JpGU-AGU Joint Meeting 2020

講演情報

[E] 口頭発表

セッション記号 A (大気水圏科学) » A-AS 大気科学・気象学・大気環境

[A-AS05] 大規模な水蒸気場と組織化した雲システム

コンビーナ:三浦 裕亮(国立大学法人 東京大学大学院 理学系研究科 地球惑星科学専攻)、濱田 篤(富山大学)、横井 覚(海洋研究開発機構)、佐藤 正樹(東京大学大気海洋研究所)

[AAS05-09] New Critical Length Scale for the Onset of Self-Aggregation of Moist Convection

★Invited Papers

*柳瀬 友朗1,2,3西澤 誠也1三浦 裕亮4,1竹見 哲也3富田 浩文1,5 (1.理化学研究所計算科学研究センター、2.京都大学大学院理学研究科、3.京都大学防災研究所、4.東京大学大学院理学系研究科、5.理化学研究所開拓研究本部)

キーワード:放射対流平衡、熱帯対流の組織化、SCALE-RM

Self-organization of convective clouds, Convective Self-Aggregation (CSA), in an idealized modeling framework of the tropical climate, has been recognized as a key process to understand cloud-climate relationships. This study investigated how CSA occurs under an idealized radiative-convective equilibrium climate simulated by a regional cloud-resolving model with wide varieties of horizontal domain sizes and horizontal grid spacings. First of all, our results basically reproduced the results of Muller and Held (2012) that CSA is unlikely to occur from a homogeneous initial moisture field with finer resolution and/or smaller domain. However, by extending the domain size, we found that CSA occurs even with the finer resolution. Based on the dozens of experiments, we discovered a new critical domain size around 500 km above which CSA robustly occurs with a more reliable resolution range including a half kilometer. In addition to this, a sharp variation of the critical domain size across the grid spacing around 2 km became apparent. It implies that the resolution alters a multiscale interaction of moist convection ranged from individual convective elements to large-scale overturning circulation coupled with moisture field. Finally, the onset mechanism of CSA is discussed in terms of the competing effects on the boundary layer moisture distribution, by rethinking the negative effect of cold pools on the onset of CSA which have been reported by previous studies.