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THE ROLE OF MONSOON CONVECTION IN THE DEHYDRATION OF THE LOWER TROPICAL STRATOSPHERE

机译:季风对流在低层热带平流层球脱水中的作用

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Observations by radiosondes, satellites, and aircraft have shown that a minimum in water vapor mixing ratio in the lower tropical stratosphere (typically around 19-km altitude) is a climatological feature of the global water vapor distribution. The processes responsible for the formation and maintenance of this minimum are examined with the aid of a mesoscale dynamical model of tropical convection that includes bulk ice microphysics, radiative transfer, and surface processes. Model results suggest that convectively generated buoyancy waves may play an important role in dehydrating the tropical lower stratosphere. Vertical parcel displacements produced by buoyancy waves promote the formation of thin ice clouds in the lower stratosphere. Such clouds formed upwind of the convective region in all simulations where ice was allowed to form. When ice was allowed to precipitate, there was a decrease of approximate to 0.3 ppmm in total water mixing ratio at 19 km after a 30-h simulation. It is concluded that thin cirrus clouds produced by buoyancy waves may contribute significantly to the formation and maintenance of the observed water vapor minimum in the lower tropical stratosphere. [References: 34]
机译:无线电探空仪,卫星和飞机的观测结果表明,热带低空平流层(通常在19公里左右)的最低水蒸气混合比是全球水蒸气分布的气候特征。在热带对流的中尺度动力学模型的帮助下,对造成该最小值的形成和维持的过程进行了研究,该模型包括大量冰的微观物理学,辐射传递和表面过程。模型结果表明,对流产生的浮力波可能在热带低平流层脱水中起重要作用。浮力波产生的垂直包裹位移促进了平流层下部薄冰云的形成。在所有允许结冰的模拟中,这些云层都形成了对流区域的上风。当冰沉淀后,经过30小时的模拟,在19 km处总水混合比降低了约0.3 ppmm。结论是,由浮力波产生的薄卷云可能对低空平流层低层水汽的形成和维持起着重要作用。 [参考:34]

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