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个人简介

教育背景 2003.09~2006.07 博士(地理学)中国科学院地理科学与资源研究所 2000.09~2003.07 硕士(农学)中国农业科学院农业与可持续发展研究所 和山西农业大学联合培养 1996.09~2000.07 本科(农学)山西农业大学农学院 工作经历 2018.09~今 研究副教授 南方科技大学环境与工程学院 2008.11~2018.08 副研究员/室主任 上海市(区域)气候中心气候变化室 2006.08~2008.11 工程师 上海市(区域)气候中心生态与农气室 2007.03~2007.08 博士后START Fellow 国际应用系统研究所(IIASA)

研究领域

区域气候模式模拟及应用 城市洪涝风险模拟及评估 农业生态系统模型开发及应用 气候变化影响适应决策研究

近期论文

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Hanqing Xu, Xiaogang He, Zhan Tian*, Laixiang Sune, Dongli Fan, Günther Fischer, Edward Pope, Chris Kent, Jun Wang. 2018. Increased irrigation water requirement challenges affecting the water-food nexus in the Northeast Farming Region of China. Agricultural Water Management. (accepted, IF= 3.366, Q1) Zhan Tian, JI Yinghao, Gu Tingting et.al(2018). Changes in production potentials of rapeseed in the Yangtze River Basin of China under climate change: A multi-model ensemble approach, Journal of Geographical Sciences. 28(11):1700-1714 (IF= 2.364,Q2) Jun Shi, Linli Cuim Kangmin Wen Zhan Tian etal (2018).Trends in the consecutive days of temperature and precipitation extremes in China during 1961-2015,Environmental Research. (IF= 3.835, Q2),161:381-391 Zhong, H, L Sun, G Fischer, Zhan Tian, H v Velthuizen, Z Liang.(2018)“Mission Impossible? Maintaining regional grain production level and recovering local groundwater table by cropping system adaptation across the North China Plain.” Agricultural Water Management. (IF= 3.366, Q1), 193:1-12. Zhan Tian, Yilong Niu, Laixiang Sun, Jia Deng(2018), Maintaining Rice Production While Mitigating Methane and Nitrous Oxide Emissions from Paddy Fields in China: Evaluating Tradeoffs by Using Coupled Agricultural Systems Models. Agricultural Systems. (IF=3.494, Q1), 159:175-186. Xuan Yang, Zhan Tian*, Laixiang Sun(2017). The Impacts of Increased Heat Stress Events on Wheat Yield under Climate Change in China. Climatic Change. (IF=3.496, Q1), Fan D L, Ding Q Y, Zhan Tian*, etal(2017), A Cross-scale Model Coupling Approach to Simulate the Risk-reduction Effect of Natural Adaptation on Soybean Production under Climate Change. Human and Ecological Risk Assessment. (IF=1.560, Q3), 23(3):426-440. Zhuoran Liang, Zhan Tian*, Laxiang Sun etal (2016), Heat wave, electricity rationing, and trade-offs between environmental gains and economic losses: The example of Shanghai. Applied Energy. (IF=7.182,Q1), 184:951-959. Zhuoran Liang, TingTing Gu,Zhan Tian*, Honglin Zhong(2015), Agro-climatic Adaptation of Cropping System under Climate Change in Shanghai. Front. Earth Sci. (IF=1.051, Q4), 9(3): 487–496. Zhan Tian, Liang Z, Laxiang Sun etal(2015), Agriculture under Climate Change in China: Mitigate the Risks by Grasping the Emerging Opportunities. Human and Ecological Risk Assessment. (IF=1.560, Q3), D21: 1259–1276. Zhan Tian, Honglin Zhong, Laxiang Sun etal(2014), Improving Performance of Agro-ecological Zone (AEZ) Modeling by Cross-scale Model Coupling: An Application to Japonica Rice Production in Northeast China, Ecological Modeling. (IF=2.363,Q2), 290:155–164. Zhan Tian, Xuchao Yang, Laxiang Sun etal (2014), Agro-climatic Conditions in China under Climate Change Scenarios Projected from Regional Climate Models. International Journal of Climatology. (IF=3.760,Q1), 34: 2988–3000. Xuchao Yang, Zhan Tian* et al. (2013). Thermal growing season trends in east China, with an emphasis on urbanization effect. International Journal of Climatology, (IF=3.760, Q1), 33:2402-2412. Zhan Tian, Honglin Zhong, Runhe Shi, Laixiang Sun, Günther Fischer, Zhuoran Liang. (2012). Estimating potential yield of wheat production in China based on cross-scale data-model fusion. Front. Earth Sci, (IF=1.051, Q4), 6(4): 364-372. Zhan Tian, Guiying Cao, Jun Shi et al (2012). Urban Transformation of a Metropolis and its Environmental Impacts: A Case Study in Shanghai. Environment Science and Pollution Research, (IF=3.741, Q2), 19:1364–1374. Zhao H. Y., Gao G., Yan X. D., Zhang Q., Hou M. T., Zhu Y. Y., Zhan Tian. (2011). Risk Assessment of Agricultural Drought using the CERES-Wheat Model: a Case Study of Henan Plain. China. Climate Research, (IF=1.587, Q3), 50(2-3):247-256.

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