Climatic characteristics and main weather patterns of extreme precipitation in the middle Yangtze River valley

Author:

Chen Hongzhuan12ORCID,Yin Xinhuai3ORCID,Huang Xiaoyu4,Zhao Enrong5,Ou Xiaofeng6,Ye Chengzhi6

Affiliation:

1. a Huaihua Meteorological Bureau, Huaihua 418000, China

2. b Key Laboratory of Weather Disaster Prevention and Mitigation in Hunan Province, Changsha 410118, China

3. c Meteorological Technology Equip Cesnter of Hunan, Changsha 410118, China

4. d National Meteorological Centre, Beijing 100081, China

5. e Hunan Meteorological Observatory, Changsha 410118, China

6. f Hunan Institute of Meteorological Sciences, Changsha 410118, China

Abstract

Abstract Based on the daily precipitation data and ERA5 reanalysis data of 40 years from 1981 to 2018 in the middle Yangtze River Valley (MYRV), the climatic characteristics of extreme precipitation are analyzed using statistical methods. The multivariate empirical orthogonal functions and spectral clustering methods are used to classify and synthesize the extreme precipitation weather. The results show that: (1) The spatial distribution of the extreme precipitation threshold is uneven due to the regional topography. The spatial distribution of the average precipitation and frequency of extreme precipitation days is characterized by the north-south antiphase distribution. (2) According to the main influencing systems, the 215 regional extreme precipitation days in the MYRV in the past 40 years can be classified into three types: southwest vortex type, typhoon type, and cold trough shear line type. (3) The southwest vortex type of extreme precipitation occurs in the deep warm and humid airflow in front of the southwest vortex trough, but the typhoon type has better thermal dynamic conditions, and the cold and warm airflow convergence of the cold trough shear line type is more obvious. The rainfall area of three types of extreme precipitation is the result of the synergistic effect of the system.

Funder

National Natural Science Foundation of China

National Key R&D Program of China

Key projects of Hunan Meteorological Bureau

China Meteorological Administration Meteorological Forecast Operation Key Technology Development Projec

Publisher

IWA Publishing

Subject

Management, Monitoring, Policy and Law,Atmospheric Science,Water Science and Technology,Global and Planetary Change

Reference49 articles.

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