Impacts of Coastal SST Variability on the East Asian Summer Monsoon |
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Authors: | Huang Anning Zhang Yaocun Gao Xinfang |
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Affiliation: | Department of Atmospheric Sciences, Nanjing University, Nanjing 210093,Department of Atmospheric Sciences, Nanjing University, Nanjing 210093,Department of Atmospheric Sciences, Nanjing University, Nanjing 210093 |
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Abstract: | The impacts of the seasonal and interannual SST variability in the East Asia coastal regions (EACRSST) on the East Asian summer
monsoon (EASM) have been examined using a regional climate model (PσRCM9) in this paper. The simulation results show that the correlation between the EACRSST and the EASM is strengthened after
the mid-1970s and also the variability of the EACRSST forcing becomes much more important to the EASM interannual variability
after the mid-1970s. The impacts of the EACRSST on the summer precipitation over each sub-region in the EASM region become
weak gradually from south to north, and the temporal evolution features of the summer precipitation differences over North
and Northeast China agree well with those of the index of EASM (IEASM) differences.
The mechanism analyses show that different EACRSST forcings result in the differences of sensible and latent heat flux exchanges
at the air-sea interface, which alter the heating rate of the atmosphere. The heating rate differences induce low level air
temperature differences over East Asia, resulting in the differences of the land-sea thermal contrast (LSTC) which lead to
850 hPa geopotential height changes. When the 850 hPa geopotential height increases over the East Asian continent and decreases
over the coast of East China and the adjacent oceans during the weakening period of weakens consequently. On the contrary,
the EASM enhances during the strengthening period of the LSTC. |
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Keywords: | The impacts of the seasonal and interannual SST variability in the East Asia coastal regions
(EACRSST) on the East Asian summer monsoon (EASM) have been examined using a regional climate model
(P$\sigma$RCM9) in this paper. The simulation results show tha |
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