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A scattering-based over-land rainfall retrieval algorithm for South Korea using GCOM-W1/AMSR-2 data

机译:基于GCOM-W1 / AMSR-2数据的韩国基于散射的陆上降雨检索算法

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Heavy summer rainfall is a primary natural disaster affecting lives and properties in the Korean Peninsula. This study presents a satellite-based rainfall rate retrieval algorithm for the South Korea combining polarization-corrected temperature (PCT) and scattering index (SI) data from the 36.5 and 89.0 GHz channels of the Advanced microwave Scanning Radiometer 2 (AMSR-2) onboard the Global Change Observation Mission (GCOM)-W1 satellite. The coefficients for the algorithm were obtained from spatial and temporal collocation data from the AMSR-2 and groundbased automatic weather station rain gauges from 1 July - 30 August during the years, 2012-2015. There were time delays of about 25 minutes between the AMSR-2 observations and the ground raingauge measurements. A new linearly-combined rainfall retrieval algorithm focused on heavy rain for the PCT and SI was validated using ground-based rainfall observations for the South Korea from 1 July - 30 August, 2016. The validation presented PCT and SI methods showed slightly improved results for rainfall > 5 mm h(-1) compared to the current ASMR-2 level 2 data. The best bias and root mean square error (RMSE) for the PCT method at AMSR-2 36.5 GHz were 2.09 mm h(-1) and 7.29 mm h(-1), respectively, while the current official AMSR-2 rainfall rates show a larger bias and RMSE (4.80 mm h(-1) and 9.35 mm h(-1), respectively). This study provides a scatteringbased over-land rainfall retrieval algorithm for South Korea affected by stationary front rain and typhoons with the advantages of the previous PCT and SI methods to be applied to a variety of spaceborne passive microwave radiometers.
机译:夏季大量降雨是影响朝鲜半岛生命和财产的主要自然灾害。这项研究提出了一种基于卫星的韩国降雨率检索算法,该算法结合了来自船上高级微波扫描辐射计2(AMSR-2)的36.5和89.0 GHz通道的极化校正温度(PCT)和散射指数(SI)数据全球变化观察团(GCOM)-W1卫星。该算法的系数是从2012-2015年的7月1日至8月30日从AMSR-2和地面自动气象站雨量计的时空搭配数据获得的。在AMSR-2观测到地面雨量计之间存在约25分钟的时间延迟。 2016年7月1日至8月30日,利用韩国的地面降雨观测结果,验证了一种针对PCT和SI的针对大雨的线性组合降雨检索新算法。该验证表明PCT和SI方法显示了PCT和SI方法的结果略有改善与当前ASMR-2 2级数据相比,降雨量> 5 mm h(-1)。 PCT方法在AMSR-2 36.5 GHz时的最佳偏差和均方根误差(RMSE)分别为2.09 mm h(-1)和7.29 mm h(-1),而当前的官方AMSR-2降雨率显示较大的偏差和RMSE(分别为4.80 mm h(-1)和9.35 mm h(-1))。这项研究提供了一种基于散射的陆上降雨恢复算法,该方法适用于受正面阵雨和台风影响的韩国,该方法具有以前的PCT和SI方法的优势,可应用于各种星载无源微波辐射计。

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