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タイトルExtratropical Cyclogenesis and Frontal Waves on Mars: Influences on Dust, Weather and the Planet's climate
本文(外部サイト)http://hdl.handle.net/2060/20120013443
著者(英)Kahre, Melinda A.; Hollingsworth, J. L.
著者所属(英)NASA Ames Research Center
発行日2012-05-26
言語eng
内容記述Between late autumn and early spring, middle and high latitudes on Mars exhibit strong equatortopole mean temperature contrasts (i.e., "baroclinicity"). Data collected during the Viking era and observations from both the Mars Global Surveyor (MGS) and Mars Reconnaissance Orbiter (MRO) indicate that this strong baroclinicity supports vigorous, large-scale eastward traveling weather systems (i.e., transient synoptic periodwaves) [1,2]. For a rapidly rotating, differentially heated, shallow atmosphere such as on Earth and Mars, these large-scale, extratropical weather disturbances are critical components of the global circulation. The wavelike disturbances act as agents in the transport of heat and momentum between low and high latitudes of the planet. Through cyclonic/anticyclonic winds, intense shear deformations, contractions-dilatations in temperature and density, and sharp perturbations amongst atmospheric tracers (i.e., dust, volatiles (e.g., water vapor) and condensates (e.g., water-ice cloud particles)), Mars extratropical weather systems have significant subsynoptic scale ramifications by supporting atmospheric frontal waves (Fig. 1).
NASA分類Lunar and Planetary Science and Exploration
レポートNOARC-E-DAA-TN-5211
権利No Copyright


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