Northern East Asian Monsoon Precipitation Revealed by Airmass Variability and Its Prediction
- Authors
- Seo, Kyong-Hwam; Son, Jun-Hyeok; Lee, June-Yi; Park, Hyo-Seok
- Issue Date
- Aug-2015
- Publisher
- American Meteorological Society
- Citation
- Journal of Climate, v.28, no.15, pp.6221 - 6233
- Indexed
- SCIE
SCOPUS
- Journal Title
- Journal of Climate
- Volume
- 28
- Number
- 15
- Start Page
- 6221
- End Page
- 6233
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/17451
- DOI
- 10.1175/JCLI-D-14-00526.1
- ISSN
- 0894-8755
- Abstract
- This work provides a new perspective on the major factors controlling the East Asian summer monsoon (EASM) in July and a promising physical-statistical forecasting of the EASM ahead of summer. Dominant modes of the EASM are revealed from the variability of large-scale air masses discerned by equivalent potential temperature, and they are found to be dynamically connected with the anomalous sea surface temperatures (SSTs) over the three major oceans of the world and their counterparts of prevailing atmospheric oscillation or teleconnection patterns. Precipitation over northern East Asia (NEA) during July is enhanced by the tropical central Indian Ocean warming and central Pacific El Nino-related SST warming, the northwestern Pacific cooling off the coast of NEA, and the North Atlantic Ocean warming. Using these factors and data from the preceding spring seasons, the authors build a multiple linear regression model for seasonal forecasting. The cross-validated correlation skill predicted for the period 1994 to 2012 is up to 0.84, which far exceeds the skill level of contemporary climate models.
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