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Biyan Chen
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Journal Publications
[1]Wei Wang, Wenkun Yu, Wujiao Dai. Evaluating Precipitable Water Vapor Products From Fengyun-4A Meteorological Satellite Using Radiosonde, GNSS, and ERA5 Data IEEE Transactions on Geoscience and Remote Sensing, 2022, 60:
[2]Lixin Wu, Wujiao Dai, Cuilin Kuang, Zelang Miao. Detecting Seismo‐Ionospheric Anomalies Possibly Associated With the 2019 Ridgecrest (California) Earthquakes by GNSS, CSES, and Swarm Observations Journal of Geophysical Research: Space Physics, 2021, 126(9):
[3]Wenkun Yu, Wei Wang, Zhetao Zhang, Wujiao Dai. A Global Assessment of Precipitable Water Vapor Derived From GNSS Zenith Tropospheric Delays With ERA5, NCEP FNL, and NCEP GFS Products Earth and Space Science, 2021, 8(8):
[4]Wujiao Dai, Pengfei Xia, Minsi Ao, Jingshu Tan. Reconstruction of Wet Refractivity Field Using an Improved Parameterized Tropospheric Tomographic Technique Remote Sensing, 2020, 12(18): 3034
[5]Wenkun Yu, Wujiao Dai, Hao Wu, Wei Wang. Assessing the performance of GPS tomography at retrieving water vapour fields during landfalling atmospheric rivers over southern California Meteorological Applications, 2020, 27(4):
[6]Wujiao Dai, Lixin Wu, Xiaomin Luo, Ying Xu. A new parameterized approach for ionospheric tomography GPS Solutions, 2019, 23(96):
[7]Wujiao Dai, Zhizhao Liu, Lixin Wu, Pengfei Xia. Assessments of GMI-Derived Precipitable Water Vapor Products over the South and East China Seas Using Radiosonde and GNSS Advances in Meteorology, 2018, 1-12
[8]Wujiao Dai, Zhizhao Liu, Lixin Wu, Cuilin Kuang, Minsi Ao. Constructing a precipitable water vapor map from regional GNSS network observations without collocated meteorological data for weather forecasting Atmospheric Measurement Techniques, 2018, 11(9): 5153-5166
[9]Huineng Yan, Bin Liu. Regional spatio-temporal zenith tropospheric delay modelling using independent component analysis Survey Review, 2018, 1-9
[10]Wujiao Dai, Xiaomin Luo. Real-Time Precise Point Positioning Using Tomographic Wet Refractivity Fields Remote Sensing, 2018, 10(6): 928
[11]Zhizhao Liu, Wai-Kin Wong, Wang-Chun Woo. Detecting Water Vapor Variability during Heavy Precipitation Events in Hong Kong Using the GPS Tomographic Technique Journal of Atmospheric and Oceanic Technology, 2017, 34(4): 1001-1019
[12]Zhizhao Liu. Assessing the performance of troposphere tomographic modeling using multi-source water vapor data during Hong Kong's rainy season from May to October 2013 Atmospheric Measurement Techniques, 2016, 9(10): 5249-5263
[13]Zhizhao Liu. Global Water Vapor Variability and Trend from the Latest 36-Year (1979 to 2014) Data of ECMWF and NCEP Reanalyses, Radiosonde, GPS and Microwave Satellite Journal of Geophysical Research: Atmospheres, 2016, 121(19): 11442-11462
[14]Zhizhao Liu. A Comprehensive Evaluation and Analysis of the Performance of Multiple Tropospheric Models in China Region IEEE Transactions on Geoscience and Remote Sensing, 2016, 54(2): 663-678
[15]Biyan Chen, Sai T. Chan, Yunchang Cao, Yang Gao, Kefei Zhang, Janet Nichol. Analysis and modelling of water vapour and temperature changes in Hong Kong using a 40-year radiosonde record: 1973-2012 International Journal of Climatology, 2015, 35(3): 462-474
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