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利用GPS数据来评定Saastamoinen和Hopfield天顶湿延迟模型的精度 被引量:5
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作者 曲建光 赵丽萍 刘基余 《黑龙江工程学院学报》 CAS 2006年第1期1-5,共5页
通过与GPS数据推算的水汽含量的比较,对天顶湿延迟模型计算的水汽含量进行验证和分析.结果表明:天顶湿延迟模型的相对精度大约在20%~30%之间.
关键词 水汽 天顶湿延迟模型 静水力学延迟模型 GPS数据
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A global empirical model for mapping zenith wet delays onto precipitable water vapor using GGOS Atmosphere data 被引量:6
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作者 YAO YiBin XU ChaoQian +1 位作者 ZHANG Bao CAO Na 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第8期1361-1369,共9页
The importance of water vapor in research of global climate change and weather forecast cannot be over emphasized; therefore substantial efforts have been made in exploring the optimal methods to measure water vapor. ... The importance of water vapor in research of global climate change and weather forecast cannot be over emphasized; therefore substantial efforts have been made in exploring the optimal methods to measure water vapor. It is well-established that with a conversion factor, zenith wet delays can be mapped onto precipitable water vapor (PWV). However, the determination of the exact conversion factor depends heavily on the accurate calculation of a key variable, weighted mean temperature of the trop- osphere (Tin). AS a critical parameter in Global Positioning System (GPS) meteorology, Tm has recently been modeled into a global grid known as GWMT. The GWMT model only requires the location and the day of year to calculate Tm. Despite the advantages that the GWMT model offers, anomalies still exist in oceanic areas due to low sampling resolution. In this study, we refine the GWMT model by incorporating the global Tm grid from Global Geodetic Observing System (GGOS) and obtain an improved model, GWMT-G. The results indicate that the GWMT-G model successfully addresses the anomaly in oceanic areas in the GWMT model and significantly improves the accuracy of Tm in other regions. 展开更多
关键词 GPS meteorology zenith wet delay GWMT model GWMT-G model GGOS
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