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Remote sensing of ocean surface currents: a review of what is being observed and what is being assimilated

机译:遥感海面洋流:回顾观察到的和吸收的东西

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Ocean currents play a key role in Earth's climate – they impact almost any process taking place in the ocean and are of major importance for navigation and human activities at sea. Nevertheless, their observation and forecasting are still difficult. First, no observing system is able to provide direct measurements of global ocean currents on synoptic scales. Consequently, it has been necessary to use sea surface height and sea surface temperature measurements and refer to dynamical frameworks to derive the velocity field. Second, the assimilation of the velocity field into numerical models of ocean circulation is difficult mainly due to lack of data. Recent experiments that assimilate coastal-based radar data have shown that ocean currents will contribute to increasing the forecast skill of surface currents, but require application in multidata assimilation approaches to better identify the thermohaline structure of the ocean. In this paper we review the current knowledge in these fields and provide a global and systematic view of the technologies to retrieve ocean velocities in the upper ocean and the available approaches to assimilate this information into ocean models.
机译:洋流在地球的气候中起着关键作用-它们几乎影响到海洋中发生的任何过程,并且对于海上航行和海上人类活动至关重要。然而,他们的观察和预测仍然很困难。首先,没有观测系统能够以天气尺度直接测量全球洋流。因此,必须使用海面高度和海面温度测量值,并参考动力学框架来得出速度场。其次,主要由于缺乏数据,很难将速度场吸收到海洋环流数值模型中。最近的对沿海雷达数据进行同化的实验表明,洋流将有助于提高地表流的预报能力,但需要在多数据同化方法中应用,以更好地识别海洋的热盐结构。在本文中,我们回顾了这些领域中的当前知识,并提供了一种全球性和系统性的技术来检索上层海洋的海洋速度,以及将这些信息吸收到海洋模型中的可用方法。

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