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Satellite-based radar measurements for validation of high-resolution sea state forecast models in German Bight

机译:基于卫星的雷达测量,用于验证德国海岸线的高分辨率海况预报模型

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摘要

The estimation of marine and meteorological parameters is an important task for operational oceanographic services. Remote sensing Synthetic Aperture Radar (SAR) data from TerraSAR-X/Tandem-X satellites have been used for validation and verification of new developed coastal forecast models. In comparison to in-situ buoy measurements at a single location allows remote sensing to cover large areas and to estimate the spatial distribution of investigated characteristics.\udMethods to derive wind speed and sea state using simple empirical models from high-resolution SAR data have been developed by DLR especially for coastal applications: a new nonlinear wind algorithm XMOD-2 and new empirical model function XWAVE-2 for obtaining significant wave height from X-band data. Both algorithms are capable of taking into account finescale effects in coastal areas.\udIn order to improve forecast accuracy in coastal area a new high-resolution Coastal Wave Model (CWAM) for the German Bight and the western Baltic Sea has been developed by the German Meteorological Service (DWD) and the German Maritime and Hydrographic Agency (BSH) with resolution of ~900m and more accurate mapping of coastlines (1) and coupled to a irculation model (2). Uncertainties are present when dealing in coastal areas: wind input implying well-timed atmospheric front propagation and physical interaction-processes in shallow water caused by interplay between waves, currents and bottom become important. Due to currents and bottom influence the waves refract, dump, become steeper and break. The lost wave energy dissipates and transfers into turbulence and acceleration of flow currents (radiation stress).\udSea state estimated from series of TerraSAR-X images cover strips with length of ~200km and width of 30km over German Bight from East-Frisian Islands to Danish coast. The acquired data with more than 50 images were used for model validations.\udThe comparisons show a number of local variations due to variety in bathymetry and wind fronts.
机译:海洋和气象参数的估计是业务海洋学服务的重要任务。 TerraSAR-X / Tandem-X卫星的遥感合成孔径雷达(SAR)数据已用于验证和验证新开发的沿海预报模型。与在单个位置进行的浮标测量相比,遥感可以覆盖大面积区域并估计所研究特征的空间分布。 DLR专门为沿海应用开发的:一种新的非线性风算法XMOD-2和新的经验模型函数XWAVE-2,用于从X波段数据中获得重要的波高。两种算法都能够考虑到沿海地区的精细尺度效应。\ ud为了提高沿海地区的预报准确性,德国人为德国海岸线和波罗的海西部地区开发了一种新的高分辨率沿海波浪模型(CWAM)。气象局(DWD)和德国海事水文学局(BSH)的分辨率约为900m,海岸线的绘制更为精确(1),并与一个灌流模型相耦合(2)。在沿海地区进行交易时存在不确定性:风输入意味着适时的大气锋面传播以及由波浪,水流和海底之间的相互作用引起的浅水中的物理相互作用过程变得很重要。由于水流和底部的影响,波浪会折射,倾倒,变陡并破裂。损失的波能消散并转化为湍流和流动电流的加速(辐射应力)。\ ud根据一系列TerraSAR-X图像估算的海况覆盖了从东弗里斯兰群岛到德国海岸线上长约200公里,宽30公里的条状带丹麦海岸。所获取的具有50多个图像的数据用于模型验证。\ ud比较结果显示,由于测深和风场的变化,导致了许多局部变化。

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