高冠东, 男, 副研究员二级, 2017年于新南威尔士大学(世界排名前20高校)获博士学位,主要从事海洋动力过程及其环境效应研究。长期与国际顶尖科研机构保持合作,在JPO、GRL、JGR等权威期刊发表论文40余篇,其中第一作者及通讯作者SCI论文17篇,撰写英文专著章节1章。获2024年度海洋工程科学技术奖一等奖,2018年入选山东省“博新人才计划”(全省共10人入选)。
主持国家自然科学基金面上项目、青年科学基金项目、中国科学院国际交流计划、中国气象局专题项目、企业横向课题等科研项目10余项,并以课题骨干身份参与国家自然科学基金重大专项、国家重点研发计划、中国科学院先导专项等多项重大科研任务。
一、研究领域
近海动力学、数值模拟与AI融合预报、浪-流-泥沙-生态耦合数值模拟
二、招生专业及方向
招生专业:物理海洋学
招生方向:1.海洋波动与环境预测;2.海洋遥感与数值模拟、预测方法
三、研究室及联系方式
海洋环流与波动重点实验室,guandonggao@qdio.ac.cn,13808996172
四、承担的主要科研项目
国家自然科学基金,“潮汐-地形-层化-季风协同作用下夏季鲁北沿岸流的动力机制研究”(项目编号:4257060203),2026.01-2029.12,主持
山东省自然科学基金创新发展联合基金项目子课题,“黄渤海近岸海域海洋热浪的发生机理及智能预报预警”(项目编号:ZR2024LQX002),2026.01-2029.12, 主持
中国气象局气候变化专题,珠江口三角洲海水倒灌长期趋势及驱动机制研究(项目编号:QBZJ202608),2026.01-2027.12,主持
企业合作课题,风-浪-流耦合模拟实测环境数据收集与模型验证技术服务,(采购编号,P-XJ-25-00382634),2025.11-2026.02,主持
国家自然科学基金,“2016-2017年夏季南黄海及东海北部极端海洋热浪事件形成机理研究”(项目编号:42006004),2021.01-2023.12,主持
崂山实验室十四五重大项目子课题,“典型海洋生态灾害动力学模式与预测预报方法”(课题编号:2021QNLM040001-5),2021.12-2024.12,主持
国家重点研发计划子课题,“北斗精准导航与高分辨率遥感集成技术及区域综合应用示范”,(课题编号:2021YFB3901300),2022-11-21- 2025-11-30,主持
山东省自然科学基金,人类活动影响下胶州湾生态环境的变化及响应机制(项目编号ZR2019BD016),2019.07-2022.06,主持
中科院项目子课题,海洋溢油特征要素解析与防控方法研究:基于渤海沉潜油的实验、模拟与应急子课题(项目编号COMS2019J05),2020.01-2022.12,主持
国家自然科学基金重点支持项目子课题,东海-太平洋间沟弧盆体系对西边界流下层逆流形成及大洋-近海物质能量交换影响研究(项目编号92158202),2022.01-2025.12,主持
横向课题,渤海典型河口盐度锋面图件及相关资料服务(项目编号 Y921291),2021.1-2023.12 主持
五、研究成果及奖励
数值模拟及理论研究:
1.构建了波浪-潮流-泥沙耦合数值模式,相关成果作为核心技术获2024年海洋工程科学技术一等奖。基于FVCOM框架自主编写代码,发展了浪-潮-流-泥沙-生态耦合模式,实现了FVCOM动力模型、UNSW-Sed泥沙模型与MDO-Wave波浪模型的双向嵌套。相关成果在JPO等期刊发表系列高水平论文,单篇最高引用136次,篇均引用超过55次。
2.建立了边缘海-陆架-河口多尺度嵌套高分辨率动力模型,融合近海观测网络数据,在近海环流、海洋热浪、近惯性振荡、极端降雨生态效应等方面取得一系列科学发现。模型核心区域分辨率达百米级,结合数据同化与人工智能偏差订正算法,有效提升了模拟精度,并已服务于多家海洋牧场企业的生产数据需求。基于该模型支撑的海洋牧场智能管控系统获2025年数据要素X大赛全国二等奖。
六、代表性论文及著作
论文
[1] Gao, G.*, Kong, C., Zhang, Y., Xu, L., Feng, X., & Lv, X. (2026). Mesoscale eddy fitting from satellite along-track data in the Antarctic Circumpolar Current. Journal of Atmospheric and Oceanic Technology, 43(3), 241–265. https://doi.org/10.1175/JTECH-D-25-0040.1
[2] Chen, Z., Gao, G.*, Bi, C., Chen, C., Song, W., Feng, X., & Yin, B. (2026). Bias correction of sea temperature in Shandong coastal waters using LSTM-FVCOM and GRU-DF-FVCOM hybrid models. Estuarine, Coastal and Shelf Science, 109813. https://doi.org/10.1016/j.ecss.2026.109813
[3] Gao, G., Feng, M. (2025). Physical mechanisms behind the interhemispheric teleconnection between South Pacific Meridional Mode and Bohai, Yellow and East China Seas during boreal summers of 2001–2019. Journal of Sea Research, 207,102621.
[4] Wang, Y., Wang, Q, Gao, G.*, et al. (2025). Pressure characteristics of two-dimensional topography inwave-induced seabed liquefaction. Physics of Fluids, 016618 (2025); doi: 10.1063/5.0250813.
[5] Gao, G., Yang, D., Xu, L., Zhang, K., Feng, X., & Yin, B. (2022). A biological-parameter-optimized modeling study of physical drivers controlling seasonal chlorophyll blooms off the southern coast of Java Island. Journal of Geophysical Research: Oceans, 127, e2022JC018835. https://doi.org/10.1029/2022JC018835.
[6] Xiao, R., Gao, G.*, et al. (2024). The impact of extreme precipitation on physical and biogeochemical process regarding with nutrient dynamics in a semi-closed bay. Science of Total Environment, 906, 167599. https://doi.org/10.1016/j.scitotenv.2023.167599.
[7] Han, H., Xiao, R., Gao, G.*, Yin, B., Liang, S., & Lv, X. (2023). Influence of a heavy rainfall event on nutrients and phytoplankton dynamics in a well-mixed semi-enclosed bay. Journal of Hydrology,128932. https://doi.org/10.1016/j.jhydrol.2022.128932.
[8] Liao, F., Gao, G.*, Zhan, P., &Wang, Y. (2022). Seasonality and trend of the global upper-ocean vertical velocity over 1998–2017. Progress in Oceanography, 128932. https://doi.org/10.1016/j.jhydrol.2022.128932
[9] Wu, X., Xu, M., Gao, G.*, Yin, B., & Lv, X. (2022). Application of the Trigonometric Polynomial Interpolation for the Estimation of the Vertical Eddy Viscosity Coefficient Based on the Ekman Adjoint Assimilation Model. Journal of Marine Science and Engineering, 10, 1165. https://doi.org/10.3390/jmse10081165.
[10] Luo, C., Gao, G.*(2023). A Study of Wind Stress Effects on the Vertical Eddy Viscosity Coefficient Using the Ekman Model with Data Assimilation. J. Mar. Sci. Eng. 2023, 11, 1487. https:// doi.org/10.3390/jmse11081487
[11] Xiao, R., Gao, G.*, Feng, M., Greenwood, J., Kessing, J., Yin, B., Feng, X., Xu, L., Liu, Z., & Lv, X. (2022). Three-dimensional numerical simulation of circulation and vertical temperature structure during summer in Cockburn Sound. Regional studies in Marine Science,102187.
[12] Song, D., Gao, G.*, Xia, Y., Ren, Z., & Yin, B. (2021). Near-inertial oscillations in seasonal highly stratified shallow water. Estuarine Coastal and Shelf Science, 8, 107445. https://doi.org/10.1016/j.ecss.2021.107445.
[13] Gao, G., Marin, M., Feng, M., Yin, B., Yang, D., Feng, X., Ding, Y., & Song, D. (2020). Drivers of marine heatwaves in the East China Sea and the South Yellow Sea in three consecutive summers during 2016-2018. Journal of Geophysical Research: Oceans, 125, e2020JC016518. http://doi.org/10.1029/2020JC016518.
[14] Gao, G., Wang, X., Song, D., Bao, X., Yin, B., Yang, D., & Ding, Y. (2018a). Effects of wave-current interactions on suspended-sediment dynamics during strong wave events in Jiaozhou Bay, Qingdao China. Journal of Physical Oceanography, 48, 1053-1078. http://doi: 10.1175/JPO-D-17-0259.1.
[15] Gao, G.*, Wang, X., Bao, X., Song, D., Lin, X., & Qiao, L. (2018b). The impacts of land reclamation on suspended-sediment dynamics in Jiaozhou Bay, Qingdao, China. Estuarine, Coastal and Shelf Science, 206, 61-75. http://dx.doi.org/10.1016/j.ecss.2017.01.012.
[16] Gao, G.*, Wang, X., & Bao, X. (2014). Land reclamation and its impact on tidal dynamics in Jiaozhou Bay. Estuarine, Coastal and Shelf Science, 2014, 151(5), 285-294.
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