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Aerosol Abundances and Optical Characteristics in the Pacific Basin Free TroposphereDuring NASA's Global Backscatter Experiment (GLOBE) mission flights in November 1989 and May 1990, a DC-8 research aircraft probed the Pacific Basin free troposphere for about 90 flight hours in each month between +72 and -62 degrees latitude, +130 and -120 degrees longitude, and up to 39,000 feet pressure altitudes. Aerosols were sampled continuously in situ by optical particle counters to measure concentration and particle size, and during 48 10-min intervals during each mission by wire impactors for concentration, size, composition, phase and shape analyses. The optical particle counters cover a particle diameter range between 0.3 and 20 microns; wire impactors extend the range down to 0.03 microns. Results of particle number, size, shape, together with the assumption of a refractive index corresponding to (NH4)2SO4 to account for the prevalence of aerosol sulfur, were utilized in a Mie algorithm to calculate aerosol extinction and backscatter for a range of wavelengths (0.385 less than lambda less than 10.64 microns). Computations for 22 randomly selected size distributions yield coefficients of extinction E(0.525) = (2.03 +/- 1.20) x 10(exp -4) km(exp -1) and backscatter beta(0.525) = (6.45 +/- 3.49) x 10(exp -6) km(exp -1) sr(exp -1) in the visible, and E(10.64) = (8.13 +/- 6.47) x 10(exp -6) km(exp -1) and beta(10.64) = (9.98 +/- 10.69) x 10(exp -8) km(exp -1) sr(exp -1) in the infrared, respectively. Large particles (D greater than 0.3 microns) contribute two-thirds to the total extinction in the visible (lambda = 0.525 microns), and almost 100% in the infrared (lambda = 10.64 microns). These results have been used to define an IR optical aerosol climatology of the Pacific Basin free troposphere, from which it follows that the infrared backscatter coefficient at lambda = 9.25 microns wavelength fluctuates between 5.0 x 10(exp -10) and 2.0 x 10(exp -7) km(exp -1) sr(exp -1) with a modal value 2.0 x 10(exp -8) km(exp -1) sr(exp -1).
Document ID
19970008001
Acquisition Source
Ames Research Center
Document Type
Reprint (Version printed in journal)
Authors
Pueschel, R. F.
(NASA Ames Research Center Moffett Field, CA United States)
Livingston, J. M.
(SRI International Corp. Menlo Park, CA United States)
Ferry, G. V.
(NASA Ames Research Center Moffett Field, CA United States)
deFelice, T. E.
(Wisconsin Univ. Milwaukee, WI United States)
Date Acquired
August 17, 2013
Publication Date
January 1, 1994
Publication Information
Publication: Atmospheric Enivironment
Publisher: Elsevier Science Ltd.
Volume: 28
Issue: 5
ISSN: 1352-2310
Subject Category
Geophysics
Report/Patent Number
NASA-TM-1.15:112110
NAS 1.15:112110
Accession Number
97N70632
Distribution Limits
Public
Copyright
Public Use Permitted.
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