首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Validation of Aquarius sea surface salinity with Argo: Analysis of error due to depth of measurement and vertical salinity stratification
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Validation of Aquarius sea surface salinity with Argo: Analysis of error due to depth of measurement and vertical salinity stratification

机译:用Argo验证水瓶座海面盐度:由于测量深度和垂直盐度分层而引起的误差分析

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We validate Aquarius sea surface salinities against Argo 1–7 m salinities for the period 27 August 2011 through 1 October 2013, a period of ~25 months. The validation consists of comparison of 20,149 collocated Argo/Aquarius data pairs. The global mean of the difference between Aquarius and Argo salinities is +0.018 PSU, with latitudinal variations of approximately ±0.2 PSU. The standard deviation of this difference ranges from about 0.3 PSU in the tropics to 0.7 PSU at high latitudes. We discuss errors due to geographic and temporal displacement and depth of measurement and show that these are insignificant for global validation of Aquarius. In particular, we use NASA’s Tropical Rainfall Measuring Mission 3B42 product to analyze the contribution of vertical salinity stratification in the ocean to validation error. This salinity stratification is important for understanding the hydrological cycle of the oceans and has been cited as a potential source of error in validation of satellite-based sea surface salinity because of the ~1–7 m minimum depth of most Argo profiles. We show evidence of heavy precipitation events causing stratification greater than 0.1 PSU and lasting ~2–8 h, but note that these events occur infrequently and contribute less than 0.03 PSU bias in the tropics and 0.025 PSU globally. It is demonstrated that the existing global Argo array provides sufficient data for large-scale validation of Aquarius sea surface salinity. We also discuss the potential to exploit large salinity gradients in the upper mixed layer as a signature of rain in the tropical ocean.
机译:我们验证了从2011年8月27日到2013年10月1日(约25个月)内Argo 1–7 m盐度的水瓶座海面盐度。验证包括对20149个并置的Argo / Aquarius数据对的比较。水瓶座和阿尔戈盐度之间的差异的全球平均值为+0.018 PSU,纬度变化约为±0.2 PSU。这种差异的标准偏差范围从热带的大约0.3 PSU到高纬度的0.7 PSU。我们讨论了由于地理和时间位移以及测量深度引起的误差,并表明这些误差对于水瓶座的全球验证而言无关紧要。特别是,我们使用NASA的“热带降雨测量任务3B42”产品来分析海洋中垂直盐度分层对验证误差的影响。这种盐度分层对于理解海洋的水文循环很重要,并且由于大多数Argo剖面的最小深度约为1-7 m,因此被认为是验证人造卫星海表盐度的潜在错误来源。我们显示出大量降水事件的证据,导致分层大于0.1 PSU并持续〜2–8 h,但请注意,这些事件很少发生,并且在热带地区和全球范围内贡献小于0.03 PSU偏差。结果表明,现有的全球Argo阵列为水瓶座海表盐度的大规模验证提供了足够的数据。我们还讨论了在上部混合层中利用大盐度梯度作为热带海洋降雨的标志的潜力。

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