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Advances in measuring ocean salinity with an optical sensor

机译:利用光学传感器测量海洋盐度的研究进展

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摘要

Absolute salinity measurement of seawater has become a key issue in thermodynamic models of the oceans. One of the most direct ways is to measure the seawater refractive index which is related to density and can therefore be related to the absolute salinity. Recent advances in high resolution position sensitive devices enable us to take advantage of small beam deviation measurements using refractometers. This paper assesses the advantages of such technology with respect to the current state-of-the-art technology. In particular, we present the resolution dependence on refractive index variations and derive the limits of such a solution for designing seawater sensors well suited for coastal and deep-sea applications. Particular attention has been paid to investigate the impact of environmental parameters, such as temperature and pressure, on an optical sensor, and ways to mitigate or compensate them have been suggested here. The sensor has been successfully tested in a pressure tank and in open oceans 2000 m deep.
机译:海水的绝对盐度测量已成为海洋热力学模型中的关键问题。最直接的方法之一是测量与密度有关的海水折射率,因此可以与绝对盐度有关。高分辨率位置敏感设备的最新进展使我们能够利用折光仪进行小光束偏差测量。本文评估了此类技术相对于当前最新技术的优势。特别是,我们提出了分辨率对折射率变化的依赖性,并得出了这种解决方案的局限性,该解决方案用于设计非常适合沿海和深海应用的海水传感器。已经特别注意研究环境参数(例如温度和压力)对光学传感器的影响,并在此提出了减轻或补偿它们的方法。该传感器已在压力罐和2000 m深的公海中成功进行了测试。

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