Intraseasonal Reversal of Winter Temperature Anomalies in Eastern China in Early 2022 and Its Possible Causes

Author:

Zhang Keyu1,Shi Chunhua1ORCID,Zheng Ziqian1,Wang Yiwei1,Shi Tongtong2

Affiliation:

1. Key Laboratory of Meteorological Disaster, Ministry of Education (KLME)/School of Atmospheric Sciences, Nanjing University of Information Science and Technology, Nanjing 210044, China

2. School of Marine Sciences, Nanjing University of Information Science and Technology, Nanjing 210044, China

Abstract

A remarkable intraseasonal reversal of temperature anomaly is witnessed in eastern China in early 2022, characterized by a warm January and a cold February. ERA5 daily reanalysis data, multiple regression and the Linear Baroclinic Model (LBM) are employed to investigate the characteristics and causes of this abnormal temperature Pattern. The findings indicate that: (1) The two Rossby wave trains along the south and north westerly jets over Eurasia have synergistic impacts on middle and high latitudes. In January, the south branch Rossby wave train exhibited a positive phase, coinciding with a negative phase in the north branch wave train. As a result, the south trough strengthens, while the north trough weakens, leading to anomalous warm advection that warms eastern China. In February, the phases of these two Rossby waves are reversed, causing anomalous cold advection as the southern trough diminishes and the northern trough intensifies, resulting in colder conditions in eastern China. (2) Tropical convection activity weakens in January, whereas it intensifies in February in the northeast Indian Ocean. The weakening of the East Asian trough as a result of the convective latent heat anomalies caused an anticyclonic circulation over the Korean Peninsula in January through the Pacific-Japan teleconnection-like pattern, which is necessary for the maintenance of warm anomalies. Conversely, increased convective activity in February induces cyclonic circulation, deepening the East Asian trough over the Korean Peninsula and contributing to the persistence of cold anomalies. (3) The Rossby wave trains along the two westerly jets and the tropical convective activity in the northeastern Indian Ocean work in tandem, simultaneously strengthening or weakening the East Asian trough. Consequently, the East Asian trough weakens in January and strengthens in February.

Funder

National key research and development plan of China

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference51 articles.

1. Temporal Fluctuations in Weather and Climate Extremes That Cause Economic and Human Health Impacts: A Review;Kunkel;Bull. Amer. Meteor. Soc.,1999

2. Causes of the unprecedented freezing disaster in January 2008 and its possible association with the global warming;Ding;Acta Meteor. Sin.,2008

3. Effects of the upstream temperature anomaly on freezing rain and snowstorms over southern China in early 2008;Zuo;J. Meteor. Res.,2016

4. Climatology and interannual variation of the East Asian winter monsoon: Results from the 1979−95 NCEP/NCAR reanalysis;Zhang;Mon. Weather Rev.,1997

5. Inter-decadal variations of winter air temperature in north China and its circulation background;Shen;J. Meteorol. Sci.,2010

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