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The South China Sea throughflow: linkage with local monsoon system and impact on upper thermal structure of the ocean

机译:The south China sea throughflow: linkage with local monsoon system and impact on upper thermal structure of the ocean

摘要

The tendency of South China Sea throughflow (SCSTF) variation associated with the local monsoon system, and its impact on upper-layer thermal structure, are studied using the Simple Ocean Data Assimilation (SODA) dataset, combined with Ishii reanalysis data. Luzon Strait Transport (LST) is measured and used as an index for studying the SCSTF variation. Results show that LST had an increasing tendency over the last 50 years, mainly in summer and fall. The increasing tendency was 0.017 1 Sv/a in summer and 0.027 4 Sv/a in fall, as estimated by SODA, and 0.018 0 Sv/a in summer and 0.018 9 Sv/a in fall, as estimated by "Island Rule" theory. LST increased by 0.53 Sv in JJA (June-July-August) and 0.98 Sv in SON (September-October-November) after climate shift, as inferred by SODA data. The average LST anomaly in JJA and SON is strongly related to the local monsoon system, especially to variability of the meridional wind stress anomaly after application of a 3-year running mean, with correlation coefficients 0.57 and 0.51, respectively. In addition to the basin-scale wind forcing, the local northeasterly wind stress anomaly in the SCS can push Pacific water entering the SCS more readily in JJA and SON after climate shift, and an SCSTF-associated cooling effect may favor subsurface cooling more frequently after climate shift.
机译:利用简单海洋数据同化(SODA)数据集并结合石井再分析数据,研究了与当地季风系统有关的南海通量(SCSTF)变化趋势及其对上层热结构的影响。测量了吕宋岛海峡运输(LST),并将其用作研究SCSTF变化的指标。结果表明,在过去的50年中,LST有增加的趋势,主要在夏季和秋季。根据SODA估计,夏季增加趋势为夏季0.017 1 Sv / a,秋季下降0.027 4 Sv / a,根据“岛屿法则”理论估计,夏季为0.018 0 Sv / a,秋季为0.018 9 Sv / a。 。根据SODA数据推断,在气候变化后,JJA(6月至7月至8月)的LST增加了0.53 Sv,SON(9月至10月至11月)的SON中的LST增加了0.98 Sv。 JJA和SON的平均LST异常与当地季风系统密切相关,特别是与应用3年运行平均值后的子午风应力异常的变化有关,相关系数分别为0.57和0.51。除了盆地规模的风强迫作用外,SCS中局部的东北风应力异常还会促使JJA和SON中的太平洋水更容易地进入JCS和SON中,而与SCSTF相关的冷却作用可能更有利于地下冷却。气候变化。

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    Liu QY; Wang DX; Xie Q;

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  • 年度 2012
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