师资队伍

微信公众号

路屹雄

硕士生导师
  • 学科方向
    气象学
  • 研究方向
    气候系统模式研发与评估、大气-海洋-海冰相互作用、资料同化
  • 电子邮箱
    luyx@cma.gov.cn
  • 导师简介
  • 论文论著
中国气象局地球系统数值预报中心耦合模式室主任,正高级工程师。WCRP地球系统模拟及观测(ESMO)科学指导委员会成员,中国海洋学会海气相互作用专业委员会委员,中国气象局地球系统数值预报重点开放实验室副主任。毕业于南京大学大气科学学院,获气象学博士学位。主要研究方向为地球系统模式与气候变化,在国际期刊上发表多篇学术论文,主持和参加国家自然科学基金、国家重点研发计划、公益性行业(气象)科研专项等多项国家级科研项目。先后获评2018年度国家气候中心“双十”计划优秀青年人才、2020年度中国气象局高层次气象科技创新计划“青年气象英才”、2022年度中国气象局地球系统数值预报中心“首席专家”


1. Lu, Y., X. Xu, et al. 2024. Machine Learning Emulation of Subgrid-Scale Orographic Gravity Wave Drag in a General Circulation Model With Middle Atmosphere Extension. Journal of Advances in Modeling Earth Systems 16(3): e2023MS003611.

2. Lu, Y., Wu, T., Li, Y., and Yang, B. 2021. Mitigation of the double ITCZ syndrome in BCC-CSM2-MR through improving parameterizations of boundary-layer turbulence and shallow convection, Geoscientific Model Development, 14(8), 5183−5204. doi:10.5194/gmd-14-5183-2021.

3. Lu, Y., T. Wu, W. Jie, A. A. Scaife, M. B. Andrews, and J. H. Richter. 2020. Variability of the stratospheric quasi-biennial oscillation and its wave forcing simulated in the Beijing Climate Center atmospheric general circulation model. Journal of the Atmospheric Sciences, 77(1): 149−165. doi:10.1175/JAS-D-19-0123.1.

4. Lu, Y., T. Wu, X. Xu, L. Zhang, and M. Chu. 2020. Improved simulation of the Antarctic stratospheric final warming by modifying the orographic gravity wave parameterization in the Beijing Climate Center atmospheric general circulation model. Atmosphere, 11(6), 576. doi:10.3390/atmos11060576.

5. Lu, Y., M. Zhou, and T. Wu. 2013. Validation of parameterizations for the surface turbulent fluxes over sea ice with CHINARE 2010 and SHEBA data. Polar Research, 32, 20818. doi: 10.3402/polar.v32i0.20818.

6. Wu, T., Lu, Y., Fang, Y., Xin, X., Li, L., Li, W., Jie, W., Zhang, J., Liu, Y., Zhang, L., Zhang, F., Zhang, Y., Wu, F., Li, J., Chu, M., Wang, Z., Shi, X., Liu, X., Wei, M., Huang, A., Zhang, Y., and Liu, X.: The Beijing Climate Center Climate System Model (BCC-CSM): the main progress from CMIP5 to CMIP6, Geoscientific Model Development, 12, 1573–1600, 2019.

7. Wu, T., Yu, R., Lu, Y., Jie, W., Fang, Y., Zhang, J., Zhang, L., Xin, X., Li, L., Wang, Z., Liu, Y., Zhang, F., Wu, F., Chu, M., Li, J., Li, W., Zhang, Y., Shi, X., Zhou, W., Yao, J., Liu, X., Zhao, H., Yan, J., Wei, M., Xue, W., Huang, A., Zhang, Y., Zhang, Y., Shu, Q., and Hu, A.: BCC-CSM2-HR: a high-resolution version of the Beijing Climate Center Climate System Model, Geoscientific Model Development, 14, 2977–3006, https://doi.org/10.5194/gmd-14-2977-2021, 2021.