinnis, P.
contributor authorTooman, T. P.
contributor authorShupe, M.
contributor authorHeymsfield, A. J.
contributor authorSchofield, R.
date accessioned2017-06-09T16:43:19Z
date available2017-06-09T16:43:19Z
date copyright2007/02/01
date issued2007
identifier issn0003-0007
identifier otherams-72978.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4215040
description abstractThe Mixed-Phase Arctic Cloud Experiment (M-PACE) was conducted from 27 September through 22 October 2004 over the Department of Energy's Atmospheric Radiation Measurement (ARM) Climate Research Facility (ACRF) on the North Slope of Alaska. The primary objectives were to collect a dataset suitable to study interactions between microphysics, dynamics, and radiative transfer in mixed-phase Arctic clouds, and to develop/evaluate cloud property retrievals from surface- and satellite-based remote sensing instruments. Observations taken during the 1977/98 Surface Heat and Energy Budget of the Arctic (SHEBA) experiment revealed that Arctic clouds frequently consist of one (or more) liquid layers precipitating ice. M-PACE sought to investigate the physical processes of these clouds by utilizing two aircraft (an in situ aircraft to characterize the microphysical properties of the clouds and a remote sensing aircraft to constraint the upwelling radiation) over the ACRF site on the North Slope of Alaska. The measurements successfully documented the microphysical structure of Arctic mixed-phase clouds, with multiple in situ profiles collected in both single- and multilayer clouds over two ground-based remote sensing sites. Liquid was found in clouds with cloud-top temperatures as cold as ?30°C, with the coldest cloud-top temperature warmer than ?40°C sampled by the aircraft. Remote sensing instruments suggest that ice was present in low concentrations, mostly concentrated in precipitation shafts, although there are indications of light ice precipitation present below the optically thick single-layer clouds. The prevalence of liquid down to these low temperatures potentially could be explained by the relatively low measured ice nuclei concentrations.
publisherAmerican Meteorological Society
titleThe Mixed-Phase Arctic Cloud Experiment
typeJournal Paper
journal volume88
journal issue2
journal titleBulletin of the American Meteorological Society
identifier doi10.1175/BAMS-88-2-205
journal fristpage205
journal lastpage221
treeBulletin of the American Meteorological Society:;2007:;volume( 088 ):;issue: 002
contenttypeFulltext


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