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岸基GNSS用于洪涝水位及大气可降水量监测研究

刘宁 江波 张双成 盛磊 张毅 王恒利 郝耘庆 刘攀 辛勇军

全球定位系统2025,Vol.50Issue(2):61-69,9.
全球定位系统2025,Vol.50Issue(2):61-69,9.DOI:10.12265/j.gnss.2025023

岸基GNSS用于洪涝水位及大气可降水量监测研究

Research on the monitoring of flood water levels and precipitable water vapor using shore-based GNSS

刘宁 1江波 1张双成 1盛磊 2张毅 3王恒利 1郝耘庆 4刘攀 1辛勇军1

作者信息

  • 1. 长安大学地质工程与测绘学院,西安 710054
  • 2. 苏交科集团股份有限公司,南京 211100
  • 3. 上海市地矿工程勘察(集团)有限公司,上海 200072
  • 4. 陕西省水利电力勘测设计研究院(集团)有限公司,西安 710001
  • 折叠

摘要

Abstract

In recent years,flood disasters have occurred frequently and serious impacts have been brought to society.During flood disasters,significant changes in river water levels and precipitable water vapor(PWV)are often accompanied.Taking the flood disaster in Porto Alegre,Brazil in 2024 as an example,data from GNSS stations were selected,and research on flood water level and water vapor monitoring was conducted.The results indicate that,before the rainstorm,the correlation coefficient between the water level inversion at the SPH4 station and the data from the hydrological station is 0.993,and the root mean square error(RMSE)is 0.02 m.During the rainstorm,the correlation coefficient between the water level inversion results of the SPH4 station and the IDP1 station on both sides of the river reaches 0.997,and the RMSE is 0.06 m.There is a time difference of 2 to 5 days between the rainfall peak and the water level peak.The correlation coefficient between the PWV value inverted by the GNSS station and the PWV value measured by the radiosonde station is 0.992,and the RMSE is only 1.9 mm.The maximum rainfall occurs within 5 h when the PWV value reaches its peak.The experiment demonstrates that shore-based GNSS equipment can accurately invert the changes in flood water levels and precipitable water vapor,and broad application prospects are held in the prevention and monitoring of flood disasters.

关键词

岸基GNSS/洪涝灾害/全球导航卫星系统干涉反射测量(GNSS-IR)/水位监测/大气可降水量(PWV)

Key words

shore-based GNSS/flood disasters/GNSS-IR/water level monitoring/precipitable water vapor(PWV)

分类

天文与地球科学

引用本文复制引用

刘宁,江波,张双成,盛磊,张毅,王恒利,郝耘庆,刘攀,辛勇军..岸基GNSS用于洪涝水位及大气可降水量监测研究[J].全球定位系统,2025,50(2):61-69,9.

基金项目

国家自然科学基金(42474028,42074041) (42474028,42074041)

江苏省科技成果转化专项资金项目(BA2022009) (BA2022009)

全球定位系统

1008-9268

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