ICE GENESIS: Synergetic Aircraft and Ground-Based Remote Sensing and In Situ Measurements of Snowfall Microphysical Properties

Author:

Billault-Roux Anne-Claire1,Grazioli Jacopo1,Delanoë Julien2,Jorquera Susana2,Pauwels Nicolas2,Viltard Nicolas2,Martini Audrey2,Mariage Vincent2,Le Gac Christophe2,Caudoux Christophe2,Aubry Clémantyne3,Bertrand Fabrice2,Schwarzenboeck Alfons4,Jaffeux Louis4,Coutris Pierre4,Febvre Guy4,Pichon Jean Marc4,Dezitter Fabien5,Gehring Josué6,Untersee Aude6,Calas Christophe7,Figueras i Ventura Jordi7,Vie Benoit7,Peyrat Adrien7,Curat Valentin7,Rebouissoux Simon7,Berne Alexis1

Affiliation:

1. Environmental Remote Sensing Laboratory, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland;

2. Laboratoire Atmosphère, Milieux et Observations Spatiales, IPSL, UVSQ Université Paris-Saclay, Sorbonne Université, CNRS, Guyancourt, France;

3. Laboratoire Atmosphère, Milieux et Observations Spatiales, IPSL, UVSQ Université Paris-Saclay, Sorbonne Université, CNRS, Guyancourt, France, and Deutsches Zentrum für Luft- und Raumfahrt, Institut für Physik der Atmosphäre, Oberpfaffenhofen, Germany;

4. Laboratoire de Météorologie Physique, Aubière, France;

5. Airbus Helicopters, ­Marignane, France;

6. Federal Office of Meteorology and Climatology (­MeteoSwiss), Geneva, ­Switzerland;

7. Météo-France, Toulouse, France

Abstract

Abstract An international field experiment took place in the Swiss Jura in January 2021 as a milestone of the European ICE GENESIS project (www.ice-genesis.eu/), which aims to better measure, understand, and model the ice/snow particle properties and mechanisms responsible for icing of rotor-craft and aircraft. The field campaign was designed to collect observations of clouds and snowfall at a prescribed range of temperatures (−10° to +2°C). The suite of in situ and remote sensing instruments included airborne probes and imagers on board a SAFIRE ATR-42 aircraft, able to sample liquid and ice particles from the micron to the millimeter size range, as well as icing sensors and cameras. Two 95 GHz Doppler cloud radars were installed on the SAFIRE ATR-42, while six Doppler weather radars operating at frequencies ranging from 10 to 95 GHz (and one lidar) were ground based. An operational polarimetric weather radar in nearby France (Montancy) complements the coverage. Finally, observations of standard meteorological variables as well as high-resolution pictures of falling snowflakes from a multiangle snowflake camera were collected at the ground level. The campaign showed its full potential during five (multihourly) flights where precipitation was monitored from cloud to ground. The originality of this campaign resides in the targeted specific temperature range for snowfall and in the synchronization between the ground-based remote sensing and the aircraft trajectories designed to maximize the collection of in situ observations within the column above the radar systems.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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