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Gravity waves amplify upper tropospheric dehydration by clouds

机译:重力波放大云层对流层上的脱水

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AbstractWe use a 1-D cloud model run using a prescribed temperature field to investigate the role of gravity waves in dehydration in the tropical tropopause layer (TTL). We find that gravity waves play an important role in the TTL dehydration process beyond just lowering the minimum temperature experienced by the air parcels. We show that the more rapid cooling in the presence of gravity waves significantly increases the abundance ice crystals. This increase in ice crystal concentration causes a more rapid depletion of vapor in excess of saturation, and the resultant cloud dehydration efficiency is increased. Using a spectrum of gravity waves, we generate ice particle statistics that are in good agreement with observations. We also find that the gravity waves increase cloudiness. Our results show that cloud physics and gravity wave temperature fluctuations cannot be neglected in simulating the TTL physics. In fact, it appears that short-period waves may be an essential component of the TTL cloud dehydration process.
机译:摘要我们使用一维云模型运行,该模型使用规定的温度场来研究重力波在热带对流层顶层(TTL)脱水中的作用。我们发现重力波在TTL脱水过程中起着重要作用,而不仅仅是降低空气包裹所经历的最低温度。我们表明在重力波的存在下更快速的冷却显着增加了丰富的冰晶。冰晶浓度的这种增加导致蒸气更快地耗尽,超过饱和度,并且所产生的云层脱水效率增加。利用引力波谱,我们生成与观测非常吻合的冰粒统计数据。我们还发现重力波会增加浑浊。我们的结果表明,在模拟TTL物理过程中不能忽略云物理和重力波温度波动。实际上,看来短周期波可能是TTL云脱水过程的重要组成部分。

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