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姓名 高光耀 性别:
职称 研究员 学历 博士
电话 010-62841239 传真: 010-62841239
Email: gygao@rcees.ac.cn 邮编: 100085
地址 北京市海淀区双清路18号
简历:

高光耀,城市与区域生态国家重点实验室研究员。2004和2009年分别于武汉大学和中国农业大学获学士和博士学位,2008年1月至2009年1月在美国德州农工大学地质与地球物理系访问学习。2009年7月至今在中国科学院生态环境研究中心景观格局与生态过程研究组工作,2011年3月至5月在美国西密歇根大学地理系访问学习,2016年6月至2017年6月在美国伊利诺伊大学厄巴纳-香槟分校地理与GIS系访问学习。主要研究方向是生态水文和流域水文,重点开展生态恢复和气候变化背景下土壤水文过程、植被-水分关系和流域水沙变化等方面的研究工作。主持或参与各类科研项目10余项,发表论文50余篇,其中SCI论文40余篇,获2010年教育部自然科学二等奖1项(排名第六),是2016年度中国科学院杰出科技成就奖的主要完成者,2016年入选中国科学院青年创新促进会,2018年获国家优秀青年基金资助。

研究方向:

生态水文、区域生态、景观生态

招生方向:
生态水文、区域生态、景观生态,欢迎生态学、水文学、地理学、遥感与地理信息系统、土壤学等专业学生报考
专家类别:
正高级
职务:
社会任职:

中国生态学会会员、中国地理学会会员
美国地球物理联盟会员、欧洲地球科学联盟会员、亚洲大洋洲地球科学学会会员

承担科研项目情况:

[1] 国家优秀青年科学基金项目,半干旱区土壤-水文-植被相互作用,2019.1~2021.12
[2] 国家重点研发计划课题,黄土高原生态修复模式的格局-结构-功能关系,2016.7~2020.12
[3] 国家重点研发计划专题,全球重点流域径流变化规律及影响因素,2017.7~2022.6
[4] 国家自然科学基金面上项目,黄土丘陵区典型流域水沙变化的时空尺度特征与驱动机制研究,2015.1~2018.12
[5] 国家自然科学基金重大研究计划集成项目课题,黑河中下游生态情景制定与分析,2015.1~2018.12
[6] 国家自然科学基金重大项目专题,黄土高原草地和灌木生态系统与土壤水分相互作用机理研究,2014.1~2018.12
[7] 国家自然科学青年基金,黄土丘陵坡面土地覆被格局的水土流失机理与格局指数研究,2012.1-2014.12

获奖及荣誉:

2018 国家基金委优秀青年基金
2016 中国科学院杰出科技成就奖(主要完成人)
2016 中国科学院青年创新促进会会员
2010 教育部自然科学二等奖(排名第六)

代表论著:

[1] Shen Qin, Gao Guangyao*, Han Fei, Xiao Feiyan, Ma Ying, Wang Shuai, Fu Bojie, 2018. Quantifying the effects of human activities and climate variability on vegetation cover chang in a hyper-arid endorheic basin. Land Degradation & Development, 29, 3294-3304.
[2] Gao Guangyao, Shen Qin, Zhang Yan, Pai Naiqing, Ma Ying, Jiang Xiaohui, Fu Bojie*, 2018. Determining spatio-temporal variations of ecological water consumption by natural oases for sustainable water resources allocation in a hyper-arid endorheic basin. Journal of Cleaner Production, 185, 1-13.
[3] Gao Guangyao, Fu Bojie*, Zhang Jianjun, Ma Ying, Murugesu Sivapalan, 2018. Multiscale temporal variability of flow-sediment relationships during the 1950s-2014 in the Loess Plateau, China. Journal of Hydrology, 563, 609-619.
[4] Zhang Jianjun, Gao Guangyao*, Fu Bojie, Zhang Lu, 2018. Explanation of climate and human impacts on sediment discharge change in Darwinian hydrology: derivation of a differential equation. Journal of Hydrology, 559, 827-834.
[5] Han Xiaoyang, Gao Guangyao*, Chang Ruiying, Li Zongshan, Ma Ying, Wang Shuai, Wang Cong, Fu Bojie, 2018. Changes in soil organic and inorganic carbon stocks in deep profiles following cropland abandonment along a precipitation gradient across the Loess Plateau of China. Agriculture, Ecosystems & Environment, 258, 1-13.
[6] Tuo Dengfeng, Gao Guangyao*, Chang Ruiying, Li Zongshan, Ma Ying, Wang Shuai, Wang Cong, Fu Bojie, 2018. Effects of revegetation and precipitation gradient on soil carbon and nitrogen variations in deep profiles on the Loess Plateau of China. Science of the Total Environment, 626, 399-411.
[7] Gao Guangyao*, Zhang Jianjun, Liu Yu, Ning Zheng, Fu Bojie, Murugesu Sivapalan, 2017. Spatio-temporal patterns of the effects of precipitation variability and land use/cover changes on long-term changes in sediment yield in the Loess Plateau, China. Hydrology and Earth System Sciences, 21, 4363-4378.
[8] Shen Qin, Gao Guangyao*, Lü Yihe, Wang Shuai, Jiang Xiaohui, Fu Bojie, 2017. River flow is critical for vegetation dynamics: Lessons from multi-scale analysis in a hyper-arid endorheic basin. Science of the Total Environment, 603-604, 290-298.
[9] Yuan Chuan, Gao Guangyao*, Fu Bojie, 2017. Comparisons of stemflow and its bio-/abiotic influential factors between two xerophytic shrub species. Hydrology and Earth System Sciences, 21, 1421-1438.
[10] Gao Guangyao, Fu Bojie*, Wang Shuai, Liang Wei, Jiang Xiaohui, 2016. Determining the hydrological responses to climate variability and land use/cover change in the Loess Plateau with the Budyko framework. Science of the Total Environment, 557-558, 331-342.
[11] Gao Guangyao, Ma Ying*, Fu Bojie, 2016. Temporal variations of flow-sediment relationships in a highly erodible catchment of the Loess Plateau, China. Land Degradation & Development, 27, 758-772.
[12] Gao Guangyao, Ma Ying*, Fu Bojie, 2016. Multi-temporal scale changes of streamflow and sediment load in a loess hilly watershed of China. Hydrological Processes, 30, 365-382.
[13] Shen Qin, Gao Guangyao*, Hu Wei, Fu Bojie, 2016. Spatial-temporal variability of soil water content in a cropland-shelterbelt-desert site in an arid inland river basin of Northwest China. Journal of Hydrology, 540, 873-885.
[14] Yuan Chuan, Gao Guangyao*, Fu Bojie, 2016. Stemflow of a xerophytic shrub (Salix psammophila) in northern China: Implication for beneficial branch architecture to produce stemflow. Journal of Hydrology, 539, 577-588.
[15] Li Danfeng, Gao Guangyao*, Lü Yihe, Fu Bojie, 2016. Multi-scale variability of soil carbon and nitrogen in the middle reaches of the Heihe River basin, northwestern China. Catena, 137, 328-339.
[16] Shen Qin, Gao Guangyao*, Fu Bojie, Lü Yihe, 2015. Responses of shelterbelt stand transpiration to drought and groundwater variations in an arid inland river basin of Northwest China. Journal of Hydrology, 531, 738-748.
[17] Shen Qin, Gao Guangyao*, Fu Bojie, Lü Yihe, 2015. Sap flow and water use sources of shelter-belt trees in an arid inland river basin of Northwest China. Ecohydrology, 8, 1446-1458.
[18] Shen Qin, Gao Guangyao*, Fu Bojie, Lü Yihe, 2014. Soil water content variations and hydrological relations of the cropland-treebelt-desert land use pattern in an oasis-desert ecotone of the Heihe River Basin, China. Catena, 123, 52-61.
[19] Gao Guangyao, Fu Bojie*, Zhan Hongbin Zhan, Ma Ying, 2013. Contaminant transport in soil with depth-dependent reaction coefficients and time-dependent boundary conditions. Water Research, 47, 2507-2522.
[20] Gao Guangyao, Fu Bojie*, Lü Yihe, Liu Yu, Wang Shuai, Zhou Ji, 2012. Coupling the modified SCS-CN and RUSLE models to simulate hydrological effects of restoring vegetation in the Loess Plateau of China. Hydrology and Earth System Sciences, 16, 2347-2364.
[21] Gao Guangyao, Zhan Hongbin*, Feng Shaoyuan, Fu Bojie, Huang Guanhua, 2012. A mobile-immobile model with an asymptotic scale-dependent dispersion function. Journal of Hydrology, 424-425, 172-183.
[22] Gao Guangyao, Zhan Hongbin*, Feng Shaoyuan, Fu Bojie, Ma Ying, Huang Guanhua, 2010. A new mobile-immobile model for reactive solute transport with scale-dependent dispersion. Water Resources Research, 46, W08533, doi:10.1029/2009WR008707.
[23] Gao Guangyao, Zhan Hongbin, Feng Shaoyuan*, Huang Guanhua, Mao Xiaomin, 2009. Comparison of alternative models for simulating anomalous solute transport in a large heterogeneous soil column. Journal of Hydrology, 377(3-4), 391-404.
[24] Gao Guangyao, Feng Shaoyuan*, Zhan Hongbin, Huang Guanhua, Mao Xiaomin, 2009. Evaluation of anomalous solute transport in a large heterogeneous soil column with mobile-immobile model. Journal of Hydrologic Engineering, 14(9), 966-974.

 


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