Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation

Three river basins, i.e., the Yangtze river, the Mississippi river and the Loire river, were presented as case studies to explore the association among atmospheric circulations, moisture exports and extreme precipitations in the mid-latitudes. The major moisture source regions in the tropics for the...

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Main Authors: Mengqian Lu, Xiaotian Hao
Format: Article
Language:English
Published: MDPI AG 2017-12-01
Series:Atmosphere
Subjects:
Online Access:https://www.mdpi.com/2073-4433/8/12/256
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spelling doaj-98c170ca38ed4f6a8a75614a6e33df9a2020-11-24T22:05:43ZengMDPI AGAtmosphere2073-44332017-12-0181225610.3390/atmos8120256atmos8120256Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme PrecipitationMengqian Lu0Xiaotian Hao1Department of Civil and Environmental Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong 999077, ChinaDepartment of Computer Science and Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong 999077, ChinaThree river basins, i.e., the Yangtze river, the Mississippi river and the Loire river, were presented as case studies to explore the association among atmospheric circulations, moisture exports and extreme precipitations in the mid-latitudes. The major moisture source regions in the tropics for the three river basins are first identified using the Tropical Moisture Exports (TMEs) dataset. The space-time characteristics of their respective moisture sources are presented. Then, the trajectory curve clustering analysis is applied to the TMEs tracks originating from the identified source regions during each basin’s peak TMEs activity and flood seasons. Our results show that the moisture tracks for each basin can be categorized into 3 or 4 clusters with distinct spatial trajectory features. Our further analysis on these clustered trajectories reveals that the contributions of moisture release from different clusters are associated with their trajectory features and travel speeds. In order to understand the role of associated atmospheric steering, daily composites of the geopotential heights anomalies and the vertical integral of moisture flux anomalies from 7 days ahead to the extreme precipitation days (top 5%) are examined. The evolutions of the atmospheric circulation patterns and the moisture fluxes are both consistent with the TMEs tracks that contribute more moisture releases to the study regions. The findings imply that atmospheric steering plays an important role in the moisture transport and release, especially for the extreme precipitations. We also find that the association between TMEs moisture release and precipitation is nonlinear. The extreme precipitation is associated with high TMEs moisture release for all of the three study regions.https://www.mdpi.com/2073-4433/8/12/256tropical moisture exportstrajectory curve clusteringatmospheric circulationmoisture convergencespatial statistics
collection DOAJ
language English
format Article
sources DOAJ
author Mengqian Lu
Xiaotian Hao
spellingShingle Mengqian Lu
Xiaotian Hao
Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation
Atmosphere
tropical moisture exports
trajectory curve clustering
atmospheric circulation
moisture convergence
spatial statistics
author_facet Mengqian Lu
Xiaotian Hao
author_sort Mengqian Lu
title Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation
title_short Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation
title_full Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation
title_fullStr Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation
title_full_unstemmed Diagnosis of the Tropical Moisture Exports to the Mid-Latitudes and the Role of Atmospheric Steering in the Extreme Precipitation
title_sort diagnosis of the tropical moisture exports to the mid-latitudes and the role of atmospheric steering in the extreme precipitation
publisher MDPI AG
series Atmosphere
issn 2073-4433
publishDate 2017-12-01
description Three river basins, i.e., the Yangtze river, the Mississippi river and the Loire river, were presented as case studies to explore the association among atmospheric circulations, moisture exports and extreme precipitations in the mid-latitudes. The major moisture source regions in the tropics for the three river basins are first identified using the Tropical Moisture Exports (TMEs) dataset. The space-time characteristics of their respective moisture sources are presented. Then, the trajectory curve clustering analysis is applied to the TMEs tracks originating from the identified source regions during each basin’s peak TMEs activity and flood seasons. Our results show that the moisture tracks for each basin can be categorized into 3 or 4 clusters with distinct spatial trajectory features. Our further analysis on these clustered trajectories reveals that the contributions of moisture release from different clusters are associated with their trajectory features and travel speeds. In order to understand the role of associated atmospheric steering, daily composites of the geopotential heights anomalies and the vertical integral of moisture flux anomalies from 7 days ahead to the extreme precipitation days (top 5%) are examined. The evolutions of the atmospheric circulation patterns and the moisture fluxes are both consistent with the TMEs tracks that contribute more moisture releases to the study regions. The findings imply that atmospheric steering plays an important role in the moisture transport and release, especially for the extreme precipitations. We also find that the association between TMEs moisture release and precipitation is nonlinear. The extreme precipitation is associated with high TMEs moisture release for all of the three study regions.
topic tropical moisture exports
trajectory curve clustering
atmospheric circulation
moisture convergence
spatial statistics
url https://www.mdpi.com/2073-4433/8/12/256
work_keys_str_mv AT mengqianlu diagnosisofthetropicalmoistureexportstothemidlatitudesandtheroleofatmosphericsteeringintheextremeprecipitation
AT xiaotianhao diagnosisofthetropicalmoistureexportstothemidlatitudesandtheroleofatmosphericsteeringintheextremeprecipitation
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