Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements

This study presents an empirical relation that links the volume extinction coefficients of water clouds, the layer integrated depolarization ratios measured by lidar, and the effective radii of water clouds derived from collocated passive sensor observations. Based on Monte Carlo simulations of CALI...

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Main Authors: Y. Hu, M. Vaughan, C. McClain, M. Behrenfeld, H. Maring, D. Anderson, S. Sun-Mack, D. Flittner, J. Huang, B. Wielicki, P. Minnis, C. Weimer, C. Trepte, R. Kuehn
Format: Article
Language:English
Published: Copernicus Publications 2007-06-01
Series:Atmospheric Chemistry and Physics
Online Access:http://www.atmos-chem-phys.net/7/3353/2007/acp-7-3353-2007.pdf
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spelling doaj-3c53a1780cdf4b13829ebe34a98966d52020-11-24T22:24:23ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242007-06-0171233533359Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurementsY. HuM. VaughanC. McClainM. BehrenfeldH. MaringD. AndersonS. Sun-MackD. FlittnerJ. HuangB. WielickiP. MinnisC. WeimerC. TrepteR. KuehnThis study presents an empirical relation that links the volume extinction coefficients of water clouds, the layer integrated depolarization ratios measured by lidar, and the effective radii of water clouds derived from collocated passive sensor observations. Based on Monte Carlo simulations of CALIPSO lidar observations, this method combines the cloud effective radius reported by MODIS with the lidar depolarization ratios measured by CALIPSO to estimate both the liquid water content and the effective number concentration of water clouds. The method is applied to collocated CALIPSO and MODIS measurements obtained during July and October of 2006, and January 2007. Global statistics of the cloud liquid water content and effective number concentration are presented. http://www.atmos-chem-phys.net/7/3353/2007/acp-7-3353-2007.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Y. Hu
M. Vaughan
C. McClain
M. Behrenfeld
H. Maring
D. Anderson
S. Sun-Mack
D. Flittner
J. Huang
B. Wielicki
P. Minnis
C. Weimer
C. Trepte
R. Kuehn
spellingShingle Y. Hu
M. Vaughan
C. McClain
M. Behrenfeld
H. Maring
D. Anderson
S. Sun-Mack
D. Flittner
J. Huang
B. Wielicki
P. Minnis
C. Weimer
C. Trepte
R. Kuehn
Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements
Atmospheric Chemistry and Physics
author_facet Y. Hu
M. Vaughan
C. McClain
M. Behrenfeld
H. Maring
D. Anderson
S. Sun-Mack
D. Flittner
J. Huang
B. Wielicki
P. Minnis
C. Weimer
C. Trepte
R. Kuehn
author_sort Y. Hu
title Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements
title_short Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements
title_full Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements
title_fullStr Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements
title_full_unstemmed Global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined CALIPSO and MODIS measurements
title_sort global statistics of liquid water content and effective number concentration of water clouds over ocean derived from combined calipso and modis measurements
publisher Copernicus Publications
series Atmospheric Chemistry and Physics
issn 1680-7316
1680-7324
publishDate 2007-06-01
description This study presents an empirical relation that links the volume extinction coefficients of water clouds, the layer integrated depolarization ratios measured by lidar, and the effective radii of water clouds derived from collocated passive sensor observations. Based on Monte Carlo simulations of CALIPSO lidar observations, this method combines the cloud effective radius reported by MODIS with the lidar depolarization ratios measured by CALIPSO to estimate both the liquid water content and the effective number concentration of water clouds. The method is applied to collocated CALIPSO and MODIS measurements obtained during July and October of 2006, and January 2007. Global statistics of the cloud liquid water content and effective number concentration are presented.
url http://www.atmos-chem-phys.net/7/3353/2007/acp-7-3353-2007.pdf
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