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Yulong Zhong, associate professor. he received the Ph.D. degree in geodesy and survey engineering from the Institute of Geodesy and Geophysics, Chinese Academy of Sciences, Beijing, China, in 2018.  He is currently an Assistant Professor with the China University of Geosciences (Wuhan), Wuhan, China. His research interests focus on applying satellite gravimetry, including the groundwater storage change estimates, regional evapotranspiration estimate from GRACE, and separation of climate change and human activity in GRACE terrestrial water storage.

 

Homepage of Google Scholar

http://scholar-google-com/citations?user=A7D2Kv4AAAAJ&hl=zh-CN&oi=sra


Homepage of Researchgatehttp://www-researchgate-net/profile/Yulong_Zhong


Homepage of ORCIDhttp://orcid-org/0000-0002-6172-2598

 

Publications (to September 15, 2022):

Paper of the first author and corresponding author:

1.      Bai H, Ming Z, Zhong Y L(钟玉龙) *, Zhong M. Kong D. Ji B. Evaluation of evapotranspiration for exorheic basins in China using an improved estimate of terrestrial water storage change[J]. Journal of Hydrology, 2022: 127885. (SCI, T1, 中科院一区Top)

2.      Li, Q.; Liu, X G; Zhong, Y L(钟玉龙)*; Wang, M M; Shi, M X. Precipitation Changes in the Three Gorges Reservoir Area and the Relationship with Water Level Change. Sensors 2021, 21, 6110. doi:10.3390/s21186110. (SCI, T2,中科院三区).

3.      Li, Q.; Liu, X G; Zhong, Y L(钟玉龙)*; Wang, M M; Zhu, S. Estimation of Terrestrial Water Storage Changes at Small Basin Scales Based on Multi-Source Data. Remote Sens. 2021, 13, 3304. doi: 10.3390/rs13163304. (SCI, T2,中科院二区Top).

4.      Zhong Y L(钟玉龙), Zhong M, Mao Y N, Ji, B. Evaluation of Evapotranspiration for Exorheic Catchments of China during the GRACE Era: From a Water Balance Perspective[J]. Remote Sensing. 2020, 12, 511, doi: 10.3390/rs12030511. (SCI, T2,中科院二区Top).

5.      钟玉龙, 钟敏, 冯伟, 闫昊明, 李成振.联合 GRACE 重力卫星与实测资料估计西辽河流域蒸散发量[J]. 武汉大学学报信息科学版, 45(2): 173-178, doi: 10.13203/j. whugis20170402. (EI, T4).

6.      Zhong Y L(钟玉龙), Feng W, Humphrey V, Zhong M. Human-Induced and Climate-Driven Contributions to Water Storage Variations in the Haihe River Basin, China[J]. Remote Sensing, 2019, 11(24): 3050, doi: 10.3390/rs11243050. (SCI, T2,中科院二区Top).

7.      Zhong Y L(钟玉龙), Zhong M, Feng W, Zhang Z Z, Shen Y C, Wu D C. Groundwater Depletion in the West Liaohe River Basin, China and Its Implications Revealed by GRACE and In Situ Measurements[J]. Remote Sensing. 2018, 10(4), 493, doi: 10.3390/rs10040493. (SCI, T2,中科院二区Top).

8.      钟玉龙, 钟敏, 冯伟. 近十年全球平均海平面变化成因的卫星重力监测研究以及与 ENSO 现象的相关分析[J]. 地球物理学进展, 2016, 2: 643-648. (CSCD, T5)

9.      钟玉龙, 钟敏, 冯伟, 吴定程, 沈迎春. 联合卫星重力, 陆表模型和实测资料研究东北平原地下水变化[J]. 2016 中国地球科学联合学术年会论文集 (三十一)——专题 56: 空间大地测量的全球变化研究.

合作作者论文:

10.  Mo S, Zhong Y L(钟玉龙), Forootan E, et al. Hydrological droughts of 20172018 explained by the Bayesian reconstruction of GRACE (FO) fields[J]. Water Resources Research, 2022: e2022WR031997. (SCI, T1,中科院一区Top).

11.  Xiong J, Guo S, Chen D, Zhong Y L(钟玉龙) et al. Past and future terrestrial water storage changes in the lower Mekong River basin: The influences of climatic and non-climatic factors[J]. Journal of Hydrology, 2022, 612: 128275. (SCI, T1,中科院一区Top)

12.  Yang P, Wang W, Zhai X, Xia J, Zhong Y L(钟玉龙) et al. Influence of Terrestrial Water Storage on Flood Potential Index in the Yangtze River Basin, China[J]. Remote Sensing, 2022, 14(13): 3082. (SCI, T2,中科院二区Top)

13.  Lu J, Jia L, Zhou J, Jiang M, Zhong Y L(钟玉龙) et al. Quantification and Assessment of Global Terrestrial Water Storage Deficit Caused by Drought Using GRACE Satellite Data[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2022. (SCI, T2,中科院三区)

14.  Mo S, Zhong Y L(钟玉龙), Forootan E, et al. Bayesian convolutional neural networks for predicting the terrestrial water storage anomalies during GRACE and GRACE-FO gap[J]. Journal of Hydrology, 2022, 604: 127244. (SCI, T1,中科院一区Top).

15.  马志伟, 边少锋, 陆洋, 钟玉龙, 欧阳永忠等. 融合多源重力数据构建局部高阶重力场模型[J]. 测绘科学, 2021, 46(6): 21-30. (CSCD, T4)

16.  冉艳红, 钟敏, 陈威, 钟玉龙, 冯伟. 利用GRACE-FO重力卫星探测2019年长江中下游极端干旱[J]. 科学通报, 2020, doi: 10.1360/TB-2020-0375. (EI, T3).

17.  Su Y Z, Guo B, Zhou Z T, Zhong Y L(钟玉龙), Min L L. Spatio-Temporal Variations in Groundwater Revealed by GRACE and Its Driving Factors in the Huang-Huai-Hai Plain, China[J]. Sensors 2020, 20(3), 922, doi:10.3390/s20030922. (SCI, T2, 中科院三区).

18.  Shi X G, Zhang L, Zhong Y L(钟玉龙), Zhang L, Liao M S. Detection and Characterization of Active Slope Deformations with Sentinel-1 InSAR Analyses in the Southwest Area of Shanxi, China[J]. Remote Sensing. 2020, 12(3), 392, doi: 10.3390/rs12030392. (SCI, T2,中科院二区).

19.  陈威, 钟敏, 冯伟, 钟玉龙,许厚泽. 20052017年两次强ENSO事件对中国区域陆地水储量变化影响的卫星重力观测[J]. 地球物理学报, 2020, 63(1): 141-154, doi: 10.6038/cjg2020M0259. (SCI, T4,中科院四区).

20.  李婉秋, 王伟, 章传银, 文汉江, 钟玉龙. 利用 Forward-Modeling 方法反演青藏高原水储量变化[J]. 武汉大学学报信息科学版, 45(1): 141-149, doi: 10.13203/j.whugis20180263. (EI, T4).

21.  Li W Q, Wang W, Zhang C Y, Wen H J, Zhong Y L(钟玉龙), Zhu Y, Li Z. Bridging Terrestrial Water Storage Anomaly During GRACE/GRACE-FO Gap Using SSA Method: A Case Study in China[J], Sensors, 2019, 19(19), 4144, doi: 10.3390/s19194144. (SCI, T2, 中科院三区)

22.  李婉秋, 王伟, 章传银, 钟玉龙, 尹财, 朱钰. 基于奇异谱分析的CORS大地高时序形变信息提取[J]. 大地测量与地球动力学, 2019, 39(8): 825-831. (CSCD)

23.  Li W Q, Zhang C Y, Wen H J, Feng W, Wang W, Zhong Y L(钟玉龙), Li Z, Yin C, Lu Y Q. The effects of leakage error on terrestrial water storage variations in the Yangtze River Basin measured by GRACE [J]. Journal of Applied Geophysics, 2019, 160264-72. (SCI, T3, 中科院三区).

24.  周亚东, 何报寅, 寇杰锋, 钟玉龙. 华北平原地下水水位持续下降对大气边界层高度影响的初步研究[J]. 华中师范大学学报 (自然科学版), 2018, 52(4): 589-596. (CSCD).

25.  冯伟, 王长青, 穆大鹏, 钟敏, 钟玉龙, 许厚泽. 基于 GRACE 的空间约束方法监测华北平原地下水储量变化[J]. 地球物理学报, 2017, 60(5): 1630-1642. (SCI, T4).

26.  陈威, 钟敏, 钟玉龙, 冯伟, 张明月. 2014~ 2016 El Niño期间全球平均海平面的年际变化及全球水循环的贡献[J]. 科学通报, 2017 (19): 11. (EI, T3).

 

Research Projects

1. Natural Science Foundation of China (42004073)Long-term evapotranspiration variations in the Yangtze River Basin by joint satellite gravimetry and in-situ hydrometeorological measurements, 2021.01-2023.12, PI

2. Open Fund of State Key Laboratory of Remote Sensing Science (OFSLRSS202107),基于长期降水重构解耦陆地水储量变化驱动因素, 2021.08-2023.08, PI

3. Open Research Fund Program of State Key Laboratory of Geodesy and Earth’s Dynamics (SKLGED2019-2-5-E),基于长期重构的陆地水储量研究中国区域人为活动对水储量变化的影响, 2019.01-2020.12, PI

4. Fundamental Research Funds for the Central Universities, China University of Geosciences (G1323519314),长期的陆地水储量变化的气候影响因素研究, 2019.01-2021.12, PI

5. 横向项目,重力/重力梯度数据处理软件开发(2018116436),2018.10-2019.12,主持

 


  • Education Background
  • Work Experience
2013-9 | 2018-6
  • University of Chinese Academy of Sciences
  • Surveying and Mapping Engineering
  • Doctoral Degree
  • Doctoral Degree in Engineering

2009-9 | 2013-6
  • Wuhan University
  • Surveying and Mapping Engineering
  • Bachelor's Degree
  • Bachelor's Degree in Engineering

  • Social Affiliations
  • Research Focus
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Personal information

Associate professor
Supervisor of Master's Candidates

Honors and Titles : 2018届中国科学院武汉分院优秀毕业生
2014-2015和2015-2016学年中国科学院大学三好学生
2012年武汉大学优秀共青团员

Gender : Male

Date of Birth : 1991-10-20

Alma Mater : University of Chinese Academy of Sciences

Education Level : Doctoral Degree in Education

Degree : Doctoral Degree in Engineering

Status : Employed

School/Department : School of Geography and Information Engineering, China University of Geosciences (Wuhan)

Date of Employment : 2018-07-01

Discipline : Surveying and Mapping Engineering

Business Address : 未来城校区地理与信息工程学院668办公室

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