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Impact of Multisatellite Altimeter Data Assimilation on Wave Analysis and Forecast

机译:多卫星高度计数据同化对波浪分析和预报的影响

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Satellite altimetry has become an important discipline in the development of sea-state forecasting or more generally in operational oceanography. Meteo-France Marine and Oceanography Division is much involved in altimetry, in which it is also one of the main operational customers. Sea-state forecasts are produced every day with the help of numerical models assimilating Fast Delivery Product altimeter data from ESA ERS-2 satellite, available in real-time (3-5 h). These forecasts are transmitted to seamen as part of safety mission of persons and properties, or specific assistance for particular operations. With the launch of ENVISAT (from ESA, launched on 1 March 2002, to take over the ERS mission) and JASON-1 (from CNES/NASA, launched on 7 December 2001, successor of TOPEXIPoseidon), we have an unprecedented opportunity of improved coverage with the availability in quasi-real-time of data from several altimeters. The objective of this study is to evaluate the impact of using multisources of altimeter data in real-time, to improve wave model analyses and forecasts, at global scale. Since July 2003, Meteo-France injects the wind/wave JASON-1 Operational Sensor Data Record on the WMO Global Transmitting System, making them available in near real-time to the international meteorological community. Similarly, fast delivery altimeter data of ENVISAT will improve coverage and contribute to the constant progress of marine meteorology. For this purpose, significant wave height time series were generated using the Wave Model WAM and the assimilation of altimeter wave heights from two satellites ERS-2 and JASON-1. The results were then compared to Geosat Follow-On (GFO, U.S. Navy Satellite) and moored buoy wave data. It is shown that the impact of data assimilation, when two (ERS-2 and JASON-1) or three (ERS-2 with JASON-1 and GFO) sources of data are used instead of one (ERS-2), in term of significant wave height, is larger in wave model analyses but smaller in wave model forecasts. However, there is no improvement in terms of wave periods, both in the analysis and forecast periods.
机译:卫星测高法已成为发展海态预报或更重要的是发展海洋学的重要学科。法国气象海洋和海洋学部门参与了高度计,它也是主要的运营客户之一。每天都会通过数值模型来提取海况预报,这些数值模型会吸收来自ESA ERS-2卫星的“快速交付产品”高度计数据,并实时(3-5 h)提供。这些预测作为人员和财产安全任务的一部分,或为特定操作提供的特定帮助,发送给海员。随着ENVISAT(于2002年3月1日从ESA发射,接管ERS任务)和JASON-1(由CNES / NASA于2001年12月7日发射,是TOPEXIPoseidon的继任者)的推出,我们有了前所未有的改进机会覆盖几个高度计的实时数据。这项研究的目的是实时评估使用高度计数据的多种来源的影响,以改善全球范围内的波浪模型分析和预报。自2003年7月以来,法国气象局将JASON-1风/浪JASON-1型运行传感器数据记录注入WMO全球传输系统,使其几乎可以实时提供给国际气象界。同样,ENVISAT的快速交付高度计数据将提高覆盖范围,并有助于海洋气象学的不断发展。为此,使用WAM模型Wave和来自两个卫星ERS-2和JASON-1的高度计波高的同化生成了重要的波高时间序列。然后将结果与Geosat Follow-On(GFO,美国海军卫星)和系泊浮标数据进行比较。结果表明,当使用两个(ERS-2和JASON-1)或三个(带有JASON-1和GFO的ERS-2)数据源代替一个(ERS-2)数据源时,数据同化的影响显着的波高,在波模型分析中较大,但在波模型预测中较小。但是,在波浪周期方面,无论在分析周期还是预测周期上都没有任何改善。

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