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Stratocumulus cloud height variations determined from surface and satellite observationsDetermination of cloud-top heights from satellite-inferred cloud-top temperatures is a relatively straightforward procedure for a well-behaved troposphere. The assumption of a monotonically decreasing temperature with increasing altitude is commonly used to assign a height to a given cloud-top temperature. In the hybrid bispectral threshold method, or HBTM, Minnis et al. (1987) assume that the lapse rate for the troposphere is -6.5/Kkm and that the surface temperature which calibrated this lapse rate is the 24 hour mean of the observed or modeled clear-sky, equivalent blackbody temperature. The International Satellite Cloud Climatology Project (ISCCP) algorithm (Rossow et al., 1988) attempts a more realistic assignment of height by utilizing interpolations of analyzed temperature fields from the National Meteorological Center (NMC) to determine the temperature at a given level over the region of interest. Neither these nor other techniques have been tested to any useful extent. The First ISCCP Regional Experiment (FIRE) Intensive Field Observations (IFO) provide an excellent opportunity to assess satellite-derived cloud height results because of the availability of both direct and indirect cloud-top altitude data of known accuracy. The variations of cloud-top altitude during the Marine Stratocumulus IFO (MSIFO, June 29 to July 19, 1987) derived from surface, aircraft, and satellite data are examined.
Document ID
19900018914
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Minnis, Patrick
(NASA Langley Research Center Hampton, VA., United States)
Young, David F.
(Planning Research Corp. Hampton, VA., United States)
Davies, R.
(McGill Univ. Montreal (Quebec)., United States)
Blaskovic, M.
(McGill Univ. Montreal (Quebec)., United States)
Albrecht, Bruce A.
(Pennsylvania State Univ. University Park., United States)
Date Acquired
September 6, 2013
Publication Date
July 1, 1990
Publication Information
Publication: FIRE Science Results 1989
Subject Category
Meteorology And Climatology
Accession Number
90N28230
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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