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X-band COSMO-SkyMed? SAR data for sea wave simulations and coastal vulnerability assessment

机译:X波段COSMO-SkyMed ? SAR数据用于海浪模拟和海岸脆弱性评估

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In this paper, X-band COSMO-SkyMed? Synthetic Aperture Radar (SAR) data are first experimented as wind field forcing of coastal wind-wave oceanographic modeling for both sea-wave numerical simulation and coastal vulnerability assessment purposes. The SAR data set consists of 60 X-band VV-polarized Level 1B Detected Ground Multi-look (DGM) ScanSAR Huge Region COSMO-SkyMed? SAR measurements, collected in the test area of the Southern Tyrrhenian Coastal basin during the winter season of 2010. On one hand, the wind-wave oceanographic modeling is based on the third-generation Simulating WAves Nearshore (SWAN) model, which is used for sea wave state estimation in coastal and island regions. On the other hand, the coastal vulnerability assessment model is based on the use of a key parameter known as impact index, which consistently provides the coastal risk evaluation due to the inundation of the inshore land. Experiments consist of numerical wave simulations of the SWAN model accomplished with respect to some relevant wave storms recorded in the test area during the winter season of 2010. The wind forcing is provided by X-band COSMO-SkyMed? SAR-based wind field estimations which are properly blended with both buoys wave data and ECMWF model winds to retrieve meaningful wave parameters (e.g. significant wave height, wave directions and periods) as physical descriptors of tidal events. The output of numerical wave simulations are used to perform the coastal vulnerability assessment in the considered test area along the coastal plain of river Sele. The assessment is accomplished in terms of wave run-up height, storm beach retreat and both short- and long-term erosion shoreline evolution. Experimental results accomplished with X-band COSMO-SkyMed? SAR-based wind field forcing are successfully compared with the ones gathered by using both buoys wave field data and ECMWF model winds, only. They demonstrate that both wind-wave interaction modeling and coastal vulnerability assessment can take full benefits of blended wind field products composed by X-band COSMO-SkyMed? SAR wind field estimations and model data.
机译:本文首先将X波段COSMO-SkyMed ?合成孔径雷达(SAR)数据用作海岸风波海洋学建模的风场强迫,以进行海浪数值模拟和海岸脆弱性评估目的。 SAR数据集包含60个X波段VV极化1B级检测到的地面多视(DGM)ScanSAR巨大区域COSMO-SkyMed ? SAR测量值,该测量值收集于第勒尼安河南部沿海地区一方面,风浪海洋学建模基于第三代模拟近海波浪(SWAN)模型,该模型用于估算沿海和岛屿地区的海浪状态。另一方面,沿海脆弱性评估模型基于称为影响指数的关键参数的使用,由于近岸土地被淹没,该参数始终如一地提供沿海风险评估。实验包括针对2010年冬季测试区域记录的一些相关海浪风暴完成的SWAN模型的数值波模拟。由X波段COSMO-SkyMed ?提供了强迫风将基于SAR的风场估计值与浮标波数据和ECMWF模型风适当混合,以检索有意义的波参数(例如,重要的波高,波方向和周期)作为潮汐事件的物理描述符。数值波模拟的输出用于在沿塞勒河沿岸平原的试验区域内进行沿岸脆弱性评估。评估是根据波浪上升高度,风暴滩撤退以及短期和长期侵蚀海岸线演变完成的。将基于X波段COSMO-SkyMed ? SAR的风场强迫实验结果与仅使用浮标波场数据和ECMWF模型风收集的实验结果进行了成功比较。他们证明,风波相互作用建模和海岸脆弱性评估都可以充分利用X波段COSMO-SkyMed ? SAR风场估计和模型数据组成的混合风场产品的全部优势。

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