科研项目(部分): [1]国家重点研发计划(2017YFC0504704),2018-2021; [2]国家自然基金(51169002),2013-2016; [3]甘肃省科技重大专项项目(1203FKDA035),2013-2016; [4]2026年省委组织部省级重点人才项目(2026RCXM014),2026-2027; [5]省委组织部100名陇原人才扶持计划(2014,98),2014-2018; [6]省委组织部省级重点人才项目(005273820013),2019-2022; [7]甘肃省科技支撑计划(1204NKCA087),2022-2025; [8]甘肃省重点研发计划(22YF7FA165),2016-2019; [9]甘肃省创新基地和人才计划(64585101312),2022-2024; [10]2019年甘肃省重点研发计划(808137112031),2019-2021; [11]甘肃省水利科学实验研究及技术推广计划(2019,77),2019-2022; [12]甘肃省省级水资源费项目(2017,293),2018-2022; [13]甘肃省水利重点科研计划(2015,55),2015-2019; [14]省委组织部省级重点人才(团队)项目(111125504017),2022-2026; [15]2023年兰州理工大学研究生课程思政示范项目(KCSZ-SF-202302606),2024-2026。 学术成果(部分代表性排名第一论文): [1]Yayu Gao, et al. Revealing spatiotemporal heterogeneity of water conservation and its drivers: Enlightenment to water ecology protection and restoration[J]. Journal of Environmental Management, 2024, 370: 122517. [2]Yayu Gao, et al. Analyzing Spatiotemporal Changes and Drivers of the Water Yield Service in the Malian River Basin on the Loess Plateau, China[J]. ACS ES&T Water, 2025(7): 2-16. [3]Yayu Gao, et al.Study on the Available Amounts of Rainwater/Stormwater Resources in Ungauged Basin in Semi-Arid Region of the Loess Plateau[J]. Polish Journal of Environmental Studies, 2025, 34(3): 3129-3146. [4]Yayu Gao, et al. Designing water-saving ecological check dam sites by a system optimization model in a region of the loess plateau, Northwest China[J]. Ecological Informatics, 2022, 72, 101887. [5]Yayu Gao, et al. Building check dams systems to achieve water resource efficiency: modelling to maximize water and ecosystem conservation benefits[J]. Hydrology Research, 2020, 51(6), 1409-1436. [6]Yayu Gao, et al.Research on the Response of Water Quality to Human Activities in Shuangta Reservoir[C]. 2011 International Symposium on Water Resource and Environmental Protection. May, 2011: 638-641. [7]Yayu Gao, et al. Application of Evaluation Reservoir Water Quality with Improved PCA Method in Shulehe River Basin[C]. Proceedings of 2012 IEEE 3rd International Conference on Emergency Management and Management Sciences. August, 2012: 316-319. [8]高雅玉等.马莲河下游产水量时空演变特征[J].干旱区研究,2024(4):2-13. [9]高雅玉等.黄土高原半干旱区淤地坝安全监测方法[J].水土保持研究,2024(31):59-66. [10]高雅玉等.黄土高原半干旱区流域产水功能时空变化特征[J].生态与农村环境学报, 2025, 41(04): 460-472. 部分代表性排名第一专利与软件著作权: [1]节水-生态型淤地坝系效益最大化模型系统(2021SR0068953); [2]节水-生态型淤地坝系建设时序模型系统(2021SR0316744); [3]马莲河流域水资源优化管理模型系统(2021SR0316679); [4]用于道路雨洪治理的雨水续集利用装置及其雨水处理方法(202210162387.0); [5]一种城镇屋顶雨水和路面雨水资源综合利用系统(ZL202123164251.8); [6]灯芯式雨洪资源蓄集利用系统(201610114053.5); [7]生态水箱式城市道路雨水蓄集利用系统(ZL201420277855.4); [8]海绵式道路雨洪资源蓄集利用系统(ZL201620154139.6); [9]一种梯田用灯芯式生态集流场(201720441627.X); [10]一种调蓄式生态景观集流场(ZL201721320503.2); [11]一种储水式生态景观集流场(ZL201721319840.X)。 |