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Analysis of the global T_m–T_s correlation and establishment of the latitude-related linear model 被引量:17

Analysis of the global T_m–T_s correlation and establishment of the latitude-related linear model
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摘要 In this study,the correlation between Tm,a key variable in GNSS water vapor inversion,and surface temperature(Ts)was calculated on a global scale based on the global geodetic observing system(GGOS)atmosphere Tmdata and European centre for medium-range weather forecasts(ECMWF)surface temperature data.The results show that their correlation is mainly affected by latitudes,and the correlation is stronger at high latitudes and weaker at low latitudes.Although the correlation is relatively weak in the tropic areas,the temperature changes so little in a year in these areas that we can still achieve good Tmresults by linear regression model.Based on these facts,‘‘GGOS atmosphere’’Tmdata and ECMWF Tsdata from 2005 to2011 were used to establish the global latitude-related linear regression model.The new model has root mean square error(RMSE)of 3.2,3.3,and 4.4 K,respectively,compared with respect to the‘‘GGOS atmosphere’’data,COSMIC data,and radiosonde data and is more accurate than the Bevis Tm–Tsrelationship. In this study, the correlation between Tm, a key variable in GNSS water vapor inversion, and surface temperature (Ts) was calculated on a global scale based on the global geodetic observing system (GGOS) atmosphere Tm data and European centre for medium-range weather forecasts (ECMWF) surface temperature data. The results show that their correlation is mainly affected by latitudes, and the correlation is stronger at high latitudes and weaker at low latitudes. Although the correlation is relatively weak in the tropic areas, the temperature changes so little in a year in these areas that we can still achieve good Tm results by linear regression model. Based on these facts, "GGOS atmosphere" Tm data and ECMWF Ts data from 2005 to 2011 were used to establish the global latitude-related linear regression model. The new model has root mean square error (RMSE) of 3.2, 3.3, and 4.4 K, respectively, compared with respect to the "GGOS atmosphere" data, COSMIC data, and radiosonde data and is more accurate than the Bevis Tm-Ts relationship.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2014年第19期2340-2347,共8页
关键词 低纬度地区 线性模型 全球导航卫星系统 线性回归模型 均方根误差 ECMWF COSMIC 无线电探空仪 Correlation Linear regression Zenithwet delay Water vapor GPS
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  • 1毛节泰.GPS的气象应用[J].气象科技,1993,21(4):45-49. 被引量:70
  • 2Yuan L L,JGR,1993年,98卷,D8期,14925页
  • 3刘基余,全球定位系统原理及其应用,1993年
  • 4Chao C C,Tech Memo CIT JPL,1972年,17期,39页
  • 5毛节泰,气象科技,1993年,2期,45页

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