Interdecadal Variation in the Synoptic Features of Mei-Yu in the Yangtze River Valley Region and Relationship with the Pacific Decadal Oscillation

Author:

Sun Bo1,Wang Huijun1,Zhou Botao1,Li Hua2

Affiliation:

1. Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters/Key Laboratory of Meteorological Disasters, Ministry of Education/Joint International Research Laboratory of Climate and Environment Change, Nanjing University of Information Science and Technology, Nanjing, and Nansen Zhu International Research Centre, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China

2. Nansen Zhu International Research Centre, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China

Abstract

Abstract This study introduces a multivariable covariance index (MVCI) to illustrate the synoptic features of mei-yu in the Yangtze River valley (YRV) region, which contains information of three indicators of mei-yu including precipitation, surface relative humidity, and tropospheric vertical motion. The interdecadal variation in the synoptic features of mei-yu during 1961–2016 is investigated using the MVCI. The date of mei-yu peak and the intensity of mei-yu underwent noticeable interdecadal variations over past decades, which are characterized by a delayed (relatively early) mei-yu peak and a relatively large (small) mei-yu intensity during 1985–97 (1961–80 and 2006–16). The mechanisms of these interdecadal variations are further discussed. The interdecadal variation in the date of mei-yu peak is mainly modulated by the meridional water vapor transport over eastern China during June, which may be partially attributed to an influence of the Pacific decadal oscillation (PDO) on the clockwise gyre over the North Pacific during boreal summer. The interdecadal variation in mei-yu intensity is associated with the interdecadal variation of tropospheric vertical motion over the YRV region during boreal summer, which may be partially attributed to an interaction between the PDO and the large-scale tropical east–west circulation during boreal summer. In addition, the interdecadal variation in the water vapor flux budget and relative humidity over the YRV region also exerted an impact on the interdecadal variation of mei-yu intensity in the YRV region.

Funder

Young Scientists Fund

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Porvince of China

Natural Science Foundation of Jiangsu Higher Education Institutions of China

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference79 articles.

1. Projected change in East Asian summer monsoon precipitation under RCP scenario;Chen;Meteor. Atmos. Phys.,2013

2. Projection and uncertainty analysis of global precipitation-related extremes using CMIP5 models;Chen;Int. J. Climatol.,2014

3. Future changes in precipitation extremes over China using the NEX-GDDP high-resolution daily downscaled data-set;Chen;Atmos. Oceanic Sci. Lett.,2017

4. A diagnostic analysis of the simulated structure of a Meiyu front system in 1999;Cui;Acta Meteor. Sin.,2009

5. A study of the synoptic-climatology of the Meiyu system in East Asia;Ding;Chin. J. Atmos. Sci.,2007

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