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Estimation of degree of sea ice ridging in the Bay of Bothnia based on geolocated photon heights from ICESat-2

机译:基于ICESAT-2的Geolocated光子高度估算海湾海湾海冰程度

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摘要

We present a comparison of Ice, Cloud and land Elevation Satel-lite-2 (ICESat-2) geolocated photon heights and operational ice charts from the Finnish Ice Service in the Bay of Bothnia in spring 2019. We show that ICESat-2 (IS2) retrievals from ice areas with different ridging characteristics, more precisely the degree of ice ridging (DIR), differ significantly. DIR is a particularly useful parameter for ice navigators, as it provides information on how difficult it is to navigate through an area based on e.g. sail heights and distribution of sea ice ridges. DIR estimates are included in ice charts of the Baltic Sea and are based primarily on in situ observations from an active icebreaker fleet. We show that DIR may potentially be estimated from IS2. We also present a comparison of IS2 measurements and Sentinel-1 synthetic aperture radar frames, discussing several individual cases of IS2 photon elevation behaviour over Baltic sea ice. We suggest that IS2 data can be of benefit to international ice services, especially if a time-critical photon height product were to be made available. Furthermore, we show that the difference between highest and mean photon elevations (elevation anomalies) of IS2 correspond to expected ridge sail heights in our study area. Our study is one of the first steps in creating sea ice applications beyond the traditional goal of freeboard and thickness retrieval for IS2. © 2021 Renee´ Mie Fredensborg Hansen et al.
机译:我们在2019年春季,我们展示了冰,云和陆地海拔Satel-Lite-2(ICESAT-2)Geolocated Photon Heights和Operation Ice Chares的芬兰冰服务的运营冰图表。我们展示了ICESAT-2(IS2 )从具有不同探头特性的冰地区的检索,更精确地探索(DIR),显着差异。 DIR是冰导航器的一个特别有用的参数,因为它提供了关于在基于例如,通过浏览区域的难度难度的信息。帆高度和海冰脊的分布。 DIR估计包含在波罗的海的冰图中,主要是从积极的破冰船舰队的原位观察。我们显示目代可能会从IS2估算。我们还提供了IS2测量和Sentinel-1合成孔径雷达框架的比较,讨论了在波罗的海冰上的IS2光子高度行为的几个单独情况。我们建议IS2数据可以有利于国际冰服务,特别是如果要提供一个时间关键的光子高度产品。此外,我们表明IS2的最高和平均光子升高(升高异常)之间的差异对应于我们研究区域的预期岭帆高度。我们的研究是创建超出自由板和厚度检索的传统目标的海冰应用的第一步之一。 &复制; 2021 renee&急性; Mie Fredensborg Hansen等。

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1601-1601|共1页
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    Geodesy and Earth Observation DTU Space Elektrovej Building 328 Kongens Lyngby 2800 Denmark;

    Geodesy and Earth Observation DTU Space Elektrovej Building 328 Kongens Lyngby 2800 Denmark;

    Geodesy and Earth Observation DTU Space Elektrovej Building 328 Kongens Lyngby 2800 Denmark;

    Geodesy and Earth Observation DTU Space Elektrovej Building 328 Kongens Lyngby 2800 Denmark;

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