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田勇
研究副教授
0755-88018016

背景介紹:
田勇,1983年3月出生。2005年本科畢業(yè)于武漢大學(xué),2007年和2012年先后于華中科技大學(xué)獲得碩士和博士學(xué)位,2013年進(jìn)入北京大學(xué)工學(xué)院從事博士后研究,2015年7月入職南方科技大學(xué)環(huán)境科學(xué)與工程學(xué)院。田勇博士研究興趣包括地表水-地下水耦合模擬、三維水動(dòng)力數(shù)值計(jì)算、流域水資源綜合管理、環(huán)境信息科學(xué)、GIS/RS與水環(huán)境科學(xué)的交叉應(yīng)用等,擁有多年的水環(huán)境專業(yè)軟件開發(fā)經(jīng)驗(yàn),在流域水資源管理決策支持系統(tǒng)、三維科學(xué)可視化、數(shù)值建模等領(lǐng)域積累了豐富的軟件開發(fā)成果。研究成果已發(fā)表在Water Resources Research, Environmental Modelling & Software等水資源領(lǐng)域和環(huán)境建模領(lǐng)域的頂尖期刊,并在AGU、EGU等重要國際學(xué)術(shù)會(huì)議上展示研究成果,獲得同行充分認(rèn)可。

 

研究領(lǐng)域:

流域尺度地表水-地下水耦合模擬與生態(tài)水文過程
環(huán)境信息科學(xué)與三維可視化
水動(dòng)力水質(zhì)數(shù)值模擬

 

教育背景:

2008/09-2012/06:華中科技大學(xué),系統(tǒng)分析與集成專業(yè),理學(xué)博士
2005/09-2007/12:華中科技大學(xué),水利水電工程專業(yè),工學(xué)碩士
2001/09-2005/06:武漢大學(xué),港口海岸及治河工程專業(yè),工學(xué)學(xué)士

 

工作經(jīng)歷:
2021/05 - 至今:南方科技大學(xué)環(huán)境科學(xué)與工程學(xué)院,研究副教授

2015/07- 2021/05:南方科技大學(xué)環(huán)境科學(xué)與工程學(xué)院,研究助理教授
2013/01-2015/06:北京大學(xué),工學(xué)院,能源與資源工程系,博士后

 

期刊論文:
[1] Tian, Y., Zheng, Y., Zheng, C., Xiao, H., Fang, J., Zou, S., Wu, B., Yao, Y., Zhang, A., Liu, J. Exploring scale-dependent ecohydrological responses in a large endorheic river basin through integrated surface water-groundwater modeling. Water Resources Research, 2015, 51(6), 4065–4085.
[2] Tian Y., Y. Zheng, B. Wu, X. Wu, J. Liu, C. Zheng. Modeling surface water-groundwater interaction in arid and semi-arid regions with intensive agriculture. Environmental Modelling & Software, 2015, 63(0): 170-184.
[3] Wu B., Y. Zheng, X. Wu, Tian Y., F. Han, J. Liu, C. Zheng. Optimizing water resources management in large river basins with integrated surface water-groundwater modeling: A surrogate-based approach. Water Resources Research, 2015, doi:10.1002/2014 WR016653.
[4] Luo X., Y. Zheng, Z. Lin, B. Wu, F. Han, Y. Tian, W. Zhang, and X. Wang. Evaluating potential non-point source loading of PAHs from contaminated soils: A fugacity-based modeling approach, Environmental Pollution, 2015, 196(0), 1-11.
[5] Yao Y., C. Zheng, Y. Tian, J. Liu, Y. Zheng. Numerical modeling of regional groundwater flow in the Heihe River Basin, China: Advances and new insights. Science China Earth Sciences, 2015, 58(1): 3-15.
[6] Wu X., Y. Zheng, B. Wu, Y. Tian, F. Han, C. Zheng. Optimizing conjunctive use of surface water and groundwater for irrigation to address humannature water conflicts: a surrogate modeling approach. Agricultural Water Management, 2015, accepted.
[7] Tian Y., Y. Zheng, C. Zheng. Development of a 3D visualization tool for integrated surface water and groundwater modeling. Computers & Geosciences, 2015, revised.
[8] Wu B., Y. Zheng, Tian Y., F. Han, C. Zheng. A surrogate modeling approach to assessing the value of information for integrated hydrological modeling. Water Resources Research, 2015, under review.
[9] Wu B., Y. Zheng, Y. Tian, X. Wu, Y. Yao, F. Han, J. Liu, C. Zheng. Systematic assessment of the uncertainty in integrated surface water-groundwater modeling based on the probabilistic collocation method. Water Resources Research, 2014, doi:10.10 02/2014WR015366.
[10] Huang M., Y. Tian*. A novel visual modeling system for time series forecasting: application to the domain of hydrology. Journal of Hydroinformatics, 2013, 15(1): 21-37.
[11] Tian Y., M. Huang. Enhance discovery and retrieval of geospatial data using SOA and Semantic Web technologies. Expert systems with applications, 2012, 39(16): 12522–12535.
[12] Huang M., D.R. Maidment, Y. Tian. Using SOA and RIAs for water data discovery and retrieval. Environmental Modelling & Software, 2011, 26(11): 1309-1324.
[13] 姚瑩瑩, 劉杰, 張愛靜, 李希, 田勇,鄭春苗. 黑河流域河道徑流和人類活動(dòng)對地下水動(dòng)態(tài)的影響. 第四紀(jì)研究, 2014, 34(5): 973-981.
[14] 黃牧濤, 田勇. 湖泊三維流場數(shù)值模擬及其在東湖的應(yīng)用. 水動(dòng)力學(xué)研究與進(jìn)展A輯, 2014, 01: 114-124.
[15] 黃牧濤, 田勇. 組合智能決策支持系統(tǒng)研究及其應(yīng)用. 系統(tǒng)工程理論與實(shí)踐, 2007, 27(4): 114-119.

 

國際會(huì)議:
[1] Tian Y., Y. Zheng, C. Zheng, B. Wu, X. Wu. Integrated surface water-groundwater modeling for interpreting ecohydrological processes in large arid and semi-arid river basins. EGU General Assembly 2015, Vienna, Austria, April 12-17, 2015.
[2] Tian Y. An integrated modeling approach to understanding the complex water cycle in large inland basins. CUAHSI 2014 Biennial Colloquium, Shepherdstown, WV, USA, July 28-30, 2014.
[3] Tian Y., B. Wu, Y. Zheng. Modeling the Surface Water-Groundwater Interaction in Arid and Semi-Arid Regions Impacted by Agricultural Activities. 2013 AGU Fall Meeting, San Francisco, CA, USA, December 10-15, 2013.
[4] Zheng C., A. Zhang, Y. Tian, Y. Zheng, J. Liu. Modeling the Hydrological Response to Climate Change in an Arid Inland River Basin. 2014 AGU Fall Meeting, San Francisco, CA, USA, December 15-19, 2014.
[5] Huang, M., Y. Tian. Semantic Web Technologies Based Geospatial Services Discovery and Data Retrieval. Proceedings of the 2011 International Conference on Informatics, Cybernetics, and Computer Engineering, Melbourne, Australia, November 19-20, 2011, pp. 35-43.
[6] Huang M., Y. Tian. RIAs and OGC Web Services Based Geospatial Data Searching and Visualization. Proceedings of 2nd International Conference on Information Engineering and Computer Science (ICIECS), Wuhan, China, December 25-26, 2010, pp. 1-4.
[7] Huang M., Y. Tian. Hydrologic data exploration and river flow forecasting using self-organizing map and support vector regression. Proceedings Fourth International Workshop on Advanced Computational Intelligence (IWACI), Wuhan, China, October 19-21, 2011, pp. 343-348.

 

書籍章節(jié):
[1] Zheng Y., F. Han, Y. Tian, B. Wu, and Z. Lin. Chapter 5 - Addressing the Uncertainty in Modeling Watershed Nonpoint Source Pollution, in Developments in Environmental Modelling, edited by N.-B. C. Sven Erik J?rgensen and X. Fu-Liu, 2015, pp. 113-159, Elsevier.

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