Substantial Sea Surface Temperature Cooling in the Banda Sea Associated With the Madden-Julian Oscillation in the Boreal Winter of 2015

被引:4
|
作者
Pei, Suyang [1 ]
Shinoda, Toshiaki [1 ]
Steffen, John [2 ]
Seo, Hyodae [2 ]
机构
[1] Texas A&M Univ Corpus Christi, Dept Phys & Environm Sci, Corpus Christi, TX 78412 USA
[2] Woods Hole Oceanog Inst, Phys Oceanog Dept, Woods Hole, MA 02543 USA
关键词
Banda Sea; sea surface temperature; Madden-Julian Oscillation (MJO); mixed layer processes; El Nino-Southern Oscillation (ENSO); Maritime Continent; TIDAL MIXING SIGNATURES; UPPER OCEAN RESPONSE; INDONESIAN SEAS; WESTERN PACIFIC; DIURNAL CYCLE; HEAT FLUXES; VARIABILITY; CONVECTION; MJO; THERMOCLINE;
D O I
10.1029/2021JC017226
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Substantial (similar to 2 degrees C) basin averaged sea surface temperature (SST) cooling in the Banda Sea occurred in less than a 14-day period during the 2015 boreal winter Madden-Julian Oscillation (MJO). Such rapid and large cooling associated with the MJO has not been reported at least in the last two decades. Processes that control the substantial cooling during the 2015 MJO event are examined using high-resolution ocean reanalysis and one-dimensional (1-D) ocean model simulations. Previous studies suggest that MJO-induced SST variability in the Banda Sea is primarily controlled by surface heat flux. However, heat budget analysis of the model indicates that entrainment cooling produced by vertical mixing contributes more than surface heat flux for driving the basin-wide SST cooling during the 2015 event. Analysis of the ocean reanalysis further demonstrates that the prominent coastal upwelling around islands in the southern basin occurs near the end of the cooling period. The upwelled cold waters are advected by MJO-induced surface currents to a large area within the Banda Sea, which further maintains the basin-wide cold SST. These results are compared with another MJO-driven substantial cooling event during the boreal winter of 2007 in which the cooling is mostly driven by surface heat flux. Sensitivity experiments, in which initial temperature conditions for the two events are replaced by each other, demonstrate that the elevated thermocline associated with the 2015 strong El Nino is largely responsible for the intensified cooling generated by the vertical mixing with colder subsurface waters.
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页数:19
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