闵文佳

作者: 时间:2020-07-20 点击数:

闵文佳,男,助理研究员,2023年毕业于中国科学院海洋研究所物理海洋学专业,获理学博士学位。攻读博士学位期间,参与了中国科学院前沿科学重点研究计划、国家自然科学基金面上项目等重点项目的研究工作。目前主持河北科技师范学院博士研究启动基金项目1项,参与河北省重大科技支撑计划项目1项及河北省教育厅项目2项。主要研究方向为海洋内波与混合等。

代表性成果:

[1] Min Wenjia, Li Qun, Liu Zhiliang, Zhao Bo, Ma Yue, Chang Hang, Wang Weidong (2025), Dynamics and energetics of semidiurnal internal tides in the Weddell-Scotia Confluence,Acta Oceanologica Sinica, 44, 117–129.

[2] Min Wenjia, Li Qun, Liu Zhiliang, Zhao Bo (2024), Generation of internal solitary waves by the Mackenzie River plume in the coastal Arctic Ocean,Deep Sea Research Part I: Oceanographic Research Papers, 204, 104229.

[3] Min Wenjia, Li Qun, Xu Zhenhua, Wang Yang, Li Delei, Zhang Peiwen, Robertson Robin, Yin Baoshu (2023), High-resolution, non-hydrostatic simulation of internal tides and solitary waves in the southern East China Sea,Ocean Modelling, 181, 102141.

[4] Min Wenjia, Li Qun, Zhang Peiwen, Xu Zhenhua, Yin Baoshu (2019), Generation and evolution of internal solitary waves in the southern Taiwan Strait,Geophysical & Astrophysical Fluid Dynamics, 113(3), 287-302.

[5] Zhao Bo, Zhang Yongliang, Shi Jia, Min Wenjia, Ma Yue, Liu Zhiliang, Chang Hang, Wang Weidong, Chen Xiao (2025), The influence of topography on mesoscale eddy mass transport,Physics of Fluids, 37, 066614.

[6] Zhao Bo, Zhao Yaxing, Liu Zhiliang, Min Wenjia, Wang Weidong (2024), Spontaneous near-inertial wave generation from mesoscale eddy: Energy transformation,Physics of Fluids, 36(7): 076606.

[7] Ma Yue, Liu Zhiliang, Dong Zhichao, Zhao Bo, Min Wenjia, An Ying (2024), Wave-Tide-Surge Interaction Modulates Storm Waves in the Bohai Sea,Journal of Marine Science and Engineering, 12(11): 1932.

[8] Zhao Bo, Xu Zhenhua, Li Qun, Min Wenjia, Wang Yang, Yin Baoshu (2022), The characteristics of spontaneous near-inertial wave generation from an anticyclonic mesoscale eddy,Journal of Oceanology and Limnology, 40(2): 413-427.

[9] Li Qun, Wu Huiding, MinWenjia (2018), Numerical Simulation of the Generation and Evolution of Internal Tides and Solitary Waves at Sofala Shelf Break,International Journal of Offshore and Polar Engineering, 28(4): 361-369.

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