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The Impact of a New Set of IASI Channels on the Unified Model Global Precipitation Forecast

机译:一组新的IASI通道对统一模型全球降水预报的影响

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摘要

This study attempts to assess the impact of data assimilation with newly selected Infrared Atmospheric Sounding Interferometer (IASI) channels on the global precipitation forecast, using the Korea Meteorological Administration (KMA) Unified Model (UM) system. The new IASI channels assimilated under the clear-sky condition give a positive impact on the global precipitation forecast, shown in the trial experiments. In particular, the overestimated horizontal size of forecasted precipitation in the control run with operational IASI channels significantly decreases in the experimental trial with the newly selected channels. In addition, the moist biases of moisture field in the model analysis as an initial condition are substantially reduced in the experiment run. Considering that the moisture in the troposphere is a main source of precipitation, the reduction of moist biases in the troposphere seems to contribute to the improvement of precipitation forecast in the UM system. Therefore, these results suggest that the improved moisture field even over clear areas is able to enhance the precipitation forecast accuracy. And because the difference between two trial runs is only a set of IASI channels used in the UM data assimilation system, the improved precipitation forecast is likely to due to the use of different H_2O channels in the new set of IASI channel used in the experiment run, which are sensitive to the tropospheric water vapor.
机译:这项研究试图使用韩国气象局(KMA)统一模型(UM)系统,评估新选择的红外大气探测仪(IASI)数据同化对全球降水预报的影响。试验实验显示,在晴朗的天空条件下被同化的新IASI通道对全球降水预报产生了积极影响。尤其是,在使用新选择的通道进行的试验中,使用可运行的IASI通道的控制运行中预测降水的高估水平尺寸显着减小。另外,在模型分析中作为初始条件的湿度场的潮湿偏差在实验运行中大大降低了。考虑到对流层中的水分是降水的主要来源,对流层中湿气偏差的减少似乎有助于改善UM系统中的降水预报。因此,这些结果表明,即使在晴朗地区,改善的湿度场也能够提高降水预报的准确性。并且由于两次试运行之间的差异仅是在UM数据同化系统中使用的一组IASI通道,因此改进的降水预报可能是由于在实验运行中使用的新IASI通道集中使用了不同的H_2O通道对对流层水蒸气敏感。

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  • 作者单位

    School of Earth and Environmental Sciences Seoul National University Seoul South Korea Cooperative Institute for Meteorological Satellite Studies University of Wisconsin-Madison 1225 West Dayton St. Madison WI 53706 USA;

    School of Earth and Environmental Sciences Seoul National University Seoul South Korea;

    National Institute of Meteorological Sciences Korea Meteorological Administration Jeju South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Data assimilation; Precipitation; Hyper-spectral sounder; Unified model;

    机译:数据同化;沉淀;高光谱测深仪;统一模型;
  • 入库时间 2022-08-18 04:53:55

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