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首页> 外文期刊>Advances in Meteorology >Assimilation of MWHS-2/FY-3C 183?GHz Channels Using a Dynamic Emissivity Retrieval and Its Impacts on Precipitation Forecasts: A Southwest Vortex Case
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Assimilation of MWHS-2/FY-3C 183?GHz Channels Using a Dynamic Emissivity Retrieval and Its Impacts on Precipitation Forecasts: A Southwest Vortex Case

机译:MWHS-2 / FY-3C 183的同化使用动态发射率检索及其对降水预测的影响:西南涡箱

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The dynamic emissivity retrieved from window channels of the microwave humidity sounder II (MWHS-2) onboard the China Meteorological Administration’s FengYun (FY)-3C polar orbiting satellite can provide more realistic emissivity over lands and potentially improve the numerical weather prediction (NWP) forecasts. However, whether the assimilation with the dynamic emissivity works for the precipitation forecasts over the complex geography is less investigated. In this paper, a typical precipitating case generated by the Southwest Vortex is selected and the Weather Research and Forecasting data assimilation (WRFDA) system is applied to examine the impacts of assimilating MWHS-2/FY-3C with the uses of the emissivity atlas and the dynamic emissivity on the forecasts. The results indicate that the use of the dynamic emissivity retrieved from the 89?GHz channel of MWHS-2/FY-3C apparently increases the used data number for assimilation and does improve the initial fields and the 24-hour forecasts (from 0000 UTC 24 June 2016 to 0000 UTC 25 June 2016) of precipitation distribution and intensity except for the rainfall over 100?mm. But these positive impacts are not evidently better than those with the emissivity atlas. In general, these results still suggest that the future use of the dynamic emissivity in the assimilation over the complex terrain is promising.
机译:从微波炉湿度发声器II(MWHS-2)的窗口通道检出的动态发出率中国气象局的风云(FY)-3C极地轨道卫星可以为土地提供更具现实的发射率,并可能改善数值天气预报(NWP)预测。但是,对具有动态发射率的同化是对复杂地理的降水预测的作用不太调查。在本文中,选择了由西南涡旋产生的典型沉淀案例,并应用了天气研究和预测数据同化(WRFDA)系统来检查同化MWHS-2 / FY-3C与发射率阿特拉斯的用途的影响预测上的动态发射率。结果表明,使用从89的89?GHz通道检索的动态发射率显然增加了同化的使用数据编号,并确实改善了初始字段和24小时预测(从0000 UTC 24 2016年6月至0000 UTC 2016年6月25日)降水分布和强度除了100毫秒超过100毫米。但这些积极的影响并不明显比具有发射率阿特拉斯的影响更好。一般而言,这些结果仍然表明,未来在复杂地形上的同化中使用动态发射率是有前途的。

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