日本地球惑星科学連合2021年大会

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[J] ポスター発表

セッション記号 M (領域外・複数領域) » M-SD 宇宙開発・地球観測

[M-SD40] 将来の衛星地球観測

2021年6月4日(金) 17:15 〜 18:30 Ch.20

コンビーナ: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)、Shinichi Sobue(Japan Aerospace Exploration Agency)、山本 晃輔(国立研究開発法人宇宙航空研究開発機構)

17:15 〜 18:30

[MSD40-P09] ドップラー雲レーダと多視野角・高スペクトル分解・ 偏光ドップラーラ イダによる雲・エアロゾル・鉛直流観測ミッション

岡本 創1、鈴木 健太郎2、*西澤 智明3、神 慶孝3、石井 昌憲4、冨田 英一5 (1.九州大学、2.東京大学、3.国立環境研究所、4.東京都立大学、5.宇宙航空研究開発機構)

キーワード:雲レーダ、ライダ、雲、エアロゾル、鉛直速度

We propose a synergy space-borne observation mission using 94GHz Doppler cloud radar and high spectral resolution lidar (HSRL) with doppler, multi-field-of-view, and depolarization measurement functions to study clouds, aerosol and convection. Expected products include (1) microphysics of clouds, aerosols and precipitations, (2) fall velocity of clouds, rain and snow particles, and (3) air motion in cloud, above clouds and in clear sly condition. Lidar wavelengths are 532nm and 1064nm. HSRL function is considered for 532nm. Polarization capability is implemented at least for 532nm. Direct detection method is used to estimate Doppler velocity at 532nm. 94GHz cloud radar and lidar with Doppler function measure three-dimensional air motion in clouds as well as in clear sky, respectively. High spectral resolution function at 532nm with polarization distinguishes cloud particle type and aerosols. The lidar has multiple field of views in order to obtain information from relatively thick clouds. Since the 94GHz cloud radar has capability to observe inside of the clouds and lidar measures aerosols and clouds, it will be an extended version of space-mission to CloudSat and CALIPSO launched in 2006 and EarthCARE satellite in 2022. The mission will also serve to construct long continuous records of clouds and aerosols for climate change studies with CloudSat, CALIPSO, EarthCARE and future missions such as ACCP.