Back to Search Start Over

FESSTVaL: The Field Experiment on Submesoscale Spatio-Temporal Variability in Lindenberg.

Authors :
Hohenegger, Cathy
Ament, Felix
Beyrich, Frank
Löhnert, Ulrich
Rust, Henning
Bange, Jens
Böck, Tobias
Böttcher, Christopher
Boventer, Jakob
Burgemeister, Finn
Clemens, Marco
Detring, Carola
Detring, Igor
Dewani, Noviana
Duran, Ivan Bastak
Fiedler, Stephanie
Göber, Martin
van Heerwaarden, Chiel
Heusinkveld, Bert
Kirsch, Bastian
Source :
Bulletin of the American Meteorological Society. Oct2023, Vol. 104 Issue 10, pE1875-E1892. 18p.
Publication Year :
2023

Abstract

Numerical weather prediction models operate on grid spacings of a few kilometers, where deep convection begins to become resolvable. Around this scale, the emergence of coherent structures in the planetary boundary layer, often hypothesized to be caused by cold pools, forces the transition from shallow to deep convection. Yet, the kilometer-scale range is typically not resolved by standard surface operational measurement networks. The measurement campaign Field Experiment on Submesoscale Spatio-Temporal Variability in Lindenberg (FESSTVaL) aimed at addressing this gap by observing atmospheric variability at the hectometer-to-kilometer scale, with a particular emphasis on cold pools, wind gusts, and coherent patterns in the planetary boundary layer during summer. A unique feature was the distribution of 150 self-developed and low-cost instruments. More specifically, FESSTVaL included dense networks of 80 autonomous cold pool loggers, 19 weather stations, and 83 soil sensor systems, all installed in a rural region of 15-km radius in eastern Germany, as well as self-developed weather stations handed out to citizens. Boundary layer and upper-air observations were provided by eight Doppler lidars and four microwave radiometers distributed at three supersites; water vapor and temperature were also measured by advanced lidar systems and an infrared spectrometer; and rain was observed by a X-band radar. An uncrewed aircraft, multicopters, and a small radiometer network carried out additional measurements during a 4-week period. In this paper, we present FESSTVaL's measurement strategy and show first observational results including unprecedented highly resolved spatiotemporal cold-pool structures, both in the horizontal as well as in the vertical dimension, associated with overpassing convective systems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00030007
Volume :
104
Issue :
10
Database :
Academic Search Index
Journal :
Bulletin of the American Meteorological Society
Publication Type :
Academic Journal
Accession number :
173728980
Full Text :
https://doi.org/10.1175/BAMS-D-21-0330.1