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基于MODIS时间序列数据的洞庭湖区洪水淹没频率研究 被引量:15
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作者 许超 蒋卫国 +2 位作者 万立冬 王文杰 白雪 《灾害学》 CSCD 2016年第1期96-101,共6页
选用Terra-MODIS卫星的8 d合成地表反射率数据(MOD09Q1)和16 d合成NDVI数据(MOD13Q1),构建了2000-2015年的时间序列数据集,结合1:5万数字高程数据,通过遥感信息提取方法对洞庭湖区2000-2015年水体淹没情况进行了研究,形成169期水体分布... 选用Terra-MODIS卫星的8 d合成地表反射率数据(MOD09Q1)和16 d合成NDVI数据(MOD13Q1),构建了2000-2015年的时间序列数据集,结合1:5万数字高程数据,通过遥感信息提取方法对洞庭湖区2000-2015年水体淹没情况进行了研究,形成169期水体分布数据,并进行了洞庭湖区淹没频率的计算和变化分析。结果表明:1利用遥感技术和python语言实现长时间序列影像数据信息提取是可行的;2洞庭湖区水体呈明显季节性变化,6-9月面积较大,12月-次年4月面积较小,近15年来水体面积总体呈减小趋势;3洞庭湖区约76.4%的区域是永久水面或永久陆地,其余23.6%的区域是水陆交替区,是洪水防控的重点区域;4近15年来洞庭湖区水陆交替区域年内水面消退时间提前,滩地出露天数增加,枯水期水量减少明显。 展开更多
关键词 terra-modis数据 洞庭湖区 水域 面积变化 淹没频率
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Topographical and hydrological effects on meso-scale vegetation in desert steppe, Mongolia 被引量:2
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作者 Batdelger GANTSETSEG Masahide ISHIZUKA +1 位作者 Yasunori KUROSAKI Masao MIKAMI 《Journal of Arid Land》 SCIE CSCD 2017年第1期132-142,共11页
This study investigated the seasonal variations of the normalized difference vegetation index(NDVI) and its relationships with climatic variables and topography in a small-scale(20 km×20 km) area(i.e., Tsogt... This study investigated the seasonal variations of the normalized difference vegetation index(NDVI) and its relationships with climatic variables and topography in a small-scale(20 km×20 km) area(i.e., Tsogt-Ovoo village) within the desert steppe zone of Mongolia using in-situ observed climate data and satellite remote sensing data. We found that the topography is very important for vegetation growth in the desert steppe although the summer precipitation is the constraining factor. The unexpectedly high NDVI(up to 0.56), as well as the high aboveground biomass, in the valley bottom was primarily resulted from the topography-modulated redistribution of overland flow after relatively heavy precipitation events during the growing season. This makes the valley bottoms in desert steppes not only reliable feeding resources for livestock but also heavens for wild lives. But, the detected large standard deviation of annual maximum NDVI(NDVI_(max)) from 2000 to 2013 in the valley bottom in response to rather variable precipitation implies that the valley bottoms under desert steppe climates are more vulnerable to climatic change. 展开更多
关键词 topography climatic variable desert valley VEGETATION soil moisture terra-modis NDVI
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