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Observation of global ocean-atmosphere exchanges from spaceborne sensors

机译:从星载传感器中观察全球海洋气氛交换

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The ocean and the atmosphere are coupled by the fluxes of momentum, heat, and water, but in situ measurements of these fluxes are sparse and uneven. Global fields of these fluxes can be derived from satellite data or obtained from operational numerical weather prediction (NWP) models. The NWP models provide quality control and dynamic interpolation of sparse and uneven data. However, dynamic interpolation is only as good as the model physics and parameterization scheme, and over most of the ocean, there may not be sufficient data for any useful interpolation. Operational NWP models change frequently; the results are inconsistent of climatic studies. Reanalysis to produce long period of consistent data have only been started recently. Adequate observations at temporal and spatial scales significant to global change research can only be achieved from the vantage point of space. Spaceborne sensors provide repeated global observations of some parameters from which these fluxes can be derived. The status and shortfalls of spacebased estimation of the fluxes are summarized and assessed in this report. Satellite data can be assimilated into numerical model to simulate surface fluxes, but the progress in developing assimilation techniques for unconventional satellite data has been slow.
机译:海洋和气氛通过动量,热量和水的助熔剂,但原位测量这些助焊剂是稀疏和不均匀的。这些助熔剂的全局领域可以从卫星数据中导出或从操作数值天气预报(NWP)模型获得。 NWP型号提供稀疏和不均匀数据的质量控制和动态插值。但是,动态插值只是模型物理和参数化方案,以及大多数海洋,任何有用的插值都可能没有足够的数据。操作NWP模型经常更改;结果是不一致的气候研究。最近开始的重新分析了产生长期一致的数据。只能从空间的有利位置实现对全球变化研究的时间和空间尺度的足够的观察。星源传感器提供了可以导出这些助熔剂的一些参数的重复全局观察。本报告中概述和评估了空间估计的状态和不足。卫星数据可以被同化为数字模型以模拟表面助熔剂,但是开发非传统卫星数据的同化技术的进展已经很慢。

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