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Automated system for near-real time modelling and prediction of altimeter-derived sea level anomalies

机译:高度计衍生的海平面异常的近实时建模和预测自动化系统

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摘要

This paper serves as a presentation of a novel geoinformation system and a dedicated service, jointly named as Prognocean and based at the University of Wroclaw (Poland), that aim to predict Sea Level Anomaly (SLA) maps and publish them online. The system works in near-real time and is updated daily. The data are provided by the Archiving, Validation and Interpretation of Satellite Oceanographic data (AVISO), and the time series processed by Prognocean is delivered by various altimetric satellites. The emphasis is put on gridded SLA maps, also known as MSLA, which are provided as Delayed Time (DT) and Near-Real Time (NRT) daily products. The daily sampling interval, however, does not coincide with typical repeat cycles of altimetric satellites and is obtained through reprocessing produced by AVISO. The two-module infrastructure forms the system. The first module is responsible for the near-real time communication with AVISO to download the most recent MSLA data and acquire the corrected data when the geophysical corrections have been available. The second module forms the main engine which does data processing, modelling, forecasting, statistical quality control and finally generates products as maps. The online service, however, publishes the products online every day. The above-mentioned components and infrastructure are described in detail. The performance of the system was evaluated using at least 150 predicted MSLA maps, available after half year of computations carried out in near-real time. We identified a few regions of imperfect performance of our prognoses and found that they spatially correspond to the mouth of the Amazon River and locations of key mesoscale eddies, the vast majority of which being nonlinear and hence unmodelled in our experiment.
机译:本文介绍了一种新颖的地理信息系统和专门的服务,该服务共同命名为Prognocean,以弗罗茨瓦夫大学(波兰)为基地,旨在预测海平面异常(SLA)地图并在线发布。该系统几乎实时工作,并且每天更新。该数据由卫星海洋学数据的存档,验证和解释(AVISO)提供,而Prognocean处理的时间序列由各种高空卫星提供。重点放在网格化的SLA映射(也称为MSLA)上,它们以延迟时间(DT)和近实时(NRT)日常产品提供。但是,每日采样间隔与典型的高度卫星重复周期不一致,而是通过AVISO产生的后处理获得的。两模块基础结构构成系统。第一个模块负责与AVISO进行近实时通信,以下载最新的MSLA数据并在地球物理校正可用时获取校正后的数据。第二个模块构成了主机,该主机进行数据处理,建模,预测,统计质量控制,最后生成产品作为地图。但是,在线服务每天都会在线发布产品。详细描述上述组件和基础结构。使用至少150个预测的MSLA映射对系统的性能进行了评估,这些映射在经过近半年的实时计算后才可用。我们确定了预后表现不理想的几个区域,发现它们在空间上与亚马孙河的河口和关键中尺度涡旋的位置相对应,其中绝大多数是非线性的,因此在我们的实验中未建模。

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