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Application of the AQ rain accumulation product for investigation of rain effects on AQ Sea Surface Salinity measurements

机译:AQ雨水累积产品在研究雨水对AQ海面盐度测量中的作用

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Sea Surface Salinity (SSS) is a tracer of the ocean circulation and fresh water exchange, between ocean and atmosphere. Hence, it provides vital information to be able to understand how the Earth's hydrological cycle responds to climate change. An analysis of the Aquarius (AQ) Sea Surface Salinity retrievals reveals that the spatial patterns of reduced SSS are correlated with the spatial distribution of rainfall. Therefore, it is important to understand the SSS changes due to seawater dilution by rain, and the associated near-surface salinity stratification. This paper focuses on the effects produced by rainfall on the AQ SSS retrieval, using a macro-scale rain impact model (RIM). This model is based on the superposition of a one-dimension, empirical, transient, near-surface salinity stratification profile model that relates the surface salinity to depth, rain accumulation and time since rainfall. Also, an AQ Rain Accumulation (AQ RA) product (based on CMORPH - CPC Morphing technique - global precipitation dataset), that provides the rainfall history for 24 hours (in half hour intervals) prior to the observation time and each AQ measurement cell is presented. This AQ RA product facilitates the identification of instantaneous rain and prior rainfall accumulations, which will aid in the investigation of rainfall effects on the SSS measurements. In this paper, RIM was validated by comparing measured and simulated AQ SSS for two months of 2012 in the Pacific Ocean over the ITCZ (Inter-Tropical Convergence Zone). Results are presented showing the high cross-correlation for the comparison between simulated SSS and retrieved SSS.
机译:海面盐度(SSS)是海洋与大气之间海洋环流和淡水交换的示踪剂。因此,它提供了至关重要的信息,从而能够了解地球的水文循环如何响应气候变化。对水瓶座(AQ)海表盐度反演的分析表明,减少的SSS的空间模式与降雨的空间分布相关。因此,重要的是要了解由于雨水稀释海水引起的SSS变化以及相关的近地表盐度分层。本文使用宏观降雨影响模型(RIM),重点研究降雨对AQ SSS检索产生的影响。该模型基于一维,经验,瞬态,近地表盐度分层剖面模型的叠加,该模型将地表盐度与深度,降雨累积和降雨以来的时间相关联。此外,还有一个AQ雨量累积(AQ RA)产品(基于CMORPH-CPC Morphing技术-全球降水数据集),提供了观测时间之前24小时(以半小时为间隔)的降雨历史记录,并且每个AQ测量单元为提出了。该AQ RA产品有助于识别瞬时降雨和先前的降雨积聚,这将有助于调查降雨对SSS测量的影响。在本文中,通过比较2012年两个月在太平洋ITCZ(热带间汇合带)上测得的和模拟的AQ SSS,对RIM进行了验证。呈现的结果显示出较高的互相关,可用于模拟SSS与检索到的SSS之间的比较。

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