首页> 外文会议>Geoscience and Remote Sensing Symposium, 1995. IGARSS '95. 'Quantitative Remote Sensing for Science and Applications', International >The global remote sensing of lakes, wetlands and rivers for hydrological and climate research
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The global remote sensing of lakes, wetlands and rivers for hydrological and climate research

机译:湖泊,湿地和河流的全球遥感,用于水文和气候研究

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Remote sensing, particularly the use of radar altimeters and imaging radiometers, offers a global perspective for some hydrological parameters. Satellite radar altimetry with its all-weather operation can be used to derive lake, river and wetland levels and infrared imagery can be used to derive lake and wetland areas. These remote sensing measurements can be applied to several programmes including the determination of regional scale hydrological variability and in the proxy monitoring of precipitation changes. A remote sensing programme at the Mullard Space Science Laboratory (MSSL) thus aims to monitor globally and continually all large inland water bodies. Level time series, derived from the current TOPEX/POSEIDON altimeter mission are presented here for the Caspian Sea, the Sudd wetlands and the Amazon River. The accuracy of these level variations is /spl sim/5 cm rms.
机译:遥感技术,尤其是雷达高度计和成像辐射计的使用,为某些水文参数提供了全球视野。具有全天候运行的卫星雷达测高仪可用于推算湖泊,河流和湿地的水准,红外图像可用于推算湖泊和湿地的面积。这些遥感测量可以应用于几个程序,包括确定区域尺度的水文变异性和代理监测降水变化。因此,穆拉德太空科学实验室(MSSL)的一项遥感计划旨在对全球范围内的所有内陆水体进行连续监测。来自当前TOPEX / POSEIDON高度计任务的水平时间序列在此显示,用于里海,苏德湿地和亚马逊河。这些电平变化的精度为/ spl sim / 5 cm rms。

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