首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Experiment on Driving Precipitable Water Vapor from Ground-Based GPS Network in Chengdu Plain
作者姓名:LI  Guoping  HUANG  Dingfa  LIU  Biquan  CHEN  Jiaona
作者单位:Center for Plateau Atmospheric and Environmental Research Chengdu University of Information Technology,24 Section1,Xuefu Road Chengdu 610225 China
基金项目:Supported by the Key Research Project of Chengdu Regional Meteorological Center and the Natural Science,TechnologyDevelopment Foundation of Chengdu University of Information Technology.
摘    要:The estimates of total zenith delay are derived using Bernese GPS Software V4. 2 based on GPS data every 30 s from the first measurement experiment of a ground-based GPS network in Chengdu Plain of Southwest China during the period from July to September 2004. Then the estimates of 0.5 hourly precipitable water vapor (PWV) derived from global positioning system (GPS) are obtained using meteorological data from automatic weather stations (AWS). The comparison of PWV derived from GPS and those from radiosonde observations is given for the Chengdu station, with RMS (root mean square) differences of 3.09m. The consis- tency of precipitable water vapor derived from GPS to those from radiosonde is good. It is concluded that Bevis’ empirical formula for estimating the weighted atmospheric mean temperature can be applicable in Chengdu area because the relationship of GPS PWV with Bevis’ formula and GPS PWV with radiosonde method shows a high correlation. The result of this GPS measurement experiment is helpful both for accumu- lating the study of precipitable water vapor derived from GPS in Chengdu areas located at the eastern side of the Tibetan Plateau and for studying spatial-temporal variations of regional atmospheric water vapor through many disciplines cooperatively.

关 键 词:GPS  全球定位系统  水蒸气  网络
文章编号:1009-5020(2007)03-181-05
收稿时间:19 June 2007
修稿时间:2007-06-19

Experiment on driving precipitable water vapor from ground-based GPS network in Chengdu Plain
LI Guoping HUANG Dingfa LIU Biquan CHEN Jiaona.Experiment on Driving Precipitable Water Vapor from Ground-Based GPS Network in Chengdu Plain[J].Geo-Spatial Information Science,2007,10(3):181-185.
Authors:Li  Guoping  Huang  Dingfa  Liu  Biquan  Chen  Jiaona
Institution:(1) Center for Plateau Atmospheric and Environmental Research, Chengdu University of Information Technology, 24 Section 1, Xuefu Road, Chengdu, 610225, China;(2) Chengdu Regional Meteorological Center, CMA, 6 Guanghuacun Street, Chengdu, 610071, China;(3) Center of Geomatic Engineering, Southwest Jiaotong University, 111 North Section 1, Erhuan Road, Chengdu, 610031, China
Abstract:The estimates of total zenith delay are derived using Bernese GPS Software V4. 2 based on GPS data every 30 s from the first measurement experiment of a ground-based GPS network in Chengdu Plain of Southwest China during the period from July to September 2004. Then the estimates of 0.5 hourly precipitable water vapor (PWV) derived from global positioning system (GPS) are obtained using meteorological data from automatic weather stations (AWS). The comparison of PWV derived from GPS and those from radiosonde observations is given for the Chengdu station, with RMS (root mean square) differences of 3.09m. The consistency of precipitable water vapor derived from GPS to those from radiosonde is good. It is concluded that Bevis’ empirical formula for estimating the weighted atmospheric mean temperature can be applicable in Chengdu area because the relationship of GPS PWV with Bevis’ formula and GPS PWV with radiosonde method shows a high correlation. The result of this GPS measurement experiment is helpful both for accumulating the study of precipitable water vapor derived from GPS in Chengdu areas located at the eastern side of the Tibetan Plateau and for studying spatial-temporal variations of regional atmospheric water vapor through many disciplines cooperatively. Supported by the Key Research Project of Chengdu Regional Meteorological Center and the Natural Science and Technology Development Foundation of Chengdu University of Information Technology.
Keywords:precipitable water vapor  global positioning system  remote sensing
本文献已被 CNKI 维普 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号