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Cirrus Cloud Occurrence as Function of Ambient Relative Humidity: A Comparison of Observations Obtained during the INCA Experiment

Ström, J. and Seifert, M. and Kärcher, B. and Ovarlez, J. and Minikin, A. and Gayet, J.-F. and Krejci, R. and Petzold, A. and Auriol, F. and Haag, W. and Busen, R. and Schumann, U. and Hansson, H.C. (2003) Cirrus Cloud Occurrence as Function of Ambient Relative Humidity: A Comparison of Observations Obtained during the INCA Experiment. Atmospheric Chemistry and Physics, 3, pp. 1807-1816.

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Official URL: http://www.atmos-chem-phys.org/acp/3/1807/

Abstract

Based on in-situ observations performed during the Interhemispheric differences in cirrus properties from anthropogenic emissions (INCA) experiment, we introduce and discuss the cloud presence fraction (CPF) defined as the ratio between the number of data points determined to represent cloud at a given ambient relative humidity over ice (RHI) divided by the total number of data points at that value of RHI. The CPFs are measured with four different cloud probes. Within similar ranges of detected particle sizes and concentrations, it is shown that different cloud probes yield results that are in good agreement with each other. The CPFs taken at Southern Hemisphere (SH) and Northern Hemisphere (NH) midlatitudes differ from each other. Above ice saturation, clouds occurred more frequently during the NH campaign. Local minima in the CPF as a function of RHI are interpreted as a systematic underestimation of cloud presence when cloud particles become invisible to cloud probes. Based on this interpretation, we find that clouds during the SH campaign formed preferentially at RHIs between 140 and 155%, whereas clouds in the NH campaign formed at RHIs somewhat below 130%. The data show that interstitial aerosol and ice particles coexist down to RHIs of 70–90%, demonstrating that the ability to distinguish between different particle types in cirrus conditions depends on the sensors used to probe the aerosol/cirrus system. Observed distributions of cloud water content differ only slightly between the NH and SH campaigns and seem to be only weakly, if at all, affected by the freezing aerosols.

Item URL in elib:https://elib.dlr.de/10005/
Document Type:Article
Additional Information:LIDO-Berichtsjahr=2003,
Title:Cirrus Cloud Occurrence as Function of Ambient Relative Humidity: A Comparison of Observations Obtained during the INCA Experiment
Authors:
AuthorsInstitution or Email of AuthorsAuthor's ORCID iDORCID Put Code
Ström, J.Univ. Stockholm, SUNSPECIFIEDUNSPECIFIED
Seifert, M.Univ. Stockholm, SUNSPECIFIEDUNSPECIFIED
Kärcher, B.UNSPECIFIEDUNSPECIFIEDUNSPECIFIED
Ovarlez, J.Lab. de Météorologie Dynamique, Paris, FUNSPECIFIEDUNSPECIFIED
Minikin, A.UNSPECIFIEDUNSPECIFIEDUNSPECIFIED
Gayet, J.-F.Univ. Blaise Pascal, Clermont-Ferrand, FUNSPECIFIEDUNSPECIFIED
Krejci, R.Univ. Stockholm, SUNSPECIFIEDUNSPECIFIED
Petzold, A.UNSPECIFIEDUNSPECIFIEDUNSPECIFIED
Auriol, F.Univ. Blaise Pascal, Clermont-Ferrand, FUNSPECIFIEDUNSPECIFIED
Haag, W.UNSPECIFIEDUNSPECIFIEDUNSPECIFIED
Busen, R.UNSPECIFIEDUNSPECIFIEDUNSPECIFIED
Schumann, U.UNSPECIFIEDUNSPECIFIEDUNSPECIFIED
Hansson, H.C.Univ. Stockholm, SUNSPECIFIEDUNSPECIFIED
Date:2003
Journal or Publication Title:Atmospheric Chemistry and Physics
Open Access:Yes
Gold Open Access:No
In SCOPUS:No
In ISI Web of Science:No
Volume:3
Page Range:pp. 1807-1816
Status:Published
Keywords:cirrus, humidity, experiment
HGF - Research field:Aeronautics, Space and Transport
HGF - Program:Aeronautics
HGF - Program Themes:L VU - Air Traffic and Environment (old)
DLR - Research area:Aeronautics
DLR - Program:L VU - Air Traffic and Environment
DLR - Research theme (Project):L - Low-Emission Air Traffic (old)
Location: Oberpfaffenhofen
Institutes and Institutions:Institute of Atmospheric Physics
Deposited By: Löb, Ute
Deposited On:08 Dec 2005
Last Modified:31 Jul 2019 19:14

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