斜压性
罗斯比波
比例(比率)
分层(种子)
气象学
大气科学
大气(单位)
重力波
对流
气候学
环境科学
大气模式
地质学
引力波
物理
种子休眠
发芽
植物
量子力学
休眠
天体物理学
生物
标识
DOI:10.1146/annurev-fluid-121108-145537
摘要
Atmospheric flows feature length scales from 10 −5 to 10 5 m and timescales from microseconds to weeks or more. For scales above several kilometers and minutes, there is a natural scale separation induced by the atmosphere's thermal stratification, together with the influences of gravity and Earth's rotation, and the fact that atmospheric-flow Mach numbers are typically small. A central aim of theoretical meteorology is to understand the associated scale-specific flow phenomena, such as internal gravity waves, baroclinic instabilities, Rossby waves, cloud formation and moist convection, (anti-)cyclonic weather patterns, hurricanes, and a variety of interacting waves in the tropics. Single-scale asymptotics yields reduced sets of equations that capture the essence of these scale-specific processes. For studies of interactions across scales, techniques of multiple-scales asymptotics have received increasing recognition in recent years. This article recounts the most prominent scales and associated scale-dependent models and summarizes recent multiple-scales developments.
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