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个人简介

学习与工作经历 2007/07至今,自然资源部第一海洋研究所,海洋物理与遥感研究室,助理研究员/副研究员/研究员。 2004/09-2007/06,中国科学院海洋研究所,物理海洋学专业,博士。 2001/09-2004/06,内蒙古大学,基础数据专业,硕士。 1997/09-2001/06,内蒙古大学,数理学基地专业,学士。 课题 国家自然科学基金重点项目子课题,基于数据挖掘的南海岛礁演变机制及多尺度模拟预测技术研究,2019-2023。 全球变化与海气相互作用专项,海丝路海域新型卫星遥感器海洋产品应用分析与评估,2020-2022。 中欧“龙计划”国际合作项目,Marine dynamic environment monitoring in the China seas and western Pacific Ocean seas by satellite altimeters,2020-2024。 国家重点研发计划课题,多源海洋历史观测资料处理技术研究,2016-2020。 国家自然科学基金面上项目,基于遥感SSH、SST和Argo数据的东印度洋中尺度涡三维结构季节变化特征研究,2016-2019。 全球变化与海气相互作用专项II期,西太平洋PAC-YGST04区块海洋环境参数遥感调查II期,2017-2020。 ² 全球变化与海气相互作用专项,西太平洋PAC-YGST04区块海洋环境遥感调查,2013-2015。 获奖情况 2021年度测绘科学技术奖二等奖,排名第五。 2010年海洋创新成果奖二等奖,排名第六。 2009年度海洋创新成果二等奖,排名第三。

研究领域

海洋动力环境微波遥感、卫星高度计数据应用

近期论文

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1. Jungang YANG, Jie ZHANG, Wei CUI, Muñoz MAITE, Makhoul EDUARD. Primary Analysis of Oceanic Mesoscale Eddies Observation Abilities by Sentinel-3A SRAL. Journal of Geodesy and Geoinformation Science, 2021, 4(1): 56-62. 2. Yang, J.; Zhang, J.; Jia, Y.; Fan, C.; Cui, W. Validation of Sentinel-3A/3B and Jason-3 Altimeter Wind Speeds and Significant Wave Heights Using Buoy and ASCAT Data. Remote Sens. 2020, 12, 2079. 3. Jungang Yang, Jie Zhang. Accuracy Assessment of HY-2A Scatterometer Wind Measurements During 2011-2017 by Comparison with Buoys, ASCAT, and ERA-Interim Data. IEEE Geoscience and Remote Sensing Letters, 2019,16(5): 727-731. 4. Jungang Yang and Jie Zhang. Comparison of Oceansat-2 Scatterometer Wind Data with Global Moored Buoys and ASCAT Observation, Advances in Meteorology, 2019, Article ID 1651267. 5. Yang, J., Zhang, J., Wang, C. Sentinel-3A SRAL Global Statistical Assessment and Cross-Calibration with Jason-3. Remote Sens. 2019, 11(13), 1573. 6. Yang, J.; Zhang, J. Validation of Sentinel-3A/3B Satellite Altimetry Wave Heights with Buoy and Jason-3 Data. Sensors, 2019, 19(13), 2914. 7. Jungang Yang, Jie Zhang. Evaluation of ISS-RapidScat Wind Vectors Using Buoys and ASCAT Data. Remote Sensing, 2018, 10(4), 648; doi:10.3390/rs10040648. 8. Liang G., Yang J., Wang J. Accuracy Evaluation of CFOSAT SWIM L2 Products Based on NDBC Buoy and Jason-3 Altimeter Data. Remote Sensing. 2021; 13(5):887. 9. Huang, L.; Yang, J.; Meng, J.; Zhang, J. Underwater Topography Detection and Analysis of the Qilianyu Islands in the South China Sea Based on GF-3 SAR Images. Remote Sens. 2021, 13, 76. 10. Cui W., Wang W., Zhang J., Yang J. Identification and census statistics of multicore eddies based on sea surface height data in global oceans. Acta Oceanol. Sin., 2020, 39(1):41-51. 11. Jia, Y.; Yang, J.; Lin, M.; Zhang, Y.; Ma, C.; Fan, C. Global Assessments of the HY-2B Measurements and Cross-Calibrations with Jason-3. Remote Sens. 2020, 12, 2470. 12. LI Jitao,LIANG Yongquan, ZHANG Jie, YANG Jungang, SONG Pingjian, CUI Wei. A new automatic oceanic mesoscale eddy detection method using satellite altimeter data based on density clustering. Acta Oceanologica Sinica, 2019, 38(5): 134-141. 13. Wei Cui, Wei Wang, Zhang Jie, Jungang Yang & Yongjun Jia. Improvement of Sea Surface Height Measurements of HY-2A Satellite Altimeter Using Jason-2, Marine Geodesy, 2018,41(6): 632-648. 14. Cui, W., Wang, W., Zhang, J., and Yang, J. Multicore structures and the splitting and merging of eddies in global oceans from satellite altimeter data, Ocean Sci., 2019, 15, 413–430. 15. CUI Wei, YANG Jungang, MA Yi. A statistical analysis of mesoscale eddies in the Bay of Bengal from 22–year altimetry data. Acta Oceanologica Sinica, 2016, 35(11): 16-27. 16. Chaojie Zhou, Xiaohua Ding, Jie Zhang, Jungang Yang, and Qiang Ma. An Efficient T-S Assimilation Strategy Based on the Developed Argo-Extending Algorithm. Advances in Meteorology, 2017, doi:10.1155/2017/6847343.

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