長沙理工大學水利與海洋工程學院研究生導師基本信息表 |
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一、個人基本信息 |
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姓 名:黃志勇 |
性 別: 男 |
籍貫:湖南湘潭 |
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民 族:漢族 |
政治面貌:中共黨員(2011年入黨) |
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出生年月:1990年9月 |
技術職稱: 講師(碩導) |
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畢業院校: 香港大學 |
學歷(學位):研究生(哲學博士) |
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所在學科: 水文與水資源工程系 |
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聯系郵箱:huangzy9084@126.com 學術主頁:https://www.researchgate.net/profile/Huang-Zhiyong?ev=hdr_xprf |
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二、學習和工作經歷 |
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教育經歷: (1) 2017-07 至 2021-12, 香港大學,遙感水文,博士(導師:焦赳赳 教授) (2) 2012-09 至 2015-06, 首都師范大學,地圖學與地理信息系統,碩士(導師:潘云 教授) (3) 2008-09 至 2012-06, 衡陽師范學院,地理信息系統,學士(導師:鄧運員 教授 鄧美容) 科研與學術工作經歷: (1) 2021-12 至 今, 長沙理工大學,水利與環境工程學院,講師 (2) 2017-07 至 2021-06, 香港大學,地球科學系,助教 (3) 2015-07 至 2017-05, 首都師范大學,資源環境與旅游學院,科研助理 |
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三、目前研究領域 |
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1.遙感水文學:側重利用重力衛星、測高衛星和可見光遙感衛星,水文模型和地面實測等多源數據在不同空間尺度上探究地表水、地下水儲量變化、陸地水均衡與水循環、干旱和洪澇監測等,助力水資源和水安全監測、評估與預測。 2.生態水文學:側重聯合多源遙感、模型和實測數據探究極端氣候事件(如,干旱)對植被生長的影響以及碳、水循環與植被變化的相互作用,助力生態文明建設。 |
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四、主持在研或已完成主要課題 |
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1.國家自然科學基金青年科學基金項目,42301404,利用衛星重力探究巖溶區地下水儲量動態規律及干旱機制,2024-01至2026-12,主持,在研, 2.湖南省自然科學基金青年基金項目,2022JJ40480,洞庭湖流域長期水文干旱特征及其對氣候變化響應關系研究,2022-01-01至2024-12-31,主持,已結題。 3.長沙理工大學引進人才科研啟動項目,聯合多源遙感、實測和模型數據監測地下水儲量變化,2021-12至2024-12,主持,在研。 4.國家自然科學基金委員會,面上項目,41877172, 珠江三角洲弱透水層―含水層地區的碳循環機理以二氧化碳和甲烷排放機制的研究,2019-01-01 至 2022-12-31,已結題,參與。 5.香港大學浙江科學技術研究院,科研創新團隊啟動基金, EE403, 地下水對太湖水量與生源物質及其對環境與生態影響,2018-06 至 2019-12, 已結題,參與。 6.首都師范大學-中國地質環境監測研究院合作項目:利用GRACE重力衛星研究汾渭盆地地下水儲量變化,2015-2017,已結題,參與。 |
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五、主要研究成果 |
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一作或通訊作者(*)論文: (1)Long, Y. N., S. T. Zhou, B. Deng, Huang, Z. Y.*, Y. J. Shen, Y. Pan, Y. G. Chen, Q. L. Hu. 2025. Meteorological and hydrological drought characteristics and response to climatic indices in the Dongting Lake Basin from multi-source data. Journal of Hydrology: Regional Studies, 61, 102721. (2)黃志勇*, 古天豪, 隆院男, 陳緒慧, 楊享運, 劉軒宇, 黃銘昊, 胡慶麟, 周思婷, 2024. 洞庭湖流域陸地水儲量變化長時序重構及水文干旱特征[J]. 地球科學進展,39(12): 1285-1298. (3)黃志勇*, 蔣培琰, 隆院男, 龐凱夫, 汪雨菡, 周呂思, 2025.湘江流域地下水干旱特征研究[J]. 長沙理工大學學報(自然科學版), 22(3): 153-168. (4)Huang, Z. Y., P. J.-F. Yeh, J. J. Jiao*, X. Luo, Y. Pan, Y. N. Long, L. Q. Zheng, C. Zhang, 2023, A new approach for assessing groundwater recharge by combining GRACE and baseflow with case studies in karst areas of southwest China, Water Resources Research, 59, e2022WR032091, doi: 10.1029/2022WR032091. (5)Deng B, K. Xiong , Huang, Z. Y.*, C. Jiang, J. Liu, W. Luo, Y. Xiang, 2022, Monitoring and Predicting Channel Morphology of the Tongtian River, Headwater of the Yangtze River Using Landsat Images and Lightweight Neural Network. Remote Sensing, 14(13): 3107. (6)Huang, Z. Y., J. J. Jiao*, X. Luo, Y. Pan, and T. Y. Jin, 2021, Drought and flood characterization and connection to climate variability in Pearl River Basin, Southern China using long-term GRACE and reanalysis data, Journal of Climate, 34(6), 2053-2078, doi: 10.1175/JCLI-D-20-0332.1. (7)Huang, Z. Y., J. J. Jiao*, X. Luo, Y. Pan, and C. Zhang, 2019. Sensitivity analysis of leakage correction of GRACE data in Southwest China using a-priori model simulations: inter-comparison of spherical harmonics, mass concentration and in situ observations. Sensors, 19(14), 3149. doi: 10.3390/s19143149. (8)Huang, Z. Y., Pat J.-F. Yeh*, Y. Pan*, J. J. Jiao, H.L. Gong, X.J. Li, A. Güntner, Y.Q. Zhu, C. Zhang, and L.Q. Zheng, 2019, Detection of large-scale groundwater storage variability over the karstic regions in Southwest China, Journal of Hydrology,569, 409-422, doi: 10.1016/j.jhydrol.2018.11.071. (9)Huang, Z. Y., Y. Pan*, H. L. Gong, P. J.-F. Yeh, X. Li, D. Zhou and W. Zhao (2015), Subregional-scale groundwater depletion detected by GRACE for both shallow and deep aquifers in North China Plain. Geophysical Research Letters, 42, 1791-1799, doi: 10.1002/2014GL062498. 合作論文: (1)Li, H. X., Y. Pan*, P. J.-F. Yeh*, C. Zhang, Z. Y. Huang, L. Xu, H. G. Wang, L. H. Zeng, H. L. Gong, J. S. Famiglietti, 2024, A new GRACE downscaling approach for deriving high-resolution groundwater storage changes using ground-based scaling factors, Water Resources Research, 60, e2023WR035210. https://doi.org/10.1029/2023WR035210. (2)Ma, Y. L., Y. Pan, C. Zhang, P. J.-F. Yeh, L. Xu, Z. Y. Huang, H. L. Gong, 2024, Improved Estimates of Sub-regional Groundwater Storage Anomaly using Coordinated Forward Modeling, Water Resources Research, 60, e2023WR036105. https://doi.org/10.1029/2023WR036105. (3)Yang, J. W., Y. Pan, C. Zhang, H. L. Gong, L. Xu, Z. Y. Huang, S. L. Lu, 2024, Comparison of groundwater storage changes over losing and gaining aquifers of China using GRACE satellites, modeling and in-situ observations, Science of the Total Environment, 938, 173514. (4)Liang, W. Z., X. G. Chen, Z. L. Chen, P. Y. Zhu, Z. Y. Huang, J. S. Li, Y. T. Wang, L. Li, D. He, 2024, Unraveling the impact of Spartina alterniflora invasion on greenhouse gas production and emissions in coastal saltmarshes: New insights from dissolved organic matter characteristics and surface-porewater interactions. Water Research, 262, 122120. (5)隆院男,黃崇榮,李正最,魏永強,宋昕熠*,黃志勇, 2023, 基于Copula函數的湘江流域氣象干旱向水文干旱傳播特性,農業工程學報,39(21):66-78. (6)Long Y. N.*, , W. W. Chen, C. B. Jiang, Z. Y. Huang, S. X. Yan, X. F. Wen, 2023, Improving streamflow simulation in Dongting Lake Basin by coupling hydrological and hydrodynamic models and considering water yields in data-scarce areas, Journal of Hydrology: Regional Studies. DOI: 10.1016/j.ejrh.2023.101420 (7)Zhang, C., Q. Y. Duan*, P. J.-F. Yeh, Y. Pan, H. L. Gong, H. Moradkhanih, W. Gong, X. H. Lei, W. H. Liao, L. Xu, Z. Y. Huang, L. Q, Zheng, X. R. Guo, 2021, Sub-regional groundwater storage recovery in North China Plain after the South-to-North water diversion project. Journal of Hydrology, 597, 126156. doi: 10.1016/j.jhydrol.2021.126156. (8)Zhang, C., Q. Duan*, P. J.-F. Yeh, Y. Pan, H. Gong, W. Gong, Z. Di, X. Lei, W. Liao, Z. Y. Huang, and L. Zheng, X. Guo, 2020, The effectiveness of the South‐to‐North Water Diversion Middle Route Project on water delivery and groundwater recovery in North China Plain. Water Resources Research, 56(10). doi: 10.1029/2019WR026759. (9)Zheng, L., Y. Pan*, H. Gong, Z. Y. Huang, and C. Zhang, 2020. Comparing Groundwater Storage Changes in Two Main Grain Producing Areas in China: Implications for Sustainable Agricultural Water Resources Management. Remote Sensing, 12(13), p.2151. doi: 10.3390/rs12132151. (10)Yin, W., T. Li*, W. Zheng*, L. Hu, S.-C. Han, N. Tangdamrongsub, M. ?prlák, and Z. Y. Huang, 2020. Improving regional groundwater storage estimates from GRACE and global hydrological models over Tasmania, Australia. Hydrogeology Journal, 28, 1809–1825. doi: 10.1007/s10040-020-02157-3. (11)Li, S., J. Chen, J. Xiang, Y. Pan, Z. Y. Huang, and Y. Wu, 2019. Water level changes of Hulun Lake in Inner Mongolia derived from Jason satellite data. Journal of Visual Communication and Image Representation, 58, 565-575. doi: 10.1016/j.jvcir.2018.12.031. (12)Gong, H., Y. Pan*, L. Zheng, X. Li, L. Zhu, C. Zhang, Z. Y. Huang, Z. Li, H. Wang, C. Zhou, (2018), Long-term groundwater storage changes and land subsidence development in the North China Plain (1971-2015), Hydrogeology Journal, doi:10.1007/s10040-018-1768-4. (13)Pan, Y., C. Zhang*, H. L. Gong, P. J.-F. Yeh, Y. Shen, Y. Guo, Z. Y. Huang and X. Li (2017), Detection of human-induced evapotranspiration using GRACE satellite observations in the Haihe River Basin of China, Geophysical Research Letters, 44(1), 190–199, doi: 10.1002/2016GL071287. (14)束秋妍,潘云*,宮輝力,黃志勇,鄭龍群,2018, 基于GRACE的華北平原地下水儲量時空變化分析, 國土資源遙感,30(2):132-137. (15)宮輝力*,李小娟,潘云,朱琳,張有全,陳蜜,陳蓓蓓,柯櫻海,王彥兵,高明亮,黃志勇,李勇永,2017,京津冀地下水消耗與區域地面沉降演化規律,中國科學基金,(1):72-77. (邀稿) |
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六、教育教學 |
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主講課程: 水文遙感與地理信息系統、移動與WebGIS開發 指導碩士生(*合作導師): 周思婷(2022-2025*)、蔣沂澄(2022-2025*)、胡慶麟(2023-2026*)、龍彩欣(2023-2026)、 葉俊杰(2024-2027)、萬宇豪(2024-2027) 指導本科生: 古天豪,黃銘昊,劉軒宇,楊享運. 基于重構的重力衛星數據監測南方巖溶區長期水文干旱及對氣候變化的響應, 大學生創新訓練項目, 推薦省級。 蔣培琰,龐凱夫,汪雨菡,周呂思. 利用衛星重力探測湘江流域地下水儲量動態及干旱特征,大學生創新訓練項目, 推薦校級。 古天豪, 龐凱夫, 蔣培琰, 周思婷.中國陸地水儲量與植被覆蓋時空變化及其時滯性特征,2023易智瑞杯中國大學生GIS軟件開發競賽·遙感應用組,二等獎,中國測繪學會, 并被評為“優秀指導教師”。 白天賜,余雨甜,屈歡,趙翔. 長江流域水文干旱特征及其對氣候因子的響應。2024易智瑞杯中國大學生GIS軟件開發競賽?遙感應用組,二等獎,中國測繪學會。 譚震乾,謝寶鋒,厲思維,唐文勇,干早背景下長江流域陸地水儲量與植被的響應關系。2024 易智瑞杯中國大學生 GIS 軟件開發競賽:地圖故事組比賽中,榮獲優勝獎,中國測繪學會。 |
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七. 學術兼職與學術活動 |
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學術兼職: 香港氣象學會會員(2021-2022) Water Resources Research, Journal of Hydrology, Scientific Report, Geocarto International, All Earth,地理科學,等期刊審稿人。 特邀報告: 黃志勇(2023),西南巖溶區地下水儲量變化衛星重力監測與探析,中國科學院亞熱帶農業生態 研究所·環江喀斯特站,2023年青促會學術沙龍(第三十期),12月9日。 Huang, Z. Y. (2022), Monitoring Groundwater Storage Dynamics Using Satellite Gravimetry (利用衛星重 力監測地下水儲量動態), ARMA × Friday Seminar, Department of Civil Engineering, Monash University, Australia, 線上英文口頭報告 (報告視頻鏈接:https://pan.baidu.com/s/1LIW8UO72afw2s3GwGr0HtA, 提取碼:1fyd) 大會報告: 黃志勇,利用重力衛星監測典型巖溶區地下水儲量動態,第一屆中國重力衛星測量與科學應用年度論壇暨第六屆“衛星重力與水文學”論壇,深圳,南方科技大學,2023.7.28,大會報告。 黃志勇,一種聯合重力衛星和基流分割評估地下水補給的新方法:以我國西南巖溶區為例, 2022,國際華人青年水科學協會(CYWater)第十屆夏季會議線上中文口頭報告。 Huang, Z., Y. Pan, P. J.-F. Yeh, D. Long, H. Gong, A. Güntner, et al., (2016), Monitoring groundwater storage changes in a karst area of Southwest China using GRACE satellites: challenges and opportunities, 1st Workshop on Satellite Gravity and Hydrology, Beijing, China. (英語口頭報告) |
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會議摘要: Huang Z. Y., Jiu Jimmy Jiao, Xin Luo, Yun Pan, Taoyong Jin, 2021, Drought and Flood Characterization and Connection to Climate Variability in the Pearl River Basin in Southern China Using Long-Term GRACE and MERRA-2 Reanalysis Data: the Role of Reservoir Storage Change, In AGU Fall Meeting, Conference Abstracts with Poster. Huang Z. Y., Jiu Jimmy Jiao, Xin Luo, 2021, Have GRACE Satellites Detected Interbasin Groundwater Flow in Karst Areas of Southwest China? In AGU Fall Meeting, Conference Abstracts with Poster. Huang, Z., J. J. Jiao, X. Luo, and Y. Pan, 2020, Drought and flood monitoring and connection to climate variability in Pearl River Basin, Southern China using GRACE data. In EGU General Assembly Conference Abstracts (p. 4600). Zheng, L., Y. Pan*, H. Gong, P. J.-F. Yeh, C. Zhang, Z. Huang, 2016, Long-term groundwater storage changes in Haihe River Basin, China, from GRACE and in situ observations, the 43rd IAH congress, Abstracts with poster. Yeh, P. J.-F*., Y. Pan, and Z. Huang, 2015, On the Consistency between GRACE, In-situ Observed and Modeled Terrestrial Water Storage, AGU Fall Meeting, Abstracts. Pan, Y*, Z. Huang, P. J.-F. Yeh and H. Gong, 2014, GRACE-Derived groundwater depletion from both shallow and deep aquifers within North China Plain, AGU Fall Meeting, Abstracts with poster, 1, 0579. Pan, Y*, Z. Huang and H. Gong, 2013, Remotely-sensed groundwater depletion in North China plain: evidences for enhanced lateral recharge, AGU Fall Meeting, Abstracts with poster, 1, 1506. |
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誠摯歡迎水文、水利、地理、遙感、測繪、生態、數學、計算機、地質等相關學科、專業或方向的同學們報考!!! |
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