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Detection of Multi-Layer and Vertically-Extended Clouds Using A-Train SensorsThe detection of mUltiple cloud layers using satellite observations is important for retrieval algorithms as well as climate applications. In this paper, we describe a relatively simple algorithm to detect multiple cloud layers and distinguish them from vertically-extended clouds. The algorithm can be applied to coincident passive sensors that derive both cloud-top pressure from the thermal infrared observations and an estimate of solar photon pathlength from UV, visible, or near-IR measurements. Here, we use data from the A-train afternoon constellation of satellites: cloud-top pressure, cloud optical thickness, the multi-layer flag from the Aqua MODerate-resolution Imaging Spectroradiometer (MODIS) and the optical centroid cloud pressure from the Aura Ozone Monitoring Instrument (OMI). For the first time, we use data from the CloudSat radar to evaluate the results of a multi-layer cloud detection scheme. The cloud classification algorithms applied with different passive sensor configurations compare well with each other as well as with data from CloudSat. We compute monthly mean fractions of pixels containing multi-layer and vertically-extended clouds for January and July 2007 at the OMI spatial resolution (l2kmx24km at nadir) and at the 5kmx5km MODIS resolution used for infrared cloud retrievals. There are seasonal variations in the spatial distribution of the different cloud types. The fraction of cloudy pixels containing distinct multi-layer cloud is a strong function of the pixel size. Globally averaged, these fractions are approximately 20% and 10% for OMI and MODIS, respectively. These fractions may be significantly higher or lower depending upon location. There is a much smaller resolution dependence for fractions of pixels containing vertically-extended clouds (approx.20% for OMI and slightly less for MODIS globally), suggesting larger spatial scales for these clouds. We also find higher fractions of vertically-extended clouds over land as compared with ocean, particularly in the tropics and summer hemisphere.
Document ID
20110014293
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Joiner, J.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Vasilkov, A. P.
(Science Systems and Applications, Inc. Greenbelt, MD, United States)
Bhartia, P. K.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Wind, G.
(Science Systems and Applications, Inc. Greenbelt, MD, United States)
Platnick, S.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Menzel, W. P.
(Wisconsin-Madison Univ. Madison, WI, United States)
Date Acquired
August 25, 2013
Publication Date
February 15, 2010
Publication Information
Publication: Atmospheric Measurement Techniques
Volume: 3
Issue: 1
Subject Category
Meteorology And Climatology
Report/Patent Number
GSFC.JA.4624.2011
Report Number: GSFC.JA.4624.2011
Funding Number(s)
CONTRACT_GRANT: NNG06HX18C
Distribution Limits
Public
Copyright
Public Use Permitted.
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