日本地球惑星科学連合2021年大会

講演情報

[E] 口頭発表

セッション記号 A (大気水圏科学) » A-CG 大気海洋・環境科学複合領域・一般

[A-CG36] 衛星による地球環境観測

2021年6月3日(木) 10:45 〜 12:15 Ch.08 (Zoom会場08)

コンビーナ:沖 理子(宇宙航空研究開発機構)、本多 嘉明(千葉大学環境リモートセンシング研究センター)、高薮 縁(東京大学 大気海洋研究所)、松永 恒雄(国立環境研究所地球環境研究センター/衛星観測センター)、座長:江淵 直人(北海道大学低温科学研究所)、高薮 縁(東京大学 大気海洋研究所)、高橋 暢宏(名古屋大学 宇宙地球環境研究所)

11:00 〜 11:15

[ACG36-08] Examining possibility of cloud/rain/ice water path partitioning over land using passive microwave observations

*瀬戸 里枝1、鼎 信次郎1 (1.東京工業大学)

キーワード:雲/降水より分け推定、受動的マイクロ波観測、陸域

For the monitoring of water and energy cycles, satellite-based cloud water estimations provide valuable information. However, most existing methods estimate cloud water with emphasis on one category of hydrometeor type. Because the features of the rainfall carried by a cloud system can vary depending on the particle type distribution within the cloud system, even with the same total water content. Thus, water contents must be estimated separately. Moreover, applying those methods to estimations over land is a widely recognized challenge. This study developed a 36.5 GHz method of estimating total liquid water path, and partitioning it into liquid cloud and rain water paths over land using the difference between horizontal and vertical polarizations at 36.5 GHz. The method was validated by satellite cloud radar products and the results show that liquid water paths over land can be estimated reasonably well using 36.5 GHz. Furthermore, based on comparison between the features of estimation results of 36.5 GHz method and 89.0 GHz method, the possibility of cloud–rain–ice partitioned estimation was assessed. Assessment results showed that the 36.5 GHz method of this study can reduce information needed for total liquid water path estimation and save high-frequency microwave observations, which indicates the possibility to partition liquid and ice water path using the difference between 36.5- and higher-frequency measurements.