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Remote Sensed and In Situ Data: an integrated approach for Coastal Risk Assessment

机译:遥感和原位数据:沿海风险评估的综合方法

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The continuous monitoring of coastal areas is a necessary condition for a timely assessment of shoreline erosion phenomena. The traditional approach consists in ground investigations that are impractical in terms of costs and logistics, on a national or even regional scale. Earth Observation (EO) techniques can represent a cost-effective alternative for a wide-scale Coastal Zone Management. Thanks to the all-weather day/night radar imaging capability and to the nationwide acquisition plan named MapItaly, devised by the Italian Space Agency and active since 2010, COSMO-SkyMed constellation is able to provide X-band images covering the Italian territory with a best effort revisit time of 16 days. However, any remote sensing approach must be accurately calibrated and corrected for the actual meteo-marine conditions. Therefore, in situ data are essential for proper EO data selection, tidal corrections and validation of EO products. An integrated semi-automatic technique for coastal risk assessment and monitoring, named COSMO-Beach, is presented here, with a particular emphasis on the ground truths provided in input to the implemented processing chain, as well as its application on two different test sites in Apulia Region (South Italy).
机译:沿海地区的连续监测是岸线侵蚀现象及时评估的必要条件。传统的做法是由地面的调查是在成本和物流方面不切实际的,在国家甚至区域规模。地球观测(EO)技术可以代表用于大规模海岸区管理成本有效的替代方案。多亏了全天候昼/夜雷达成像能力,并命名为MapItaly全国收购计划,自2010年由意大利航天局和主动设计,航天医疗星座能够提供X波段图像覆盖了意大利境内尽力而为重温16天的时间。然而,任何遥感方法必须被准确地校准,并用于实际的气象海相条件校正。因此,在现场数据是正确EO数据选择,潮汐校正和的EO产品验证必需的。这里提出了沿海的风险评估和监测,集成的半自动技术命名为COSMO-海滩,并特别强调在输入提供给执行处理链的基础事实,以及其在两个不同的考点申请普利亚区(意大利南部)。

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