COSMIC RO数据揭示的全球平流层重力波活动的季节变化

Xiaohua Xu, Daocheng Yu, Jia Luo
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引用次数: 3

摘要

利用星座气象、电离层和气候观测系统2006年9月至2016年6月任务的无线电掩星数据,研究了全球平流层重力波的季节变化。全球重力波10年平均季节平均值的分布表明,各季节在热带和亚热带纬度(30°S-30°N)以及冬季中高纬度地区势能大。重力波势能与代表深对流的出射长波辐射(OLR)在赤道纬度呈负相关。这表明对流是热带地区重力波的主要来源。在50°N和50°S地区,重力波主要由山脉的不同地形产生,在背景纬向风的作用下,重力波要么向上传播,要么被过滤掉。主要发生在冬季半球的强烈东风对重力波的向上传播有很大贡献,而夏季半球明显的0 m/s风速则过滤掉了大部分重力波。这可以解释中高纬度地区重力波的季节变化。
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Seasonal variations of global stratospheric gravity wave activity revealed by COSMIC RO data
Seasonal variations of gravity waves over the globe in the stratosphere are investigated using radio occultation data from the Constellation Observing System for Meteorology, Ionosphere and Climate mission from September 2006 to June 2016. The global distributions of 10-year averaged seasonal means of gravity waves indicate that potential energy is large over tropical and subtropical latitudes (30°S-30°N) in all seasons, as well as over middle and high latitudes in winter hemisphere. Gravity wave potential energy and the outgoing longwave radiation (OLR) which is a proxy for deep convection are negative correlated at equatorial latitudes. This suggests that convection is the primary source of gravity waves in the Tropics. At 50°N and 50°S, gravity waves are mainly generated by the diverse terrains of mountains, and either propagate upward or are filtered out under the effect of background zonal wind. Intense eastward wind, which mainly happens in winter hemisphere, makes great contributions to the upward propagation of gravity waves, while 0 m/s wind level, which is apparent in summer hemisphere, filters out most of the gravity waves. This can explain the seasonal variations of gravity waves at middle and high latitudes.
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