汤杰
职称:副所长/研究员
电话:021-54896104
邮件:tangj@typhoon.org.cn
主要从事台风外场观测试验,边界层结构观测以及台风预报技术研发。
Research
interest:typhoon field experiment;typhoon boundary layer observation;typhoon forecast technology research & development
1)Tang, J., et al. (2018). "Multilevel Tower Observations of Vertical
Eddy Diffusivity and Mixing Length in the Tropical Cyclone Boundary Layer
during Landfalls." Journal of the Atmospheric Sciences 75(9): 3159-3168.
2)Tang J, Byrne D, Zhang J A, et al. Horizontal Transition of Turbulent
Cascade in the Near-surface Layer of Tropical Cyclones[J]. Journal of the
Atmospheric Sciences, 2015 (2015). doi:10.1175/JAS-D-14-0373.1
3)Tang, J., Zhang, J.A., Chan, P. et al. A direct aircraft observation of
helical rolls in the tropical cyclone boundary layer. Sci Rep 11, 18771 (2021).
https://doi.org/10.1038/s41598-021-97766-7
4)Chen, N. TANG jie*,
et al. (2021). "On the distribution of helicity in the tropical cyclone
boundary layer from dropsonde composites." Atmospheric Research 249:
105298.
5)
Shi, W.; Tang, J*.; Chen, Y.; Chen, N.; Liu, Q.; Liu, T. Study of the
Boundary Layer Structure of a Landfalling Typhoon Based on the Observation from
Multiple Ground-Based Doppler Wind Lidars. Remote
Sens. 2021, 13, 4810. https://doi.org/10.3390/rs13234810
6)
Zhang, X., TANG Jie* ,Wu D, Wu C.F. (2020). "An observational study
of the inner core structure of Typhoon Meranti (2016) near landfall."
Atmospheric Science Letters 21(4): e962.
7)Sun,
Z., Zhang, B. and Tang, J*, (2021) Estimating the Key Parameter of a
Tropical Cyclone Wind Field Model over the Northwest Pacific Ocean: A
Comparison between Neural Networks and Statistical Models. Remote Sens.,
13(14), 2653. https://doi.org/10.3390/rs13142653.
8)Tang J, Jun A. Zhang, Chanh Kieu, Frank D. Marks Sensitivity of hurricane intensity and
structure to two types of planetary boundary layer parameterization schemes in
idealized HWRF simulations Tropical Cyclone Research and Review, 2018 7(4).
9)TANG J*,Jianfang FEI,Hui YU. Research of Super Typhoon Lekima: forecast,
observation, numerical simulation and disaster survey[J]. Front. Earth Sci., 13
August 2021. [Epub ahead of print] doi: 10.1007/s11707-021-0929-2.
10)Yan Jiaming, Zhao
Bingke, Zhang Shuai, Tang Jie*. Observation analysis and application
evaluation of wind profile radar to diagnosing the boundary layer of landing
typhoon. J Appl Meteor Sci, 2021, 32(3): 332-346. DOI: 10.11898/1001-7313.20210306.
11)Bai, L., Xu,
Y., Tang, J*., & Guo,R. (2022). Interagency
discrepancies in tropical cyclone intensity estimates over the western North
Pacific in recent years. Atmospheric Science Letters,
e1132. https://doi.org/10.1002/asl.1132
12)Sun, Ziyao, Tang,
J*et al. "The extraordinarily large vortex structure of Typhoon In-fa
(2021), observed by spaceborne microwave radiometer and synthetic aperture
radar." Atmospheric Research (2023): 106837.
13)史文浩,汤杰*,陈勇航,赵兵科,汤胜茗,杨文杰,邬贤文.多普勒激光雷达探测台风“利奇马”边界层风场精度分析[J].热带气象学报, 2020, 36(05): 577-589.
14)骆梦洁,汤杰*,陈叙捷,陈勇航,赵兵科,史文浩,严嘉明,刘统强,林立旻,陈泉.台风天气条件下地基微波辐射计反演产品精度分析[J].海洋气象学报, 2022, 42(01): 101-110.
15)陈泉,史文浩,汤杰*,赵兵科,陈叙捷,陈勇航,林立旻,严嘉明,马骁骏,骆梦洁.降雨强度对激光雷达测风精度的影响研究[J].气象科技,2022,50(03):324-333.
16)严嘉明,赵兵科,张帅,林立旻,汤杰*.边界层风廓线雷达对登陆台风观测适用性评估[J].应用气象学报,2021,32(03): 332-346.
17)汤杰,赵兵科,雷小途.国内外台风飞行科学试验进
展及展望[J].气象科技进展,2022,12(05):47-55.