1.个人信息:
姓名:曹帮军
性别:男
职称:讲师
研究方向:边界层气象学;数值模拟;气候变化
2.联系方式:
电子邮件:caobj@cuit.edu.cn
3.教育背景:
4.工作经历:
2024.04至今 青海理工学院
2017-2024.04成都信息工程大学
2021.10-2023.02德国科隆大学 博士后
5.学术兼职:
《Frontiers in Earth Science》、《Theoretical and Applied Climatology》、《Environmental Science and Pollution Research》等期刊的审稿专家
6.科研项目:
主持1项四川省科技厅项目。主持和参加科研项目5项。
[1]四川省科技厅项目“四川省边界层高度影响因素及其对空气质量的影响”,结题,项目负责人
[2]中国第二次青藏高原综合科学考察研究项目“西风-季风协同作用及其影响” 第五专题“西风-季风协同作用对亚洲水塔变化的影响”,主研
[3]国家自然科学基金面上项目,西南人工林区碳通量特征观测研究,主研
[4]国家自然科学基金面上项目,黄河源区土壤水热输送与冻融过程的土壤分层加密观测与模拟研究,主研
[5]国家自然科学基金面上项目,气候变化与排放情景对四川盆地大气污染影响的数值模拟研究,主研
7.代表论文:
发表论文9篇(*为通讯作者):
[1] Cao B, Yang X*, Li B, et al. Diurnal variation in cloud and precipitation characteristics in summer over the Tibetan Plateau and Sichuan Basin[J]. Remote Sensing, 2022, 14(11): 2711.
[2] Cao B, Lyu S, Zhang Y*, et al. Factors influencing diurnal variations of cloud and precipitation in the Yushu area of the Tibetan Plateau[J]. Journal of Meteorological Research, 2022, 36(2): 311-325.
[3]曹帮军*,吕世华,张宇,等.绿洲灌溉对垂直湍流热通量影响的大涡模拟研究[J],大气科学,2020, 44(6): 1188-1202.
[4] Cao B*, Zhu L, Zheng Y, et al. Effects of radiative forcing on stable boundary layer development and diurnal temperature range over the central Heihe River Basin, China[J]. Atmospheric Science Letters, 2020, 22(1): e1011.
[5] CaoB*,X Wang,G Ning, et al.Factors influencing the boundary layer heightand their relationship with air quality in the Sichuan Basin, China[J].Science of the TotalEnvironment, 2020, 727(138584): 1-9.
[6] CaoB*,Y Zhang,Y Zhao, et al.Influence of the low-level jet on the intensity of thenocturnal oasis cold island effect over northwest China[J].Theoretical and Applied Climatology,2020, 139(6): 689-699.
[7] Cao B*, Mao F, Zhang S, et al. Assessing the performance of separate bias Kalman filter in correcting the model bias for estimation of soil moisture profiles[J]. Journal of Meteorological Research, 2019, 33(3): 519-527.
[8] Cao B, S Zhang*, D Li, et al. Effect of Strip-Like Patches of Oases and Deserts on Flow Structure and Vertical Fluxes Using Large-Eddy Simulation Coupled to Land Surface Model [J]. Journal of Meteorological Research, 2018, 32(6): 421-432.
[9] ZhangS*,B Cao,W Zhanget al.Avariational method for estimating surface turbulent heat fluxes with a consideration of energystorage[J].Journal of Hydrometeorology, 2016, 17(1-10): 2575-2590.