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Assimilation of Feng-Yun-3B Satellite Microwave Humidity Sounder Data over Land

机译:陆上风云3B卫星微波湿度探测仪数据的同化

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摘要

The ECMWF has been assimilating Feng-Yun-3B (FY-3B) satellite microwave humidity sounder (MWHS) data over ocean in an operational forecasting system since 24 September 2014.It is more difficult,however,to assimilate microwave observations over land and sea ice than over the open ocean due to higher uncertainties in land surface temperature,surface emissivity and less effective cloud screening.We compare approaches in which the emissivity is retrieved dynamically from MWHS channel 1 [150 GHz (vertical polarization)] with the use of an evolving emissivity atlas from 89 GHz observations from the MWHS onboard NOAA and EUMETSAT satellites.The assimilation of the additional data over land improves the fit of short-range forecasts to other observations,notably ATMS (Advanced Technology Microwave Sounder) humidity channels,and the forecast impacts are mainly neutral to slightly positive over the first five days.The forecast impacts are better in boreal summer and the Southern Hemisphere.These results suggest that the techniques tested allow for effective assimilation of MWHS/FY-3B data over land.
机译:自2014年9月24日以来,ECMWF一直在运行预报系统中吸收海上的Feng-Yun-3B(FY-3B)卫星微波湿度探测器(MWHS)数据。然而,更难以吸收陆上和海上的微波观测结果。由于陆地表面温度,表面发射率和有效的云层屏蔽的不确定性较高,因此冰比公开海洋要多。我们比较了使用MWHS通道1 [150 GHz(垂直极化)]动态获取发射率的方法。来自NOAA和EUMETSAT卫星上MWHS的89 GHz观测值的不断发展的发射率图谱。陆上附加数据的同化提高了短程预报与其他观测值(特别是ATMS(先进技术微波测深仪)湿度通道)和预报的拟合度前五天的影响主要是中性或略微正面的。预测的影响在北方夏季和南半球更好。结果表明,所测试的技术可以有效地吸收陆地上的MWHS / FY-3B数据。

著录项

  • 来源
    《大气科学进展(英文版)》 |2018年第3期|268-275|共8页
  • 作者单位

    School of Atmospheric Sciences,Chengdu University of Information & Technology,Chengdu,Sichuan 610225,China;

    International Centre for Climate and Environment Sciences,Institute of Atmospheric Physics,China,Beijing 100029,China;

    European Centre for Medium-Range Weather Forecasts,Reading RG2 9AX,UK;

    European Centre for Medium-Range Weather Forecasts,Reading RG2 9AX,UK;

    International Centre for Climate and Environment Sciences,Institute of Atmospheric Physics,China,Beijing 100029,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:55:45
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