Weak and Frequent Monsoon Precipitation over the Tibetan Plateau
スポンサーリンク
概要
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This study analyzed the temporal and spatial scales, types, and intensity of precipitation with their temporal variability by using the precipitation data, intensively observed as part of the GAME-Tibet internationa1 project, at the Naqu basin (4500-5000 m) in the Tibetan Plateau from May to September, 1998. The monsoon period at the basin was defined from the middle of June to the beginning of September by the precipitation and GMS/IR convective index variation. Basin averaged monsoon precipitation was 336 mm, and most of the precipitation wore provided as rain OF hail The lowest altitude for a 50% possibility of snowfall walss estimated at almost around 5OOO m above sea level Daily precipitation data records from June to August in the the Asian monsoon region highlighted frequent precipitation with weak intensity in the TibetaJl Plateau. In the Naqu basin, the percentage of days with precipitation of more than O.25 mm/d was 87% during the monsoon season. and the average hourly precipitation intensity was 1.27 mm/h. Difference in the accumulated precipitation amount between daytime and nighttime was not obvious, but the clear diurnal change existed in the precipitation intensity, i e-, weak precipitation events below 1mm/h in the daytime and rather heavy precipitation events above. 3 mm/h at night. Most of the events are associated with the passing of synoptic (plateau) scale cloud area over the plateau. The daytime events consisted of iolated convective echoes with a small spatial scale, the nighttime events consisted of widespread stratiform echoes. According to these observational results, conceptual mechanism : underlying the daytime frequent precipitation with weak inte(nsity are discussed.
- 社団法人日本気象学会の論文
- 2001-03-25
著者
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Liu Liping
Lanzhou Inststute Of Plateau Atmospheric Physics Of The Chinese Academy Of Sciences : (present Affil
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Liu L
Chinese Academy Of Meteorological Sciences
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Ueno K
School Of Environmental Science The University Of Shiga
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Yamada H
Department Of Material Physics Faculty Of Engineering Science Osaka University
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Yamada H
Univ. Tokyo Chiba
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Liu Liping
Chinese Academy Of Meteorological Sciences
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Fujii H
Japan Science And Technology Corporation University Of Tokyo
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Fujii Hideyuki
Japan Science And Technology Corporatian : Department Of Civil Engineering University Of Tokyo
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YAMADA Hiroyuki
Frontier Observational Research System for Global Chanee (FORSGC)
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Yamada H
Nagoya Univ. Nagoya
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Ueno Kenichi
School of Environmental Science, The University of Shiga
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Fnjii Hideyuki
Japan Science and Technology Corporation, University of Tokyo
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Ueno Kenichi
School Of Environmental Science The University Of Shiga
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