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Spatial and Temporal Variation Analysis of Snow Cover Using MODIS over Qinghai-Tibetan Plateau during 2003-2014

机译:青藏高原2003 - 2014年使用MODIS的雪覆盖的空间和时间变化分析

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摘要

The Qinghai-Tibetan Plateau (QTP) snow cover information acquisition of the high precision spatial and temporal characteristics is of great significance for the research on its land surface atmosphere coupled system and global climate change effects. The Moderate Resolution Imaging Spectro-radiometer (MODIS) daily snow cover products (MOD10A1 and MYD10A1) have been widely used in long time series of spatial and temporal variation analysis, but they are limited to be used because of high cloud cover ratio. In this paper, a 7-day rolling combination algorithm was presented to eliminate cloud obscuration, and the whole cloud amount falls below 7 %. The ground station in situ measurements verify that the overall precision is more than 90 %. The presented algorithm guaranteed the same spatial resolution and temporal resolution, and has higher precision than products MOD10A1 and MYD10A1. The MODIS 7-day rolling combination snow cover datasets products were obtained between 2003 and 2014 in the QTP, and the snow cover area of spatial and temporal variation was analyzed. The change characteristics of snow cover duration was also studied combining with the Digital Elevation Model data. Results show that the snow cover area of the whole QTP has a slowly decreased trend, but increases in autumn. Thus, the snow cover proportion of annual periodic and unstable in different elevations has the highest correlation with area of the elevation.
机译:青藏高原(QTP)雪覆盖信息采集高精度空间和时间特征对于其土地面大气耦合系统和全球气候变化效应具有重要意义。适度分辨率成像光谱辐射计(MODIS)每日雪盖产品(MOD10A1和MYD10A1)已广泛应用于长时间的空间和时间变化分析,但由于高云覆盖率,它们仅限于使用。本文提出了7天的轧制组合算法,以消除云暗示,整个云量低于7%。地面站原位测量验证了整体精度超过90%。呈现的算法保证了相同的空间分辨率和时间分辨率,并且具有比产品Mod10A1和MyD10A1更高的精度。 Modis 7日滚动组合雪覆盖数据集产品在2003年至2014年在QTP之间获得,分析了空间和时间变化的雪覆盖区域。还研究了雪覆盖持续时间的变化特性与数字高度模型数据相结合。结果表明,整个QTP的雪覆盖面积趋势慢慢减少,但秋季增加。因此,在不同海拔的年度周期性和不稳定的雪覆盖比例与海拔区域的相关性最高。

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