GSTDTAP  > 气候变化
DOI10.1002/2017JD027080
Convectively Driven Tropopause-Level Cooling and Its Influences on Stratospheric Moisture
Kim, Joowan1,2,3; Randel, William J.1; Birner, Thomas2
2018-01-16
发表期刊JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
ISSN2169-897X
EISSN2169-8996
出版年2018
卷号123期号:1页码:590-606
文章类型Article
语种英语
国家USA; South Korea
英文摘要

Characteristics of the tropopause-level cooling associated with tropical deep convection are examined using CloudSat radar and Constellation Observing System for Meteorology, Ionosphere and Climate (COSMIC) GPS radio occultation measurements. Extreme deep convection is sampled based on the cloud top height (>17km) from CloudSat, and colocated temperature profiles from COSMIC are composited around the deep convection. Response of moisture to the tropopause-level cooling is also examined in the upper troposphere and lower stratosphere using microwave limb sounder measurements. The composite temperature shows an anomalous warming in the troposphere and a significant cooling near the tropopause (at 16-19km) when deep convection occurs over the western Pacific, particularly during periods with active Madden-Julian Oscillation (MJO). The composite of the tropopause cooling has a large horizontal scale (similar to 6,000km in longitude) with minimum temperature anomaly of similar to-2K, and it lasts more than 2weeks with support of mesoscale convective clusters embedded within the envelope of the MJO. The water vapor anomalies show strong correlation with the temperature anomalies (i.e., dry anomaly in the cold anomaly), showing that the convectively driven tropopause cooling actively dehydrate the lower stratosphere in the western Pacific region. The moisture is also affected by anomalous Matsuno-Gill-type circulation associated with the cold anomaly, in which dry air spreads over a wide range in the tropical tropopause layer (TTL). These results suggest that convectively driven tropopause cooling and associated transient circulation play an important role in the large-scale dehydration process in the TTL.


Plain Language Summary Convection in the tropics may be expected to hydrate the upper atmosphere. However, over the western Pacific, it dehydrates upper atmosphere by making a significant cooling near the tropopause.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000423433500034
WOS关键词WATER-VAPOR ; INTRASEASONAL VARIABILITY ; LAYER ; DEHYDRATION ; TRANSPORT ; MISSION ; IMPACT ; CIRRUS ; REGION ; WAVES
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
被引频次:44[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/32492
专题气候变化
作者单位1.Natl Ctr Atmospher Res, POB 3000, Boulder, CO 80307 USA;
2.Colorado State Univ, Dept Atmospher Sci, Ft Collins, CO 80523 USA;
3.Kongju Natl Univ, Dept Atmospher Sci, Gongju, South Korea
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GB/T 7714
Kim, Joowan,Randel, William J.,Birner, Thomas. Convectively Driven Tropopause-Level Cooling and Its Influences on Stratospheric Moisture[J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,2018,123(1):590-606.
APA Kim, Joowan,Randel, William J.,&Birner, Thomas.(2018).Convectively Driven Tropopause-Level Cooling and Its Influences on Stratospheric Moisture.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,123(1),590-606.
MLA Kim, Joowan,et al."Convectively Driven Tropopause-Level Cooling and Its Influences on Stratospheric Moisture".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 123.1(2018):590-606.
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