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林岩銮

教授

办公电话:010-62797763

电子邮件: yanluan@tsinghua.edu.cn

研究组主页:

教育背景
青岛海洋大学学士(1995)
美国怀俄明大学硕士(2003)
美国纽约州立大学石溪分校博士(2008)
工作经历
美国普林斯顿大学-美国海洋大气管理局 (NOAA) 地球流体动力实验室(GFDL)博士后(2008-2011)
美国普林斯顿大学-美国海洋大气管理局 (NOAA) 地球流体动力实验室(GFDL)项目科学家 (2011-2012)
清华大学地球系统科学系教授(2012-至今)
研究兴趣
地球系统模式发展,大气模式物理过程参数化,全球和区域降水变化和模拟,台风等
奖励荣誉
研究概况
职称 教授 办公电话 010-62797763
电子邮件 yanluan@tsinghua.edu.cn 研究组主页
教育背景 青岛海洋大学学士(1995)<br>

美国怀俄明大学硕士(2003)<br>

美国纽约州立大学石溪分校博士(2008)
工作经历 美国普林斯顿大学-美国海洋大气管理局 (NOAA) 地球流体动力实验室(GFDL)博士后(2008-2011)
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美国普林斯顿大学-美国海洋大气管理局 (NOAA) 地球流体动力实验室(GFDL)项目科学家 (2011-2012)
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清华大学地球系统科学系教授(2012-至今)
研究兴趣 地球系统模式发展,大气模式物理过程参数化,全球和区域降水变化和模拟,台风等 奖励荣誉

科研项目:

国家重大科学研究计划“冰冻圈变化及其影响研究”气候系统模式中冰冻圈分量模式的集成耦合及气候变化模拟试验课题负责人

国家重大科学研究计划“中国化学-气候相互作用的高分辨率研究”项目骨干

中国气象局灾害天气国家重点实验室“云微物理方案对飑线模拟的影响及改进”课题负责人

学术成果:

  • 开发了一个新的云微物理参数化方案,被应用到全球最新的中尺度天气模式(WRF)中;

  • 主持第一次全球大气模式热带暖池国际云实验(TWP-ICE)比对计划;

  • 首次发现相对海温是影响台风个头大小的主要因子,因此台风个头大小在未来气候变暖下变化不大;

  • 发现和证实了一条从印度平原到青藏高原西南部的由对流驱动的先上后过的翻越喜马拉雅山脉的水汽通道。

发表文章:

2019

1) Yuanlong Li,Yanluan Lin*,Yuqing Wang,A Numerical Study on the Triggering and Maintenance of a Long-lived Rainband in Typhoon Longwang (2005), Journal of Geophysical Research: Atmospheres, in revision.

2) Jishi Zhang,Yanluan Lin*, D.R. Chavas, and W. Mei, Tropical cyclone cold wake size and its applications to power dissipation and ocean heat uptake estimates,Geophysical Research Letters, in revision.

3) Yuanlong Li, Yuqing Wang*, andYanluan Lin, Revisiting the dynamics of eyewall contraction of tropical cyclones, Journal of the Atmospheric Sciences, in revision.

4) Zhang, T., W. Lin,Y. Lin, M. Zhang, H. Yu, K. Cao, and W. Xue, (2019): Prediction of Tropical Cyclone Genesis from Mesoscale Convective Systems using Machine Learning. Wea. Forecasting,https://doi.org/10.1175/WAF-D-18-0201.1

5) Li, H., Xu, F., Sun, J.,Lin, Y., & Wright, J. S. (2019). Subtropical high affects

interdecadal variability of tropical cyclone genesis in the South China Sea. Journal of Geophysical Research: Atmospheres, 124.https://doi.org/10.1029/2018JD029874

6) Xiangzhou Song et al. China’s Vision towards the Tropical Pacific

Observing System (TPOS) 2020, CLIVAR exchanges, 2019.

7) Yanluan Lin*, Impact of cumulus microphysics and entrainment specification on tropical cloud and radiation in GFDL AM2 (2019), Earth Systems and Environment.https://doi.org/10.1007/s41748-019-00099-9

8) Danyang Wang, Jun-ichi Yano*,Yanluan Lin, Madden–Julian Oscillations Seen in the Upper-Troposphere Vorticity Field: Interactions with Rossby Wave Trains, (2019), Journal of the Atmospheric Sciences. DOI: 10.1175/JAS-D-18-0172.1

9) Tao Zhang*, Minghua Zhang,Yanluan Lin, Wei Xue, Wuyin Lin, Haiyang Yu, Juanxiong He, Xiaoge Xin, Hsi-Yen Ma, Shaochen Xie, and Weimin Zheng, Automatic tuning of the Community Atmospheric Model CAM5.3 by using short-term hindcasts with an improved downhill simplex optimization method.Geosci. Model Dev., 11 (12), pp. 5189-5201.https://doi.org/10.5194/gmd-2018-87

10) Chen, D., Guo, J., Yao, D.,Lin, Y., Zhao, C., Min, M., et al. (2019). Mesoscale convective systems in the Asian monsoon region from Advanced Himawari Imager: Algorithms and preliminary results. Journal of Geophysical Research: Atmospheres, 124. https://doi.org/10.1029/ 2018JD029707

11) Hao, M., Luo, Y.,Lin, Y., Zhao, Z., Wang, L., Huang, J. Contribution of atmospheric moisture transport to winter Arctic warming. International journal of Climatology. DOI: 10.1002/joc.5982

12) Yanluan Lin*,Dianbin Cao,Namei Lin, Wei Xue*, Shiming Xu, Yangyang Zhao, Heng Li, Bin Huang,Characteristics and simulation biases of corkscrew sea breezes in the east coast of China, JGR-Atmospheres,124 (1), pp. 18-34. .DOI:10.1029/2017JD028163

13) Hao Xu, Sha Li, Yuqi Bai*, Wenhao Dong, Wenyu Huang, Shiming Xu,Yanluan Lin, Bin Wang, Fanghua Wu, Xiaoge Xin, Li Zhang, Zaizhi Wang, Tongwen Wu, A collaborative analysis framework for distributed gridded environmental data, Environmental Modelling & Software, Volume 111, 2019, Pages 324-339, https://doi.org/10.1016/j.envsoft.2018.09.007.

14) Sun, J., Xu, F.*, Oey, L.-Y.,Lin, Y.(2019), Monthly variability of Luzon Strait tropical cyclone intensification over the Northern South China Sea in recent decades, Climate Dynamics, in press. https://doi.org/10.1007/s00382-018-4341-x

15) Dong, W.,Lin, Y.*, Wright, J.S. et al. (2019), Precipitable water and CAPE dependence of rainfall intensities in China. Climate Dynamics,Clim Dyn (2018). https://doi.org/10.1007/s00382-018-4327-8.

2018

16) Wenhao Dong*,Yanluan Lin, Jonathon S. Wright, Yuanyu Xie, Fanghua Xu, Kun Yang, Xin Li, Lide Tian, Xi Zhao, Dianbin Cao, Connections between a late summer snowstorm over the southwestern Tibetan Plateau and a concurrent Indian monsoon low pressure system. 123 (24), pp. 13,676-13,691. DOI:10.1029/2018JD029710

17) Chunsong Lu, Cheng Sun, Yangang Liu, Guang J. Zhang,Yanluan Lin,Wenhua Gao, Shengjie Niu, Yan Yin, Yujun Qiu, Lianji Jin, Observational Relationship between Entrainment Rate and Environmental Relative Humidity and Implications for Convection Parameterization. Geophysical Research Letters, 45 (24), pp. 13,495-13,504. DOI:10.1029/2018GL080264

18) Zhao, C*.,Lin, Y.*, Wu, F., Wang, Y., Li, Z., Rosenfeld, D., & Wang, Y. (2018). Enlarging rainfall area of tropical cyclones by atmospheric aerosols.

Geophysical Research Letters, 45. https://doi.org/10.1029/2018GL079427

19) Yuanlong Li, Jun-ichi Yano*andYanluan Lin(2018), Is Atmospheric Convection Organized?: Information Entropy Analysis, Geophysical & Astrophysical Fluid Dynamics.

20) Wenhao Dong,Yanluan Lin*, Jonathon S. Wright, and others (2018), Regional disparities in summer rainfall changes over arid Eastern-Central Asia. Scientific Reports, 8, 13051.

21) Qin Yi,Yanluan Lin*(2018), Alleviated double ITCZ problem in NCAR CESM1: a new cloud scheme and the working mechanisms,Journal of Advances in Modeling Earth Systems, 10, 2318–2332.https://doi.org/10.1029/2018MS001343

22) Qifeng Qian,Y. Lin*, Yali Luo, Xi Zhao, Zongci Zhao, Yong Luo, Xi Liu (2018), Sensitivity of a simulated squall line during SCMREX to parameterization of microphysics, Journal of Geophysical Research: Atmospheres, 123, 4197–4220. https://doi.org/10.1002/2017JD027734

23) Miao, Y., Guo, J., Liu, S., Wei, W., Zhang, G.,Lin, Y., & Zhai, P. (2018). The climatology of low‐level jet in Beijing and Guangzhou, China.Journal of Geophysical Research: Atmospheres, 123, 2816–2830.https://doi.org/10.1002/2017JD027321

24) Wenhui Zhao, Jianping Guo*, Zhanyu Yao, Yuxing Yun, Shuo Jia, Weijian Wang, Pei Zhang, Hui Xu, Huan Liu, Liangshu Gao,Yanluan Lin, Mingxin Li, Panmao Zhai (2018), Declining hailstorm frequency in China during 1961–2015 and its potential influential factors. Int J Climatol. 2018;1https://doi.org/10.1002/joc.5556.

25) Yanluan Lin*,Yuanlong Li,Qinshan Li, Mingyan Chen, Fanghua Xu, Yuqing Wang, Bin Huang(2018),A long lasting vortex Rossby wave induced rainband of Typhoon Longwang (2005), Bulletin of the American Meteorological Society, Doi: 10.1175/BAMS-D-17-0122.1

26) Yanluan Lin*, Jishi Zhang, Xingrui Li, Yi Deng (2018), Response of Eddy Activities to Localized Diabatic Heating in Held-Suarez Simulations. Climate Dynamics,https://doi.org/10.1007/s00382-018-4088-4.

27) Wenjie Zhao, Yiran Peng*, Bin Wang, Bingqi Yi,Y. Lin, Jiangnan Li (2018),Comparison of Three Ice Cloud Optical Schemes in Climate Simulations with Community Atmospheric Model Version 5. Atmospheric Research, 204, 2018,https://doi.org/10.1016/j.atmosres.2018.01.004.

28) Huang, X., C. Hu, X. Huang, Y. Chu, Y-h Tseng, G.J. Zhang, andY. Lin*(2018)

A long-term tropical mesoscale convective systems dataset based on a novel objective automatic tracking algorithm. Climate Dynamics, https://doi.org/10.1007/s00382-018-4071-0.

2017

29) Yi Qin,Y. Lin*, Shiming Xu, Hsi-Yen Ma, and Shaocheng Xie (2017), A diagnostic PDF cloud scheme to improve subtropical low clouds in NCAR Community Atmosphere Model (CAM5). J. Adv. Model. Earth Syst., 10. https://doi.org/10.1002/2017MS001095.

30) Yanluan Lin*, Wenhao Dong, Minghua Zhang, Yuanyu Xie, Wei Xue, Jianbin Huang, Yong Luo (2017), Causes of model dry and warm bias over central U.S. and impact on climate projections. Nature Communications 8, 881.

31) Wenhao Dong,Y. Lin*, Jonathon S. Wright, Yuanyu Xie, Fanghua Xu, Wenqing Xu, Yan Wang (2017), Monsoon low pressure systems feed up-and-over moisture transport to the southwestern Tibetan Plateau.J. Geophys. Res. Atmos., 122. https://doi.org/10.1002/2017JD02 7296.

32) Jianbin Huang, Xiangdong Zhang*, Qiyi Zhang,Y. Lin, Mingju Hao, Yong Luo*, Zongci Zhao, Yao Yao, Xin Chen, Lei Wang, Suping Nie, Yizhou Yin, Ying Xu, Jiansong Zhang (2017), Recently Amplified Arctic Warming Has Contributed to a Continual Global Warming Trend.Nature Climate Change. doi:10.1038/s41558-017-0009-5.

33) Zhao, X.,Y. Lin*, Y. Peng, B. Wang, H. Morrison, and A. Gettelman (2017),

A single ice approach using varying ice particle properties in global climate model microphysics, J. Adv. Model. Earth Syst., 9, doi:10.1002/2017MS000952.

34) Wang, L.*, Zhou, J., Qi, J., Sun, L., Yang, K., Tian, L.,Lin, Y., Liu, W., Shrestha, M., Xue, Y., Koike, T., Ma, Y., Li, X., Chen, Y., Chen, D., Piao, S., Lu, H. (2017), Development of a land surface model with coupled snow and frozen soil physics. Water Resources Research, 53 (6), pp. 5085-5103.

35) Jiayu Bin, Feng Tian*,Y. Lin, Yuwei Wang (2017), Low probability of tropical cyclones on ocean planets in the habitable zones of M dwarfs, Icarus, Volume 299, Pages 364-369, ISSN 0019-1035, http://dx.doi.org/10.1016/j.icarus.2017.08.007.

36) Huang, J., F. Xu*, K. Zhou, P. Xiu, andY. Lin(2017), Temporal evolution of near-surface chlorophyll over cyclonic eddy lifecycles in the southeastern Pacific, J. Geophys. Res. Oceans, 122, doi:10.1002/2017JC012915.

37) Xu, F.*, Y. Yao, L. Oey, andY. Lin(2017), Impacts of pre-existing ocean cyclonic circulation on sea surface chlorophyll-a concentrations off northeastern Taiwan following episodic typhoon passages, J. Geophys. Res. Oceans, 122, doi:10.1002/2016JC012625.

38) Hao, M., Huang, J., Luo, Y.*, Chen, X.,Lin, Y., Zhao, Z., Xu, Y. (2017), Narrowing the surface temperature range in CMIP5 simulations over the Arctic. Theoretical and Applied Climatology, pp. 1-16.

39) Luo, Y.*, Zhang, R., Wan, Q., Wang, B., Wong, W.K., Hu, Z., Jou, B.J.-D.,Lin, Y., Johnson, R.H., Chang, C.-P., Zhu, Y., Zhang, X., Wang, H., Xia, R., Ma, J., Zhang, D.-L., Gao, M., Zhang, Y., Liu, X., Chen, Y., Huang, H., Bao, X., Ruan, Z., Cui, Z., Meng, Z., Sun, J., Wu, M., Wang, H., Peng, X., Qian, W., Zhao, K., Xiao, Y. (2017), The southern China monsoon rainfall experiment (SCMREX), Bulletin of the American Meteorological Society, 98 (5), pp. 999-1013.

40) Li, H., F. Xu*, W. Zhou, D. Wang, J. S. Wright, Z. Liu, andY. Lin(2017),Development of a global gridded Argo data set with Barnes successive corrections.J. Geophys. Res. Oceans, 122, doi:10.1002/2016JC012285.

2016

41) Dong W.,Y. Lin*, Wright, J.S., Ming, Y., Xie, Y., Wang, B., Luo, Y., Huang, W., Huang, J., Wang, L., Tian, L., Peng, Y., Xu, F. (2016), Summer rainfall over the southwestern Tibetan Plateau controlled by deep convection over the Indian subcontinent. Nat. Commun. 7:10925 doi: 10.1038/ncomms10925.

42) Chavas, D.R.*, Lin, N.,Dong, W.,Lin, Y.(2016), Observed tropical cyclone size revisited. Journal of Climate, 29 (8), pp. 2923-2939.

2015

43) Lin, Yanluan*, M. Zhao, M. Zhang (2015), Tropical cyclone rainfall area controlled by relative sea surface temperature. Nat. Commun. 6:6591 doi: 10.1038/ncomms7591.

44) Zhang, T., Li, L.,Lin, Y., Xue, W., Xie, F., Xu, H., and Huang, X. (2015), An automatic and effective parameter optimization method for model tuning, Geosci. Model Dev., 8, 3579-3591, doi:10.5194/gmd-8-3579-2015.

45) Wood, R.*, M. Wyant, C. S. Bretherton, J. Rémillard, P. Kollias, J. Fletcher, J. Stemmler, S. deSzoeke, S. E. Yuter, M. Miller, D. Mechem, G. Tselioudis, C. Chiu, J. Mann, E. O’Connor, R. Hogan, X. Dong, M. Miller, V. Ghate, A. Jefferson, Q. Min, P. Minnis, R. Palinkonda, B. Albrecht, E. Luke, C. Hannay,Y. Lin, (2015), Clouds, Aerosol, and Precipitation in the Marine Boundary Layer: An ARM Mobile Facility Deployment. Bull. Amer. Meteorol. Soc., 96 (3), pp. 419-439.

2014

46) Lin, Yanluan*, (2014), Humidity variability revealed by a sounding array and its implications for cloud representation in GCMs, J. Geophys. Res. Atmos., 119. P10,499-10,514

47) M. C. Wyant*, C. S. Bretherton, R. Wood, G. R. Carmichael, A. Clarke, J. Fast, R. C. George, W. I. Gustafson Jr., C. Hannay, A. Lauer,Y. Lin,J.-J. Morcrette, J. Mulcahy, P. E. Saide, S. N. Spak, and Q. Yang., (2014), Global and regional modeling of clouds and aerosols in the marine boundary layer during VOCALS: the VOCA Intercomparison. Atmos. Chem. Phys. Discuss., 14, 6537-6587.

48) Hua Song*, Wuyin Lin,Y. Lin, Audrey B. Wolf, Leo J. Donner, Anthony D. Del Genio, Roel Neggers, Satoshi Endo, and Yangang Liu, (2014), Evaluation of Cloud Fraction Simulated by Seven SCMs against the ARM Observations at the SGP Site. J. Climate, 27, 6698–6719.

49) Petch, J.*, Hill, A., Davies, L., Fridlind, A., Jakob, C.,Lin, Y., Xie, S. and Zhu, P. (2014), Evaluation of intercomparisons of four different types of model simulating TWP-ICE. Q.J.R. Meteorol. Soc., 140: 826–837. doi: 10.1002/qj.2192

2013

50) Yanluan Lin*, Ming Zhao, Yi Ming, Jean-Christophe Golaz, Leo J. Donner, Stephen A. Klein, V. Ramaswamy, and Shaocheng Xie, (2013), Precipitation Partitioning, Tropical Clouds, and Intraseasonal Variability in GFDL AM2. J. Climate, 26, 5453–5466.

51) Hua Song*, Wuyin Lin,Y. Lin, Audrey B. Wolf, Roel Neggers, Leo J. Donner, Anthony D. Del Genio, and Yangang Liu, (2013), Evaluation of Precipitation Simulated by Seven SCMs against the ARM Observations at the SGP Site. J. Climate, 26, 5467–5492.

52) Lin, Yanluan*, Brian A. Colle, and Sandra E. Yuter, (2013), Impact of Moisture Flux and Freezing Level on Simulated Orographic Precipitation Errors over the Pacific Northwest. J. Hydrometeor, 14, 140–152.

53) L. Davies*, C. Jakob, K. Cheung, A. Del Genio, A. Hill, T. Hume, R. J. Keane, T. Komori, V. E. Larson,Y. Lin, X. Liu, B. J. Nielsen, J. Petch, R. S. Plant, M. S. Singh, X. Shi, X. Song, W. Wang, M. A. Whitall, A. Wolf, S. Xie and G. Zhang (2013),A single-column model ensemble approach applied to the TWP-ICE experiment, J. Geophys. Res. Atmos., 118, 6544–6563.

2008-2012

54) Yanluan Lin*, L. J. Donner, J. Petch, P. Bechtold, J. Boyle, S. A. Klein, T. Komori, K. Wapler, M. Willett, X. Xie, M. Zhao, S. Xie, S. A. McFarlane andC. Schumacher(2012), TWP-ICE global atmospheric model intercomparison: Convection responsiveness and resolution impact, J. Geophys. Res.Atmos., 117, D09111.

55) Leo J. Donner*, Bruce L. Wyman, ..,Y. Lin, …, and Fanrong Zeng, (2011), The Dynamical Core, Physical Parameterizations, and Basic Simulation Characteristics of the Atmospheric Component AM3 of the GFDL Global Coupled Model CM3. J. Climate, 24, 3484–3519.

56) Yanluan Lin*, Leo J. Donner, and Brian A. Colle, (2011), Parameterization of Riming Intensity and Its Impact on Ice Fall Speed Using ARM Data. Mon. Wea. Rev., 139, 1036–1047.

57) Yanluan Lin*and Brian A. Colle, (2011), A New Bulk Microphysical Scheme That Includes Riming Intensity and Temperature-Dependent Ice Characteristics. Mon. Wea. Rev., 139, 1013–1035.

58) Shaocheng Xie*, Renata B. McCoy, Stephen A. Klein, Richard T. Cederwall, Warren J. Wiscombe, Michael P. Jensen, Karen L. Johnson, Eugene E. Clothiaux, Krista L. Gaustad, Charles N. Long, James H. Mather, Sally A. McFarlane, Yan Shi, Jean-Christophe Golaz,Y. Lin, Stefanie D. Hall, Raymond A. McCord, Giri Palanisamy, and David D. Turner, (2010), CLOUDS AND MORE: ARM Climate Modeling Best Estimate Data. Bull. Amer. Meteor. Soc., 91, 13–20.

59) Yanluan Linand Brian A. Colle*, (2009), The 4–5 December 2001 IMPROVE-2 Event: Observed Microphysics and Comparisons with the Weather Research and Forecasting Model. Mon. Wea. Rev., 137, 1372–1392.

60) Brian A. Colle*,Yanluan Lin, Socorro Medina, and Bradley F. Smull, (2008), Orographic Modification of Convection and Flow Kinematics by the Oregon Coast Range and Cascades during IMPROVE-2. Mon. Wea. Rev., 136, 3894–3916.

SELECTED CONFERENCE ABSTRACTS

1. Yanluan Linand Yi Qin, Improved marine stratocumulus simulation and its impact on cloud feedback,CFMIP Meeting on Clouds, Precipitation, Circulation & Climate Sensitivity, Tokyo, September, 2017.

2. Yanluan Lin, Qifeng Qian, Xi Zhao, Key Microphysical Factors Impact the Simulation of Squall Lines, 14thAnnual Meeting of Asia Oceania Geosciences Society, Singapore, August, 2017.

3. Xi Zhao andYanluan Lin, A Single Ice Stratiform Cloud Microphysics Scheme in the Community Atmosphere Model,13thAnnual Meeting of Asia Oceania Geosciences Society, Beijing, August, 2016.

4. Yanluan Lin, Wenhao Dong, Yi Ming,Summer rainfall over the southwestern Tibetan Plateau controlled by deep convection over the Indian subcontinent, AGU fall meeting, 2016.

5. Yi Qin andYanluan Lin,A diagnostic PDF cloud scheme to improve subtropical low clouds in NCAR Community Atmosphere Model(CAM5),22nd Annual CESM Workshop, Boulder, 2017.

6. Yi Qin andYanluan Lin,Development of a unified turbulence scheme with a statistical cloud fraction scheme in Community Atmosphere Model, AGU Fall Meeting,San Francisco, 2015

7. Ming Zhao andYanluan Lin, Energetics, structure and life-cycle of GCM simulated tropical cyclones and their response to global warming, EGU annual meeting, Vienna, May, 2014.