Progress of synoptic studies for heavy rain in China

During the past 70 years since 1949, Chinese meteorologists have made a great deal of researches on heavy rain in China and gained huge achievements. This article is a brief review about the categories, the large scale background synoptic conditions, the influencing weather systems in various scales...

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Main Author: Shaowen SHOU
Format: Article
Language:zho
Published: Editorial Office of Torrential Rain and Disasters 2019-10-01
Series:暴雨灾害
Subjects:
Online Access:http://www.byzh.org.cn/cn/article/doi/10.3969/j.issn.1004-9045.2019.05.007
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author Shaowen SHOU
author_facet Shaowen SHOU
author_sort Shaowen SHOU
collection DOAJ
description During the past 70 years since 1949, Chinese meteorologists have made a great deal of researches on heavy rain in China and gained huge achievements. This article is a brief review about the categories, the large scale background synoptic conditions, the influencing weather systems in various scales, the physical mechanisms, and the methodology of diagnosis and forecasting of the heavy rain in China. The researches reveal that:(1) The heavy rain processes in China have distinct regional, seasonal and time-phased features. There are three seasonal large scale rain bands in east China, moving from south to north and with distinct jumping in locations. The large scale circulation patterns include steady meridional type, steady zonal type and middle-low latitude interactional type etc., and different areas have different special situations of circulation. (2) The summer precipitation in China is closely related to the westerly long waves, blocking-high pressures, subtropical high and tropical circulations as well as the East Asian summer monsoon systems etc. The upper air troughs, surface cyclones, fronts, upper air cold vortexes, low level shear lines and cyclonic vortexes as well as high and low level jet streams etc. are the major synoptic and subsynoptic systems playing important roles in most heavy precipitation processes. Typhoon is the strongest heavy rain system, and most of heavy rain processes occurred in near-coast provinces of China are closely related to typhoon. (3) Mesoscale systems, especially mesoscale convective systems are the direct producers and carriers of heavy rain phenomena. The article discussed the heavy rain diagnosis methods based on the atmospheric dynamics and thermodynamics theories. The diagnosis analyses make the heavy rain studies objectively and quantitatively. It will be helpful for deepening understanding the formation mechanisms of heavy rain and improving the heavy rain forecasting in different ranges. At the end of the article a thinking and outlook about the heavy rain studies in future are presented.
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spelling doaj.art-1e536e4509db4477870b3813013c0c032023-07-06T05:00:07ZzhoEditorial Office of Torrential Rain and Disasters暴雨灾害2097-21642019-10-0138545046310.3969/j.issn.1004-9045.2019.05.0072601Progress of synoptic studies for heavy rain in ChinaShaowen SHOU0School of Atmospheric Sciences, Nanjing University of Information Science&Technology, Nanjing 210044During the past 70 years since 1949, Chinese meteorologists have made a great deal of researches on heavy rain in China and gained huge achievements. This article is a brief review about the categories, the large scale background synoptic conditions, the influencing weather systems in various scales, the physical mechanisms, and the methodology of diagnosis and forecasting of the heavy rain in China. The researches reveal that:(1) The heavy rain processes in China have distinct regional, seasonal and time-phased features. There are three seasonal large scale rain bands in east China, moving from south to north and with distinct jumping in locations. The large scale circulation patterns include steady meridional type, steady zonal type and middle-low latitude interactional type etc., and different areas have different special situations of circulation. (2) The summer precipitation in China is closely related to the westerly long waves, blocking-high pressures, subtropical high and tropical circulations as well as the East Asian summer monsoon systems etc. The upper air troughs, surface cyclones, fronts, upper air cold vortexes, low level shear lines and cyclonic vortexes as well as high and low level jet streams etc. are the major synoptic and subsynoptic systems playing important roles in most heavy precipitation processes. Typhoon is the strongest heavy rain system, and most of heavy rain processes occurred in near-coast provinces of China are closely related to typhoon. (3) Mesoscale systems, especially mesoscale convective systems are the direct producers and carriers of heavy rain phenomena. The article discussed the heavy rain diagnosis methods based on the atmospheric dynamics and thermodynamics theories. The diagnosis analyses make the heavy rain studies objectively and quantitatively. It will be helpful for deepening understanding the formation mechanisms of heavy rain and improving the heavy rain forecasting in different ranges. At the end of the article a thinking and outlook about the heavy rain studies in future are presented.http://www.byzh.org.cn/cn/article/doi/10.3969/j.issn.1004-9045.2019.05.007heavy rainsynoptic meteorologyresearch progressweather systemdiagnosisforecasting
spellingShingle Shaowen SHOU
Progress of synoptic studies for heavy rain in China
暴雨灾害
heavy rain
synoptic meteorology
research progress
weather system
diagnosis
forecasting
title Progress of synoptic studies for heavy rain in China
title_full Progress of synoptic studies for heavy rain in China
title_fullStr Progress of synoptic studies for heavy rain in China
title_full_unstemmed Progress of synoptic studies for heavy rain in China
title_short Progress of synoptic studies for heavy rain in China
title_sort progress of synoptic studies for heavy rain in china
topic heavy rain
synoptic meteorology
research progress
weather system
diagnosis
forecasting
url http://www.byzh.org.cn/cn/article/doi/10.3969/j.issn.1004-9045.2019.05.007
work_keys_str_mv AT shaowenshou progressofsynopticstudiesforheavyraininchina