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Satellite remote sensing of river inundation area, stage, and discharge: a review

机译:卫星遥感河流淹没区,水位和流量:综述

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The growing availability of multi-temporal satellite data has increased opportunities for monitoring large rivers from space. A variety of passive and active sensors operating in the visible and microwave range are currently operating, or planned, which can estimate inundation area and delineate flood boundaries. Radar altimeters show great promise for directly measuring stage variation in large rivers. It also appears to be possible to obtain estimates of river discharge from space, using ground measurements and satellite data to construct empirical curves that relate water surface area to discharge. Extrapolation of these curves to ungauged sites may be possible for the special case of braided rivers.Where clouds, trees and floating vegetation do not obscure the water surface, high-resolution visible/infrared sensors provide good delineation of inundated areas. Synthetic aperture radar (SAR) sensors can penetrate clouds and can also detect standing water through emergent aquatic plants and forest canopies. However, multiple frequencies and polarizations are required for optimal discrimination of various inundated vegetation cover types. Existing single-polarization, fixed-frequency SARs are not sufficient for mapping inundation area in all riverine environments. In the absence of a space-borne multi-parameter SAR, a synergistic approach using single-frequency, fixed-polarization SAR and visible/infrared data will provide the best results over densely vegetated river floodplains. © 1997 John Wiley & Sons, Ltd.
机译:多时相卫星数据的可用性不断增长,增加了从太空监测大型河流的机会。当前正在操作或计划在可见光和微波范围内运行的各种无源和有源传感器,这些传感器可以估计淹没面积并描绘洪水边界。雷达高度计显示出直接测量大型河流的水位变化的巨大前景。利用地面测量和卫星数据构建将水表面积与流量联系起来的经验曲线,似乎也有可能从太空获得河流流量的估算值。在辫状河的特殊情况下,可以将这些曲线外推到未覆盖的地方。在云,树木和漂浮的植被不会遮挡水面的情况下,高分辨率的可见/红外传感器可以很好地描绘淹没区域。合成孔径雷达(SAR)传感器可以穿透云层,还可以通过紧急水生植物和林冠层检测死水。但是,需要多种频率和极化才能最佳地区分各种淹没的植被类型。现有的单极化,固定频率SAR不足以绘制所有河流环境中的淹没区域。在没有星载多参数SAR的情况下,使用单频,固定极化SAR和可见/红外数据的协同方法将在植被茂密的河漫滩中提供最佳结果。 ©1997 John Wiley&Sons,Ltd.

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