2) in Alaskan Arctic. The residents of Nuiqsut,'/> Mapping of Shallow-Water Sites to Aid Navigation on the Colville River, North Slope of Alaska
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Mapping of Shallow-Water Sites to Aid Navigation on the Colville River, North Slope of Alaska

机译:浅水网站的绘图,以援助Colville河,阿拉斯加北坡

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The Colville River is the largest river basin (~53,000 km2) in Alaskan Arctic. The residents of Nuiqsut, an established Alaska Native community of ~400 people, rely heavily on the Colville for their subsistence needs. Nonetheless, the changing river dynamics caused by accelerated bank erosion and consequent river siltation is making travel on the Colville increasingly difficult and in some cases dangerous. We used summer 2017 scenes from three optical sensors (PlanetScope, Sentinel 2, and Landsat) with resolution ranging from 3-30 m along with field measurements of water-depth to map shallow-water sites along a 45-km stretch of the Colville River. We found a strong correlation ( R2=0.9) between field-measured water depths and image-derived reflectance quantity (natural log ratio of green over red bands). We also analyzed a relative depth mapping technique which can be used to map shallow-water sites from optical images in the absence of field-measured water depths.
机译:科尔维尔河是最大的河流河(约53,000公里) 2 )在阿拉斯加北极。 Nuiqsut的居民,一个〜400人的阿拉斯加本土社区,严重依赖于科尔维尔的生存所需的需求。尽管如此,由于加速银行侵蚀和随后的河流淤泥造成的变化河流动力学正在难以在科尔维尔的旅行日益困难,在某些情况下危险。我们使用来自三个光学传感器(Planetscope,Sentinel 2和Landsat)的2017年夏季场景,分辨率范围从3-30米的分辨率以及水深的田间测量,以沿着沿着45公里的Colville River延伸地图浅水场地。我们发现了强烈的相关性(r 2 = 0.9)在现场测量的水深和图像衍生的反射量(绿色的自然对比比在红色带)之间。我们还分析了一种相对深度映射技术,可用于在没有现场测量的水深度的情况下从光学图像映射浅水部位。

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