首页> 外文期刊>fresenius environmental bulletin >EVALUATION OF PRECIPITABLE WATER VAPOR DERIVED FROM GLOBAL NAVIGATION SATELLITE SYSTEM OBSERVATIONS BASED ON TROPOSPHERE MODEL
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EVALUATION OF PRECIPITABLE WATER VAPOR DERIVED FROM GLOBAL NAVIGATION SATELLITE SYSTEM OBSERVATIONS BASED ON TROPOSPHERE MODEL

机译:基于对流层模式的全球导航卫星系统观测可降水水汽评价

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摘要

Monitoring of water vapor in the troposphere is of great importance for real time weather forecasting applications. Over the past decade, Global Navigation Satellite Systems (GNSS) have become an effective supporting tool for deriving reliable and accurate weather forecasts. The main objective of this study is to investigate the accuracy of precipitable water vapor (PWV) estimation by using GNSS observations based on Global Pressure and Temperature empirical (GPT2w) model meteorological parameters (Water vapor weighted mean temperature; Tm, Pressure; P). PWV values derived from GNSS observations based on surface meteorological data were accepted as true values for validation. PWV values were obtained during humid and dry periods for seven days on globally distributed three reference stations. In order to evaluate the regional effect, three reference stations were selected in Australia, Turkey and Greenland. Root mean square error (RMSE) of PWV estimation based on meteorological data derived from GPT2w was found 1.8 mm for overall assessment.
机译:对流层水汽监测对于实时天气预报应用具有重要意义。在过去十年中,全球导航卫星系统(GNSS)已成为获得可靠和准确天气预报的有效支持工具。本研究的主要目的是利用基于全球压力和温度经验(GPT2w)模型气象参数(水汽加权平均温度;Tm: 压力;基于地面气象数据的GNSS观测得出的PWV值被接受为验证的真实值。在潮湿和干燥期间,在全球分布的三个参考站上获得了7天的脉搏波速度值。为了评估区域效应,在澳大利亚、土耳其和格陵兰岛选择了三个参考站。基于GPT2w的气象数据估计的PWV均方根误差(RMSE)为1.8 mm,用于整体评估。

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