以Terra/MODIS 8d合成的250m地表反射率数据产品MOD09Q1(MODIS Terra Surface Reflectance 8-Day L3 Global 250m)为主要数据源,采用多源信息水面提取的方法对2000年3月—2008年12月间洞庭湖区水面面积的变化特征和趋势进行了监测分析...以Terra/MODIS 8d合成的250m地表反射率数据产品MOD09Q1(MODIS Terra Surface Reflectance 8-Day L3 Global 250m)为主要数据源,采用多源信息水面提取的方法对2000年3月—2008年12月间洞庭湖区水面面积的变化特征和趋势进行了监测分析。分析结果显示:(1)洞庭湖区水面变化的季节性特征显著,其中枯水期11月—次年4月份间的湖区水面相对较小,基本在500km2左右,而洪水期5—10月份的水面则相对较大,尤其每年的7—9月份最大,维持在2000km2左右,两者几乎相差了4倍;(2)受气候变化与三峡工程初期运行等因素的共同影响,洞庭湖区水域面积总体上呈现出一定程度的下降趋势;(3)通过流域年降水量变化分析和三峡水库蓄水运行前后松滋、太平和藕池三口年径流量变化对比,发现流域内降水带来的入湖水量偏少是近年来洞庭湖区水面面积减小的主要驱动因子;(4)近年来9、10月份洞庭湖流域降水减少与三峡水库汛末蓄水同期,将共同造就最终入湖水量锐减,加重湖区夏秋连旱程度,进而诱发系列生态安全问题。展开更多
The objective of this study is to assess the influence of the Amazon River seasonal dynamic on floodplain lake morphology. The study area includes the Amazon River floodplain reach encompassed by the Madeira and Tapaj...The objective of this study is to assess the influence of the Amazon River seasonal dynamic on floodplain lake morphology. The study area includes the Amazon River floodplain reach encompassed by the Madeira and Tapajós River confluences. Products from the Global Rain Forest Mapping (GRFM) and Moderate Resolution Imaging Spectroradiometer (MODIS) were used to derive variables such as lake size, shape and number. The main steps in the research were: data base implementation, legend definition, image processing (merge, segmentation, classification and edition), morphological mapping and quantitative assessment. Four classes of lacustrine morphology were defined in this study: circular/elliptical, elongated, composite, and dendritic. The result showed that 1) the lake class increased 18.38% from the low- to high-water period;2) there was a reduction in the total number of lakes from low to high water;3) the most common lake type was the circular/elliptical;and 4) better results were obtained integrating SAR and optical sensors.展开更多
文摘以Terra/MODIS 8d合成的250m地表反射率数据产品MOD09Q1(MODIS Terra Surface Reflectance 8-Day L3 Global 250m)为主要数据源,采用多源信息水面提取的方法对2000年3月—2008年12月间洞庭湖区水面面积的变化特征和趋势进行了监测分析。分析结果显示:(1)洞庭湖区水面变化的季节性特征显著,其中枯水期11月—次年4月份间的湖区水面相对较小,基本在500km2左右,而洪水期5—10月份的水面则相对较大,尤其每年的7—9月份最大,维持在2000km2左右,两者几乎相差了4倍;(2)受气候变化与三峡工程初期运行等因素的共同影响,洞庭湖区水域面积总体上呈现出一定程度的下降趋势;(3)通过流域年降水量变化分析和三峡水库蓄水运行前后松滋、太平和藕池三口年径流量变化对比,发现流域内降水带来的入湖水量偏少是近年来洞庭湖区水面面积减小的主要驱动因子;(4)近年来9、10月份洞庭湖流域降水减少与三峡水库汛末蓄水同期,将共同造就最终入湖水量锐减,加重湖区夏秋连旱程度,进而诱发系列生态安全问题。
文摘The objective of this study is to assess the influence of the Amazon River seasonal dynamic on floodplain lake morphology. The study area includes the Amazon River floodplain reach encompassed by the Madeira and Tapajós River confluences. Products from the Global Rain Forest Mapping (GRFM) and Moderate Resolution Imaging Spectroradiometer (MODIS) were used to derive variables such as lake size, shape and number. The main steps in the research were: data base implementation, legend definition, image processing (merge, segmentation, classification and edition), morphological mapping and quantitative assessment. Four classes of lacustrine morphology were defined in this study: circular/elliptical, elongated, composite, and dendritic. The result showed that 1) the lake class increased 18.38% from the low- to high-water period;2) there was a reduction in the total number of lakes from low to high water;3) the most common lake type was the circular/elliptical;and 4) better results were obtained integrating SAR and optical sensors.