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  1. 防災科研関係論文

Effects of large-scale moisture transport and mesoscale processes on precipitation isotope ratios observed at Sumatera, Indonesia

https://nied-repo.bosai.go.jp/records/5506
https://nied-repo.bosai.go.jp/records/5506
314d4017-0734-4461-9e1a-50e212fd42a2
Item type researchmap(1)
公開日 2023-03-30
タイトル
言語 en
タイトル Effects of large-scale moisture transport and mesoscale processes on precipitation isotope ratios observed at Sumatera, Indonesia
言語
言語 eng
著者 Hironori Fudeyasu

× Hironori Fudeyasu

en Hironori Fudeyasu

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Kimpei Ichiyanagi

× Kimpei Ichiyanagi

en Kimpei Ichiyanagi

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Kei Yoshimura

× Kei Yoshimura

en Kei Yoshimura

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Shuichi Mori

× Shuichi Mori

en Shuichi Mori

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Jun Ichi Hamada

× Jun Ichi Hamada

en Jun Ichi Hamada

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Namiko Sakurai

× Namiko Sakurai

en Namiko Sakurai

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Manabu D. Yamanaka

× Manabu D. Yamanaka

en Manabu D. Yamanaka

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Jun Matsumoto

× Jun Matsumoto

en Jun Matsumoto

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Fadli Syamsudin

× Fadli Syamsudin

en Fadli Syamsudin

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抄録
内容記述タイプ Other
内容記述 Isotopic and meteorological observations in November 2006 on the west coast of Sumatera, Indonesia during the intense observation period of the Hydrometeorological ARray for Intraseasonal Variation-Monsoon AUtomonitoring (HARIMAU2006), revealed the impacts of large-scale moisture transport and mesoscale processes on precipitation isotope ratios. Intraseasonal changes in the precipitation d2H in November had large variability ranging from +10 to -65 per mil, as a result of the changes in the large-scale moisture transport associated with the intraseasonal oscillation with a time-scale of 10-15 day over Sumatera. The isotopic composition of precipitation was independent from di{currency sign}erence in precipitation type (convective or stratiform precipitation). An isotope circulation model reproduced the observed isotopic changes, supporting that the isotopic effect of large-scale moisture transport was the main contributor to intraseasonal isotopic changes. In high-frequency samples taken over a shorter time scale, isotopic variability was related to event type classified by the analysis of radar observations, although the isotopic effects of mesoscale processes on the isotopic averages of each precipitation event were almost masked by the isotopic effect of large-scale moisture transport. The precipitation δ H accompanying the well-organized convection type decreased significantly by about 20 per mil. Drastic changes in isotope ratios could be described by the Rayleigh distillation process. Isotope ratios of precipitation gently decreased and subsequently increased in the unorganized convection type since the water vapor in surrounding convectively rising air isotopically enriched the remaining low-isotope water vapor advected from the precedent clouds. Isotope ratios in the strati form precipitation remained steady, possibly attributable to the homogeneous moisture of strati form clouds. c 2011, Meteorological Society of Japan. 2
言語 en
書誌情報 en : Journal of the Meteorological Society of Japan

巻 89, 号 A, p. 49-59, 発行日 2011
ISSN
収録物識別子タイプ ISSN
収録物識別子 0026-1165
DOI
関連識別子 10.2151/jmsj.2011-A03
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