Precision lower stratospheric temperature monitoring with the MSU: technique, validation, and results 1979-1991

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Abstract

Microwave Sounding Unit channel 4 data from the TIROS-N series of NOAA satellites are intercalibrated to provide a continuous global record of deep-layer averaged lower stratospheric temperatures during 1979-1991. A 13-year record of temperature anomalies is time averaged into pentads and months on a 2.5° grid. The monthly gridpoint anomalies are validated with ten years of radiosonde data during 1979-88. The calibration stability of each satellite's measurements is evaluated during satellite overlap periods, the longest of which reveal no measurable instrumental drift at the level of 0.01°C yr-1. A significant difference in decadal trends is found between the satellite and radiosonde systems, with a step change of 0.21°C (sondes cooler) compared to the satellite measurements. Investigations of the possible sources of the discrepancy lead the authors to suspect that the gradual transition from on-site calibration of sondes with thermometers to factory calibration of sondes around 1982 might have caused a change in the calibration, although this conclusion must be viewed as tentative. The largest globally averaged temperature variations during 1979-91 occur after the El Chichon (1982) and Pinatubo (1991) volcanic eruptions. -from Authors

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Spencer, R. W., & Christy, J. R. (1993). Precision lower stratospheric temperature monitoring with the MSU: technique, validation, and results 1979-1991. Journal of Climate, 6(6), 1194–1204. https://doi.org/10.1175/1520-0442(1993)006<1194:PLSTMW>2.0.CO;2

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