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Photographic records of plant phenology and spring river flush timing in a river lowland ecosystem at the taiga-tundra boundary, northeastern Siberia

机译:在西伯利亚东北田竹江下河低地生态系统中植物婴儿潮流植物植物潮流时序的摄影记录

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摘要

Arctic terrestrial ecosystems near the treeline in river lowlands are vulnerable to the changing climate and seasonal extreme events, including flooding. We set up a simple camera monitoring system to record the timings and durations of the leafy period and the spring flush of river water at three observation sites (Boydom [B]: 70.64 degrees N, 148.15 degrees E; Kodac [K]:70.56 degrees N, 148.26 degrees E; Verkhny-Khatistakh [VK]:70.25 degrees N,147.47 degrees E) in the Indigirka lowland, in Northeastern Siberia. Time-lapse digital cameras were located at seven points across the three sites. The time intervals were 1-4 or 24 hours. The minimum and maximum monitoring periods were 2 years (July 2016 to August 2018) at B and 5 years (August 2013 to July 2018) at K. One camera documented the timings of river ice melt and open water periods from the riverbank of the Kryvaya River, one of the small tributaries of the Indigirka River. The other six cameras recorded several types of ground cover typical of the area, including larch trees (Larix cajanderi), shrubs (including Salix spp. and Betula nana), forbs, mosses and graminoids in an ecosystem of sparsely forested shrublands, wetlands and riversides. The data consists of 45,617 JPEG-format images. This dataset can be used to detect the onset and offset of the growing season and to capture the ice melt timing and water cover periods in wetlands and riversides. It may be useful in validating satellite data such as the vegetation remote sensing index for remote and little-known areas. These data may contribute to the study of the role of high-latitude ecosystems in global climate changes.
机译:河道河道河道附近的北极陆地生态系统容易受到不断变化的气候和季节性极端事件,包括洪水。我们建立了一个简单的相机监控系统,以记录叶茂时期的时间和持续时间和三个观察网站(Boydom [B]:70.64度N,148.15度E; Kodac [K]:70.56度N,148.26 e; verkhny-khatistakh [vk]:70.25度N,147.47摄氏度在西伯利亚东北部的Indigirika Lowland。延时数码相机位于三个地点的七点。时间间隔为1-4或24小时。最低和最大的监测期为2年(2016年7月至2018年8月)在B和5年(2013年8月至2018年7月)在K.一台相机记录了河岸河冰融化的时间和克里夫瓦河河岸的露天期河,Indigirika河的小支流之一。另外六个摄像机记录了几种类型的地面盖,包括落叶松树(Larix Cajanderi),灌木(包括Salix SPP。和Betula Nana),在稀疏的灌木丛,湿地和河流的生态系统中,福药,苔藓和禾本科。数据由45,617个JPEG格式图像组成。该数据集可用于检测生长季节的起始和偏移,并在湿地和河流内捕获冰熔体时序和水覆盖周期。它可能可用于验证卫星数据,例如远程和鲜为人知的区域的植被遥感指数。这些数据可能有助于研究高纬度生态系统在全球气候变化中的作用。

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  • 来源
    《Ecological research》 |2020年第5期|717-723|共7页
  • 作者单位

    Hokkaido Univ Grad Sch Environm Sci N10W5 Sapporo Hokkaido 0600810 Japan|Hokkaido Univ Arctic Res Ctr Sapporo Hokkaido Japan|Hokkaido Univ Res Fac Agr Sapporo Hokkaido Japan;

    Hokkaido Univ Arctic Res Ctr Sapporo Hokkaido Japan|Hokkaido Univ Global Inst Collaborat Res & Educ Global Stn Arctic Res Sapporo Hokkaido Japan;

    Japan Agcy Marine Earth Sci & Technol Res Inst Global Change Inst Arctic Climate & Environm Res Yokohama Kanagawa Japan;

    Japan Agcy Marine Earth Sci & Technol Res Inst Global Change Inst Arctic Climate & Environm Res Yokohama Kanagawa Japan|Japan Agcy Marine Earth Sci & Technol Res Inst Global Change Earth Surface Syst Res Ctr Yokohama Kanagawa Japan;

    Japan Agcy Marine Earth Sci & Technol Res Inst Global Change Inst Arctic Climate & Environm Res Yokohama Kanagawa Japan;

    Hokkaido Univ Arctic Res Ctr Sapporo Hokkaido Japan;

    Hokkaido Univ Grad Sch Environm Sci N10W5 Sapporo Hokkaido 0600810 Japan|Hokkaido Univ Arctic Res Ctr Sapporo Hokkaido Japan;

    Hokkaido Univ Grad Sch Environm Sci N10W5 Sapporo Hokkaido 0600810 Japan;

    Russian Acad Sci Siberian Div Inst Biol Problems Cryolithozone Yakutsk Russia|North Eastern Fed Univ Yakutsk Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    digital camera; ground-truth; plant phenology; tundra; wetland;

    机译:数码相机;地面真理;植物候选;苔原;湿地;

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