The relationship between sea surface temperature and thermocline depth in the eastern equatorial Pacific

被引:98
|
作者
Zelle, H
Appeldoorn, G
Burgers, G
van Oldenborgh, GJ
机构
[1] KNMI, NL-3730 AE De Bilt, Netherlands
[2] DEOS, Delft, Netherlands
关键词
D O I
10.1175/2523.1
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The time dependence of the local relation between sea surface temperature (SST) and thermocline depth in the central and eastern equatorial Pacific Ocean is analyzed for the period 1990 - 99, using subsurface temperature measurements from the Tropical Atmosphere - Ocean Array/Triangle Trans-Ocean Buoy Network (TAO/TRITON) buoy array. Thermocline depth anomalies lead SST anomalies in time, with a longitude-dependent delay ranging from 2 weeks in the eastern Pacific to 1 year in the central Pacific. The lagged correlation between thermocline depth and SST is strong, ranging from r> 0.9 in the east to r approximate to 0.6 at 170degreesW. Time-lagged correlations between thermocline depth and subsurface temperature anomalies indicate vertical advection of temperature anomalies from the thermocline to the surface in the eastern Pacific. The measurements are compared with the results of forced OGCM and linear model experiments. Using model results, it is shown that the delay between thermocline depth and SST is caused mainly by upwelling and mixing between 1408 and 90degreesW. Between 170degreesE and 140degreesW the delay has a different explanation: thermocline depth anomalies travel to the eastern Pacific, where upwelling creates SST anomalies that in turn cause anomalous wind in the central Pacific. SST is then influenced by these wind anomalies.
引用
收藏
页码:643 / 655
页数:13
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