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The effects of rain on TOPEX/Poseidon altimeter data

机译:降雨对TOPEX / Poseidon高度计数据的影响

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The presence of rain in the sub-satellite track can significantly degrade altimeter measurements by causing an attenuation of the backscattered signal, a change in its path length through the atmosphere and a change in the mean square slope of the sea surface. This can cause errors, not only in the measurement of the satellite altitude, but also in the determination of wind speed and wave height. TOPEX/Poseidon dual-frequency altimeter data (cycles 3 and 8) were searched for instances where the data were possibly degraded by the presence of rain over the North and inter-Tropical Atlantic. A subjective analysis of the data, similar to the one used in previous studies was conducted on the backscatter coefficient, wind speed, significant wave height, sea surface height, TOPEX Microwave Radiometer (TMR) brightness temperatures, liquid water content and data quality flags to identify the orbits possibly affected by rain. From the 105 probable rain events identified, the effects of rain on the TOPEX measurements and data quality parameters were characterized. The strong differential effect of rain on the Ku and C band measurements was then used to define a new rain flag based on a departure from the normal relationship between the C and Ku band backscatter. This new rain flag was shown to detect all the identified rain events, as well as new ones. The TMR rain flag, used operationally, was shown to flag too many altimeter samples and too few rain events, mainly because of its large resolution (few tens of kilometers compared to few kilometers for the altimeter). An estimation of the rainfall rate from the attenuation of the Ku band backscatter was proposed.
机译:卫星下轨道中降雨的存在会导致反向散射信号的衰减,其穿过大气的路径长度的变化以及海面的均方根的变化,从而大大降低高度计的测量质量。这不仅会导致卫星高度测量中的误差,而且还会导致风速和波高的确定中的误差。搜索了TOPEX / Poseidon双频高度计数据(周期3和8),以查找在北部和热带大西洋上雨水可能使数据退化的情况。对数据的主观分析与以前的研究类似,对后向散射系数,风速,有效波高,海面高度,TOPEX微波辐射计(TMR)亮度温度,液态水含量和数据质量标记进行了分析。确定可能受雨影响的轨道。从确定的105个可能的降雨事件中,表征了降雨对TOPEX测量和数据质量参数的影响。降雨对Ku和C波段测量值的强烈差分作用随后被用来基于与C和Ku波段反向散射之间正常关系的偏离来定义新的降雨标志。该新雨标显示可以检测所有已识别的降雨事件以及新的降雨事件。可操作性使用的TMR雨旗显示出可以标记太多的高度计样本和很少的降雨事件,这主要是因为其分辨率高(几十公里,而高度计只有几公里)。提出了根据Ku波段反向散射的衰减来估算降雨率的方法。

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