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Flood-drought cycle of Tonle Sap and Mekong Delta area observed by DMSP-SSM/I

机译:用DMSP-SSM / I观测洞里萨湖和湄公河三角洲地区的旱涝周期

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摘要

A method for the linear estimation of water surface area within a land domain in the tropical region of Tonle Sap and the Mekong Delta is studied using special sensor microwave/imager (SSM/I) data. The coefficient of correlation between the water area estimated by SSM/I and that estimated by AVHRR falls within a range of 0.97-0.99, when 37 GHz horizontal polarization (H_(pol)) brightness temperature T_B data is applied to the SSM/I data. This implies that observation by SSM/I has practical applications in flood monitoring in tropical regions. We have also verified a method for linear estimation of water area within a pixel, utilizing the difference of emissivity between SSM/I 37 GHz H_(pol) and vertical polarization (V_(pol)) data. This estimation shows good secondary correlation with the first method. Values of water area obtained in the dry season appear somewhat larger than those from the NOAA/AVHRR data. Applying the first methodology, a transition of water cover area over Tonle Sap and Mekong Delta was plotted from May 1997 to April 1999. The transition patterns in both watersheds synchronize well with the transition patterns of precipitation in the region. A phase shift of flood-drought cycles of Tonle Sap and Mekong watersheds can be observed. Flooding in the Mekong Delta watershed begins to subside one and a half months after that in the Tonle Sap watershed starts. Fluctuation of the water area of the Mekong Delta synchronizes with that of the water level in the Mekong Delta.
机译:利用特殊的传感器微波/成像仪(SSM / I)数据,研究了对洞里萨湖和湄公河三角洲热带地区陆地域内水表面积进行线性估算的方法。当将37 GHz水平极化(H_(pol))亮度温度T_B数据应用于SSM / I数据时,由SSM / I估计的水域与AVHRR估计的水域之间的相关系数落在0.97-0.99的范围内。这意味着SSM / I的观测在热带地区的洪水监测中具有实际应用。我们还验证了一种利用SSM / I 37 GHz H_(pol)和垂直极化(V_(pol))数据之间的发射率差异对像素内水区域进行线性估计的方法。该估计显示出与第一种方法的良好二次相关性。干旱季节获得的水面积值似乎比NOAA / AVHRR数据中的更大。应用第一种方法,绘制了1997年5月至1999年4月洞里萨湖和湄公河三角洲上的水覆盖面积的过渡图。两个流域的过渡图样都与该地区的降水过渡图样很好地同步。可以观察到洞里萨湖和湄公河流域的旱涝周期发生相移。湄公河三角洲流域开始淹没后一个半月,洪水就开始消退。湄公河三角洲水域的波动与湄公河三角洲的水位同步。

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