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首页> 外文期刊>Arctic, antarctic, and alpine research >Patterns of change within a tundra landscape: 22-year landsat NDVI trends in an area of the northern foothills of the brooks range, Alaska
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Patterns of change within a tundra landscape: 22-year landsat NDVI trends in an area of the northern foothills of the brooks range, Alaska

机译:苔原景观的变化模式:阿拉斯加布鲁克斯山脉北部丘陵地区22年的NDVI趋势

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NDVI (Normalized Difference Vegetation Index) calculated from coarse-resolution sensors has shown strong increases since the 1980s on Alaska's North Slope. Finer-resolution satellite data and ground studies are needed to understand the changes in the vegetation that are causing these increases. Analysis of an 823 km2 area using a Landsat NDVI time series showed that the homogeneous greening at coarser scales was very heterogeneous at 30-m pixel resolution, with a strong influence due to glacial history. Small scattered patches of pixels with significant increases in NDVI occurred throughout the younger, late Pleistocene glacial deposits. On older, mid-Pleistocene deposits, increases occurred in few, larger patches of mostly tussock-sedge, dwarf-shrub, moss tundra, possibly a result of release of nutrients from thawing of ice-rich permafrost. Five percent of pixels had significant linear increases in NDVI from 1985 to 2007 (n = 6, p < 0.05), while 0.4% showed significant decreases, in small patches whose causes were evident when sampled on the ground. Trends in NDVI varied by glacial history, elevation, slope, and the resulting vegetation conditions. This heterogeneity in response to climate change can be expected throughout much of the Arctic, where complex glacial histories determine existing soil and vegetation characteristics.
机译:自1980年代以来,由粗分辨率传感器计算出的NDVI(归一化植被指数)在阿拉斯加的北坡上显示出强劲的增长。需要更高分辨率的卫星数据和地面研究来了解引起这些增加的植被变化。使用Landsat NDVI时间序列对823 km2区域进行的分析显示,在30 m像素分辨率下,较粗尺度的均匀绿化非常不均匀,受冰川历史的影响很大。在整个较年轻的晚更新世冰川沉积物中都发生了NDVI显着增加的小而分散的像素斑块。在较新的中更新世沉积物中,少量,较大的块状增加,大部分是丛生莎草,矮灌木,苔藓苔原,这可能是由于富含冰的永久冻土融化而释放出养分的结果。从1985年到2007年,5%的像素NDVI线性增加(n = 6,p <0.05),而0.4%的像素显着减少,这是在地面上采样时明显可见的小斑块中。 NDVI的趋势因冰川历史,海拔,坡度以及由此产生的植被条件而异。在整个北极地区,由于复杂的冰川历史决定了现有的土壤和植被特征,可以预见到这种对气候变化的异质性。

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