日本地球惑星科学連合2025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-AS 大気科学・気象学・大気環境

[A-AS04] 大気の鉛直運動を基軸とした地球環境学の新展開

2025年5月30日(金) 10:45 〜 12:15 展示場特設会場 (4) (幕張メッセ国際展示場 7・8ホール)

コンビーナ:佐藤 正樹(東京大学大気海洋研究所)、佐藤 薫(東京大学 大学院理学系研究科 地球惑星科学専攻)、岡本 創(九州大学)、伊藤 純至(東北大学)、座長:佐藤 正樹(東京大学大気海洋研究所)、伊藤 純至(東北大学)

11:30 〜 11:45

[AAS04-04] Entrainment rate of convective thermal

*渡邉 俊一1末木 健太1 (1.気象研究所)

キーワード:エントレインメント率、ラージエディシミュレーション、積雲対流、対流サーマル

Entrainment is a key process influencing the characteristics of convection. Recent studies have shown that deep convection consists of thermals—discrete, buoyant spherical structures that ascend through the atmosphere. In this study, we evaluated the entrainment rate of convective thermals.
We conducted an idealized simulation of deep convection, representing the diurnal cycle over tropical land, with a grid spacing of 125 m. This simulation successfully reproduced deep convection, including its turbulent structures. The entrainment rate was estimated using a passive scalar advected by the local wind. The scalar’s environmental concentration decreases with height, and as a thermal ascends, its scalar concentration decreases due to entrainment of the surrounding air.
On average, the entrainment rate decreases as the thermal size increases. However, the entrainment rate varies significantly among thermals of similar size, suggesting that entrainment is a stochastic process. We also investigated how the entrainment rate depends on environmental wind. For isolated convection, vertical wind shear has little effect on the entrainment rate.
We estimated the buoyancy of thermals using a simple parcel model that accounts for entrainment. When applying the entrainment rate specific to each thermal, the model accurately predicts its buoyancy. However, when using the average entrainment rate, the model fails to predict the buoyancy of individual thermals.