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Anqi CAI, Xiaolei ZOU,
2019: Latitudinal and Scan-dependent Biases of Microwave Humidity Sounder Measurements and Their Dependences on Cloud Ice Water Path, ADVANCES IN ATMOSPHERIC SCIENCES, 36, 557-569.
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Yaodeng CHEN, Ruizhi ZHANG, Deming MENG, Jinzhong MIN, Lina ZHANG,
2016: Variational Assimilation of Satellite Cloud Water/Ice Path and Microphysics Scheme Sensitivity to the Assimilation of a Rainfall Case, ADVANCES IN ATMOSPHERIC SCIENCES, 33, 1158-1170.
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Shuang LUO, Yunfei FU, Shengnan ZHOU, Xiaofeng WANG, Dongyong WANG,
2020: Analysis of the Relationship between the Cloud Water Path and Precipitation Intensity of Mature Typhoons in the Northwest Pacific Ocean, ADVANCES IN ATMOSPHERIC SCIENCES, 37, 359-376.
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2003: Retrieval of Microwave Surface Emissivities at TMI Frequencies in Shouxian, ADVANCES IN ATMOSPHERIC SCIENCES, 20, 253-259.
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LI Lijuan, Yuqing WANG, WANG Bin, ZHOU Tianjun,
2008: Sensitivity of the Grid-point Atmospheric Model of IAP LASG (GAMIL1.1.0) Climate Simulations to Cloud Droplet Effective Radius and Liquid Water Path, ADVANCES IN ATMOSPHERIC SCIENCES, 25, 529-540.
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Zhao Bolin,
1990: Study on Microwave Remote Sensing of Atmosphere, Cloud and Rain, ADVANCES IN ATMOSPHERIC SCIENCES, 7, 475-490.
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Eun-Han KWON, Jinlong LI, B. J. SOHN, Elisabeth WEISZ,
2012: Use of Total Precipitable Water Classification of A Priori Error and Quality Control in Atmospheric Temperature and Water Vapor Sounding Retrieval, ADVANCES IN ATMOSPHERIC SCIENCES, 29, 263-273.
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WANG Han, SUN Xiaobing, SUN Bin, LIANG Tianquan, LI Cuili, and HONG Jin,
2014: Retrieval of Aerosol Optical Properties over a Vegetation Surface Using Multi-angular, Multi-spectral, and Polarized data, ADVANCES IN ATMOSPHERIC SCIENCES, 31, 879-887.
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Lijun ZHAO, Yuan WANG, Chuanfeng ZHAO, Xiquan DONG, Yuk L. YUNG,
2022: Compensating Errors in Cloud Radiative and Physical Properties over the Southern Ocean in the CMIP6 Climate Models, ADVANCES IN ATMOSPHERIC SCIENCES, 39, 2156-2171.
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Sibo ZHANG, Li GUAN,
2017: Preliminary Study on Direct Assimilation of Cloud-affected Satellite Microwave Brightness Temperatures, ADVANCES IN ATMOSPHERIC SCIENCES, 34, 199-208.
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HUANG Yi, WANG Meihua, MAO Jietai,
2004: Retrieval of Upper Tropospheric Relative Humidity by the GMS-5 Water Vapor Channel: A Study of the Technique, ADVANCES IN ATMOSPHERIC SCIENCES, 21, 53-60.
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WANG Xin, Lü Daren,
2005: Retrieval of Water Vapor Profiles with Radio Occultation Measurements Using an Artificial Neural Network, ADVANCES IN ATMOSPHERIC SCIENCES, 22, 759-764.
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Yuanwen ZHANG, Guiwan CHEN, Jian LING, Shenming FU, Chongyin LI,
2021: A Case Study on MJO Energy Transport Path in a Local Multi-scale Interaction Framework, ADVANCES IN ATMOSPHERIC SCIENCES, 38, 1929-1944.
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XU Dongmei, Thomas AULIGNÈ, Xiang-Yu HUANG,
2015: A Validation of the Multivariate and Minimum Residual Method for Cloud Retrieval Using Radiance from Multiple Satellites, ADVANCES IN ATMOSPHERIC SCIENCES, 32, 349-362.
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Lesi WEI, Huazhe SHANG, Jian XU, Chong SHI, Gegen TANA, Kefu CHAO, Shanhu BAO, Liangfu CHEN, Husi LETU,
2024: Cloud Top Pressure Retrieval Using Polarized and Oxygen A-band Measurements from GF5 and PARASOL Satellites, ADVANCES IN ATMOSPHERIC SCIENCES, 41, 680-700.
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Bo Li, Disong Fu, Ling YANG, Xuehua Fan, Dazhi Yang, Hongrong Shi, Xiang-Ao XIA,
2024: Joint Retrieval of PM2.5 Concentration and Aerosol Optical Depth over China Using Multi-Task Learning on FY-4A AGRI, ADVANCES IN ATMOSPHERIC SCIENCES.
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REN Zhihua, LI Mingqin,
2007: Errors and Correction of Precipitation Measurements in China, ADVANCES IN ATMOSPHERIC SCIENCES, 24, 449-458.
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Yan XIA, Yongyun HU, Jiping LIU, Yi HUANG, Fei XIE, Jintai LIN,
2020: Stratospheric Ozone-induced Cloud Radiative Effects on Antarctic Sea Ice, ADVANCES IN ATMOSPHERIC SCIENCES, 37, 505-514.
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LI Xingyu, GUO Xueliang, ZHU Jiang,
2008: Climatic Features of Cloud Water Distribution and Cycle over China, ADVANCES IN ATMOSPHERIC SCIENCES, 25, 437-446.
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Bo LIU, Juan HUO, Daren LYU, Xin WANG,
2021: Assessment of FY-4A and Himawari-8 Cloud Top Height Retrieval through Comparison with Ground-Based Millimeter Radar at Sites in Tibet and Beijing, ADVANCES IN ATMOSPHERIC SCIENCES, 38, 1334-1350.
doi: 10.1007/s00376-021-0337-2
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