Litcius/Paper detail

Characterising optical array particle imaging probes: implications for small-ice-crystal observations

Sebastian O’Shea, Jonathan Crosier, J. R. Dorsey, Louis Gallagher, Waldemar Schledewitz, Keith Bower, Oliver Schlenczek, Stephan Borrmann, Richard Cotton, C. D. Westbrook, Zbigniew Ulanowski

2021Atmospheric measurement techniques38 citationsDOIOpen Access PDF

Abstract

Abstract. The cloud particle concentration, size, and shape data from optical array probes (OAPs) are routinely used to parameterise cloud properties and constrain remote sensing retrievals. This paper characterises the optical response of OAPs using a combination of modelling, laboratory, and field experiments. Significant uncertainties are found to exist with such probes for ice crystal measurements. We describe and test two independent methods to constrain a probe's sample volume that remove the most severely mis-sized particles: (1) greyscale image analysis and (2) co-location using stereoscopic imaging. These methods are tested using field measurements from three research flights in cirrus. For these cases, the new methodologies significantly improve agreement with a holographic imaging probe compared to conventional data-processing protocols, either removing or significantly reducing the concentration of small ice crystals (< 200 µm) in certain conditions. This work suggests that the observational evidence for a ubiquitous mode of small ice particles in ice clouds is likely due to a systematic instrument bias. Size distribution parameterisations based on OAP measurements need to be revisited using these improved methodologies.

Topics & Concepts

CirrusIce crystalsRemote sensingIce cloudParticle (ecology)Ice coreEnvironmental scienceParticle-size distributionParticle sizeMaterials scienceOpticsPhysicsGeologyRadiative transferClimatologyPaleontologyOceanographyAtmospheric aerosols and cloudsAtmospheric chemistry and aerosolsSolar Radiation and Photovoltaics