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Estimating iceberg paths using a wind-driven drift model

机译:使用风力漂移模型估算冰山路径

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Icebergs are hazards to ship traffic and offshore operations. Their monitoring using satellite data is hence important for marine safety and for protection of the marine environment. The repeated search for smaller icebergs in a temporal sequence of satellite images, however, can be time-consuming if the expected,drift path of the berg is not known. Computer simulations of iceberg drift can be applied to determine the approximate new iceberg position to narrow the search radius for icebergs. Best suited for this purpose are relatively simple, fast-running models. For three different regions of the Weddell Sea, Antarctica, we used an iceberg drift model driven by wind forecasts and analyzed predicted iceberg positions in comparison to positions retrieved from GPS buoys placed on the icebergs. As an enbr measure, we took the difference between the modeled and observed iceberg positions and drift angles. As the model was developed for open water regions, we added a sea-ice component. The application of the model was tested on two ENVISAT Wide Swath SAR scenes from the Weddell Sea, simulating and tracking iceberg positions for a period of five days. Although simulation results differ from direct observations of iceberg drift, they are still useful for narrowing the search area for icebergs in satellite images. We attribute the deviations between simulations and observations to the inherent large uncertainties in the input data for the model. (c) 2016 Elsevier B.V. All rights reserved.
机译:冰山对船舶交通和近海作业有危害。因此,使用卫星数据进行的监测对于海洋安全和保护海洋环境至关重要。但是,如果不知道冰山的预期漂移路径,则在卫星图像的时间序列中重复搜索较小的冰山可能很耗时。冰山漂移的计算机模拟可以应用于确定新冰山的近似位置,以缩小冰山的搜索半径。最适合此目的的是相对简单,运行速度快的模型。对于南极洲韦德尔海的三个不同区域,我们使用了由风预报驱动的冰山漂移模型,并与从放置在冰山上的GPS浮标中获取的位置进行了比较,分析了预测的冰山位置。作为简化措施,我们采用了模拟和观察到的冰山位置和漂移角之间的差异。由于该模型是针对开放水域开发的,因此我们添加了海冰组件。在来自韦德尔海的两个ENVISAT宽幅SAR场景中测试了该模型的应用,模拟并跟踪了冰山位置,为期五天。尽管模拟结果与对冰山漂移的直接观测有所不同,但它们仍可用于缩小卫星图像中冰山的搜索范围。我们将模拟和观测值之间的偏差归因于模型输入数据中固有的较大不确定性。 (c)2016 Elsevier B.V.保留所有权利。

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