Literature DB >> 33005061

Multilevel cloud structures over Svalbard.

Andreas Dörnbrack1, Sonja Gisinger1, Michael C Pitts2, Lamont R Poole3, Marion Maturilli4.   

Abstract

The presented picture of the month is a superposition of space-borne lidar observations and high-resolution temperature fields of the ECMWF integrated forecast system (IFS). It displays complex tropospheric and stratospheric clouds in the Arctic winter 2015/16. Near the end of December 2015, the unusual northeastward propagation of warm and humid subtropical air masses as far north as 80°N lifted the tropopause by more than 3 km in 24 h and cooled the stratosphere on a large scale. A widespread formation of thick cirrus clouds near the tropopause and of synoptic-scale polar stratospheric clouds (PSCs) occurred as the temperature dropped below the thresholds for the existence of cloud particles. Additionally, mountain waves were excited by the strong flow at the western edge of the ridge across Svalbard, leading to the formation of mesoscale ice PSCs. The most recent IFS cycle using a horizontal resolution of 8 km globally reproduces the large-scale and mesoscale flow features and leads to a remarkable agreement with the wave structure revealed by the space-borne observations.

Year:  2017        PMID: 33005061      PMCID: PMC7526623          DOI: 10.1175/mwr-d-16-0214.1

Source DB:  PubMed          Journal:  Mon Weather Rev        ISSN: 0027-0644            Impact factor:   3.735


  2 in total

1.  Microphysics and heterogeneous chemistry of polar stratospheric clouds.

Authors:  T Peter
Journal:  Annu Rev Phys Chem       Date:  1997       Impact factor: 12.703

2.  Mother-of-pearl cloud particle size and composition from aircraft-based photography of coloration and lidar measurements.

Authors:  Jens Reichardt; Susanne Reichardt; Chris A Hostetler; Patricia L Lucker; Thomas J McGee; Laurence W Twigg; Andreas Dörnbrack; Mark R Schoeberl; Ping Yang
Journal:  Appl Opt       Date:  2015-02-01       Impact factor: 1.980

  2 in total

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