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首页> 外文期刊>Journal of Climate >Satellite and Argo Observed Surface Salinity Variations in the Tropical Indian Ocean and Their Association with the Indian Ocean Dipole Mode
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Satellite and Argo Observed Surface Salinity Variations in the Tropical Indian Ocean and Their Association with the Indian Ocean Dipole Mode

机译:卫星和Argo观测到的热带印度洋地表盐度变化及其与印度洋偶极子模式的关系

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摘要

This study investigates sea surface salinity (SSS) variations in the tropical Indian Ocean (IO) using the Aquarius/Satelite de Aplicaciones Cientificas-D (SAC-D) and the Soil Moisture and Ocean Salinity (SMOS) satellite data and the Argo observations during July 2010-July 2014. Compared to the Argo observations, the satellite datasets generally provide SSS maps with higher space-time resolution, particularly in the regions where Argo floats are sparse. Both Aquarius and SMOS well captured the SSS variations associated with the Indian Ocean dipole (IOD) mode. Significant SSS changes occurred in the central equatorial IO, along the Java-Sumatra coast, and south of the equatorial IO, due to ocean circulation variations. During the negative IOD events in 2010, 2013, and 2014, westerly wind anomalies strengthened along the equator, weakening coastal upwelling off Java and Sumatra and decreasing SSS. South of the equatorial IO, an anomalous cyclonic gyre changed the tropical circulation, which favored the eastward high-salinity tongue along the equator and the westward low-saline tongue in the south. An upwelling Rossby wave favored the increase of SSS farther to the south. During the positive IOD events in 2011 and 2012, the above-mentioned processes reversed, although the decrease of SSS was weaker in magnitude.
机译:这项研究使用Aquarius / Saplite de Aplicaciones Cientificas-D(SAC-D)以及土壤水分和海洋盐度(SMOS)卫星数据以及Argo观测资料调查了热带印度洋(IO)的海表盐度(SSS)变化。 2010年7月至2014年7月。与Argo观测相比,卫星数据集通常为SSS地图提供更高的时空分辨率,尤其是在Argo漂浮物稀疏的地区。水瓶座和SMOS都很好地捕获了与印度洋偶极子(IOD)模式相关的SSS变化。由于海洋环流的变化,中部赤道IO沿爪哇-苏门答腊沿岸以及赤道IO的南部发生了重大的SSS变化。在2010年,2013年和2014年IOD消极事件期间,赤道沿西风的异常加剧,减弱了爪哇和苏门答腊沿海的上升流,并且SSS下降。在赤道IO的南部,异常的气旋回旋带改变了热带环流,这有利于赤道沿东的高盐度舌和南部的西低盐度舌。上升的罗斯比浪潮推动南半球SSS的增加。在2011年和2012年IOD积极事件期间,尽管SSS的下降幅度较小,但上述过程逆转了。

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