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- W2079332045 abstract "A research program was initiated in 1988 to investigate the potential for winter snowpack enhancement in the Snowy Mountains of Australia. Field studies were conducted during the austral winters of 1988 and 1989 in order to characterize the water and ice composition of clouds passing over these mountains. We utilized a dual-channel microwave radiometer and a Ka-band (8.6 mm wavelength) radar in a coordinated observational program to document the distribution of supercooled liquid water, ice phase precipitation and water vapor in the winter storm systems. The vertical temperature, humidity and wind profiles were obtained at high temporal resolution from local rawinsonde launches. Ground-based sampling of the snow crystal types and the stable isotopic composition of the snow provided information on the processes of crystal formation and riming during these storms. A precipitation trajectory model was used to simulate ice crystal growth for snow which precipitates within the study region. Analysis of these data indicate buildup of supercooled liquid water during certain storm periods, while during other periods the ice crystal growth processes efficiently remove cloud liquid. Several aspects of the cloud seeding potential are discussed in this paper and the overall conclusion is that winter precipitation enhancement is scientifically feasible, based upon the World Meteorological Organization criterion of supercooled liquid water availability. En 1988 on a entrepris un programme de recherche pour analyser les possibilités d'augmentation des chutes de neige dans les Snowy Mountains australiennes. Pendant les hivers austraux de 1988 et 1989, on a realisé diverses expérimentations pour caractériser les contenus en eau et en glace des nuages qui traversent ces montagnes. Dans un programme coordonné, on a utilisé un radiomètre à deux longueurs d'onde et un radar de la bande Ka (8,6 mm de longuerur d'onde) pour déterminer dans les systèmes perturbés d'hiver la distribution de l'eau surfondue, la précipitation dans la phase glace, et la vapeur d'eau. On a analysé par radiosondage les profils de vent, d'humidité et de température. Pour déterminer les processus de formation des cristaux de glace dans les perturbations, on a effectué des prélèvements de cristaux de neige au sol et analysé leur composition isotopique. On a utilisé un modèle de précipitation pour simuler dans la région d'étude la croissance des cristaux de glace de la neige précipitante. L'analyse de ces données montre bien qu'il y a accumulation d'eau liquide surfondue à certaines périodes, tandis qu'à d'autres les processus de croissance des cristaux abaissent le contenu en eau liquide. Dans cet article, on expose différents aspects du potentiel d'ensemencement, et la conclusion, basée sur les critères de l'OMM sur le contenu en eau surfondue disponible, est que l'augmentation de précipitations hivernales est scientifiquement réalisable." @default.
- W2079332045 created "2016-06-24" @default.
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- W2079332045 date "1992-12-01" @default.
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- W2079332045 title "Field study of the potential for winter precipitation enhancement in the Australian Snowy Mountains" @default.
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- W2079332045 doi "https://doi.org/10.1016/0169-8095(92)90016-4" @default.
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