A wave data assimilation system for the North Sea based on Ensemble Kalman Filtering and the potential of satellite altimetry

IF 3.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
C.W.E. de Korte , M. Verlaan , A.W. Heemink
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引用次数: 0

Abstract

A Wave Data Assimilation System based on the Ensemble Kalman Filter (EnKF) is implemented for the North Sea showing improved performance and physical consistency. We first show the EnKF implementation and illustrate the wave data assimilation system using identical twin experiments to assimilate synthetic observations from buoys. A sensitivity analysis shows that the ensemble size, assimilation frequency and observation uncertainty are relatively important settings. Lastly, the potential for assimilating satellite measurements was assessed by assimilating synthetic altimeter measurements with real pass-over tracks. In these experiments, the state contains the full wave spectrum, unlike in most existing schemes. The results show that wave spectra and integral variables beyond significant wave height show physically consistent updates for the buoy and satellite experiments, by assimilating only significant wave height. This is a key advantage of this implementation compared to the more widely used implementations in wave data assimilation. Although the satellite experiment performs slightly worse than the buoy experiment due to decreased temporal availability of measurements, the results underline the potential for assimilation of satellite altimeter measurements. Such a system provides a promising framework for future observation impact study using satellite altimeter measurements.
基于集合卡尔曼滤波和卫星测高潜力的北海波浪资料同化系统
基于集成卡尔曼滤波(EnKF)的波浪数据同化系统在北海海域的应用取得了较好的效果和物理一致性。我们首先展示了EnKF的实现,并说明了波浪数据同化系统使用相同的双胞胎实验来同化来自浮标的合成观测。灵敏度分析表明,集合大小、同化频率和观测不确定度是相对重要的设置。最后,通过将合成高度计的测量结果与真实的天桥轨迹进行同化,评估了同化卫星测量的潜力。在这些实验中,状态包含了完整的波谱,这与大多数现有方案不同。结果表明,仅同化有效波高,浮标和卫星实验的波谱和有效波高以外的积分变量在物理上是一致的。与波浪数据同化中更广泛使用的实现相比,这是该实现的一个关键优势。虽然卫星实验由于测量的时间可用性降低而比浮标实验表现略差,但结果强调了卫星高度计测量的同化潜力。该系统为未来利用卫星高度计测量进行观测影响研究提供了一个有希望的框架。
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来源期刊
Ocean Modelling
Ocean Modelling 地学-海洋学
CiteScore
5.50
自引率
9.40%
发文量
86
审稿时长
19.6 weeks
期刊介绍: The main objective of Ocean Modelling is to provide rapid communication between those interested in ocean modelling, whether through direct observation, or through analytical, numerical or laboratory models, and including interactions between physical and biogeochemical or biological phenomena. Because of the intimate links between ocean and atmosphere, involvement of scientists interested in influences of either medium on the other is welcome. The journal has a wide scope and includes ocean-atmosphere interaction in various forms as well as pure ocean results. In addition to primary peer-reviewed papers, the journal provides review papers, preliminary communications, and discussions.
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