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contributor authorPrabhakara, C.
contributor authorShort, D. A.
contributor authorWiscombe, W.
contributor authorFraser, R. S.
contributor authorVollmer, B. E.
date accessioned2017-06-09T14:01:24Z
date available2017-06-09T14:01:24Z
date copyright1986/10/01
date issued1986
identifier issn0733-3021
identifier otherams-11067.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4146254
description abstractNimbus 7 Scanning Multichannel Microwave Radiometer (SMMR) measurements at five frequencies in the region 6.6 to 37 GHz, at a resolution of 155 km, are analyzed to infer precipitation over the global oceans. The microwave data show, on this spatial scale, that the combined liquid water in the clouds and rain increases the brightness temperature almost linearly with frequency in the 6.6 to 18 GHz region, while at 37 GHz such a simple relationship is not noticed. Further, as the atmospheric water vapor absorption and the effects of scattering by precipitation particles are relatively weak at 6.6 and 10.7 GHz, a technique to remotely sense the liquid water content in the atmosphere is developed based on the brightness measurements at these two frequencies. Seasonal mean patterns of liquid water content in the atmosphere derived from SMMR over global oceans relate closely to climatological patterns of precipitation. Based on this, an empirical relationship is derived to estimate precipitation over the global oceans, with an accuracy of about ±30 percent, on a seasonal basis from satellite measurements made during the three years (1979?81) before the recent El Niño event. The deviations from these three-year means in the precipitation, produced by the 1982?83 El Niño event are then deduced from the SMMR measurements. In the Pacific one notices from these deviations that the precipitation over the ITCZ in the north, the South Pacific Convergence Zone, and the oceans around Indonesia is drastically reduced. At the same time a substantial increase in precipitation is observed over the normally dry central and eastern equatorial Pacific Ocean.
publisherAmerican Meteorological Society
titleRainfall over Oceans Inferred from Nimbus 7 SMMR: Application to 1982–83 El Niño
typeJournal Paper
journal volume25
journal issue10
journal titleJournal of Climate and Applied Meteorology
identifier doi10.1175/1520-0450(1986)025<1464:ROOIFN>2.0.CO;2
journal fristpage1464
journal lastpage1474
treeJournal of Climate and Applied Meteorology:;1986:;Volume( 025 ):;Issue: 010
contenttypeFulltext


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