Ab'/> Investigating spatiotemporal snow cover variability via cloud-free MODIS snow cover product in Central Alborz Region
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Investigating spatiotemporal snow cover variability via cloud-free MODIS snow cover product in Central Alborz Region

机译:通过Alborz地区的无云Modis雪盖产品调查时空雪覆盖可变性

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AbstractSnow is a major source of streamflow in Central Alborz Mountains in northern Iran. Hence, understanding the spatial distribution and temporal variation of snow is crucial for proper management of limited water resources in this region. Since the in-situ measurements in the area are not sufficient, we used the Moderate Resolution Imaging Spectroradiometer (MODIS) snow cover products, for which their capabilities in providing a spatially distributed and accurate mapping of snow have been well demonstrated. In this analysis, we considered all the available MODIS acquisitions from both Aqua and Terra satellites for a total of 4873 daily tiles of MOD10A1 and MYD10A1 with 500-meters spatial resolution (version 5), collected during the winter seasons between years 2002 and 2015. The problem of cloud coverage, with serious constraints to the snow mapping in the area, is addressed by developing a sequential cloud removal algorithm, which applies different methods subsequently considering their performance in each month. The results indicate that the proposed algorithm is able to reduce 94% of cloud coverage and preserve the accuracy of cloud-removed area by 93%. In addition, a clear decreasing trend in snow cover is observed in the region. For example, trend analysis (at 10% significance level) shows that 61% of areas between 2000 and 2300m elevation levels experienced a reduction in duration of annual snow cover. Moreover, a general reduction in the duration of snow season is also evident over the entire study area. In spite of short duration (13years) used in this research, outcomes indicate a severe snow cover reduction during recent years.
机译:<![cdata [ 抽象 Snow是伊朗北部的奥尔博尔山脉中央山脉流出的主要来源。因此,了解雪的空间分布和时间变化对于该地区有限水资源的适当管理至关重要。由于该区域的原位测量不足,因此我们使用了适度分辨率的成像光谱覆盖器(MODIS)雪盖产品,它们在提供空间分布和准确的雪的准确映射方面的能力得到了很好的演示。在此分析中,我们考虑了Aqua和Terra卫星的所有可用MODIS收购,总共4873个每日瓷砖和MOD10A1和MYD10A1,在2002年和2015年之间的冬季赛季期间收集的500米的空间分辨率(版本5)。通过开发顺序云移除算法来解决云覆盖的问题,对该区域中的雪地映射进行严重限制,该云拆除算法在随后在每个月内考虑它们的性能,这将应用不同的方法。结果表明,该算法能够减少94%的云覆盖率,并保持云移植面积的准确性93%。此外,在该地区观察到雪覆盖的明显下降趋势。例如,趋势分析(10%的意义水平)表明,2000年至2300米的高度级别的61%的区域经历了年度雪覆盖的持续时间减少。此外,在整个研究区域也显而易见的雪季持续时间的一般减少。尽管在本研究中使用了短暂的持续时间(13年),但结果表明近年来的严重雪盖减少。

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