Title :
Study on Precipitation Parameters Remote Sensing Method in Weather Modification
Author_Institution :
Dept. of Phys., Xin xiang Univ., Xin xiang, China
Abstract :
To carry out artificial rainfall on a certain area, it is necessary to detect first atmospheric water vapor content and cloud liquid water content. In view of the shortage existed in the other methods, the remote sensing method with the help of microwave radiometer, which is based on the principles of microwave remote sensing, is proposed to detect atmospheric water vapor content and cloud liquid water content. Through the remote sensing measurement used in xin jiang xiao qu zi weather station, obtain the observational data of the atmospheric integrated water vapor and cloud liquid water content in xin jiang mountain. By analyzing the observational data of typical weather process, it is proved that the microwave remote sensing method can not only detect continuously the variation of atmospheric water vapor and liquid water content, which can help to select the applicable artificial precipitation time, but also forecast the following rainfall intensity size.
Keywords :
atmospheric humidity; atmospheric techniques; clouds; microwave measurement; radiometers; rain; remote sensing; weather forecasting; weather modification; artificial rainfall; atmospheric integrated water vapor; atmospheric water vapor content; cloud liquid water content; microwave radiometer; microwave remote sensing; microwave remote sensing method; observational data; precipitation parameters remote sensing method; weather modification; weather process; weather station; Atmospheric measurements; Clouds; Liquids; Microwave measurement; Microwave radiometry; Rain; Temperature measurement; integral liquid water content; integrated water vapor content; microwave remote sensing; rain intensity;
Conference_Titel :
Communication Systems and Network Technologies (CSNT), 2013 International Conference on
Conference_Location :
Gwalior
Print_ISBN :
978-1-4673-5603-9
DOI :
10.1109/CSNT.2013.188