利用Sentinel-1雷达数据监测多瑙河和Tisza河的河冰

IF 1.2 Q3 GEOGRAPHY
Leeuwen van, G. Sipos, Jenő Lábdy, Márta Baksa, Zalán Tobak
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引用次数: 1

摘要

由于极端天气,匈牙利的主要河流和湖泊偶尔会结冰,对基础设施造成严重破坏,并增加洪水的危险。在2017年和2022年的寒冷时期,该国主要河流上形成了一层危险的冰层。由于该地区很少有河冰,因此没有永久性的冰监测系统。由于具有全天候能力,主动遥感仪器为监测冰层覆盖提供了很好的机会。欧空局的哨兵-1雷达卫星以相对较高的空间和时间分辨率获取数据。开发了一种定期提供冰覆盖信息的方法;视卫星情况而定,至少每5天重访一次,但也经常是每天一次。2017年绘制了多瑙河沿岸的地图,2022年绘制了蒂萨河的另一段地图。冰覆盖的空间分辨率为10米,沿河流的空间密度为100米。测绘过程提供了可视化信息,可以快速了解冰覆盖的空间范围,并提供了量化的表格信息,用于减轻冰袋和冰塞造成的损害的业务活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
River ice monitoring of the Danube and Tisza rivers using Sentinel-1 radar data
Due to extreme weather, occasionally Hungary's main rivers and lakes grow an ice cover causing severe damage to infrastructure and increased flood hazard. During cold periods in 2017 and 2022, a dangerous layer of ice developed on the main rivers in the country. Since river ice is rare in this region, no permanent ice monitoring system is in operation. Due to their all weather capabilities, active remote sensing instruments provide a good opportunity to monitor ice coverage. ESA's Sentinel-1 radar satellites acquire data with a relatively high spatial and temporal resolution. A method was developed to provide ice coverage information at a regular interval; depending on the satellite revisit, at least once every 5 days, but often also on a daily basis. In 2017, maps were created for sections along the Danube and in 2022 for another section of the Tisza river. The ice coverage was calculated with a spatial resolution of 10 metre and visualised with a spatial density of 100 metre along the rivers. The mapping procedure provides visual information to give a fast overview of the spatial extent of ice coverage and quantitative , tabular information for operational activities to mitigate the damage due to ice packs and ice jams.
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来源期刊
CiteScore
2.80
自引率
11.10%
发文量
8
审稿时长
4 weeks
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