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王國印(Guoyin Wang)


王國印

高級工程師/碩士生導師

wanggy@fudan.edu.cn

021-31248802

  


個人簡介

王國印,男,19867月生,高級工程師🧑‍🦯‍➡️、碩士生導師🦏👘、理學博士。研究方向為大氣物理與大氣環境👨‍🦼‍➡️,主要從事幹旱氣候變化、大氣邊界層💃🏼、海--氣相互作用觀測與研究💂🏼‍♀️🧑🏿。2010—2012年於美國國家大氣研究中心(NCAR)進行學術交流訪問📪,主持參與國家自然科學基金青年基金、國家自然科學基金面上項目🧕🏿、國家重點基礎研究發展計劃👨🏼‍🎓、公益性行業(氣象)科研專項等。擔任J. Geophys. Res.🤦🏽‍♂️、高原氣象、幹旱氣象等期刊雜誌審稿人🤦‍♀️。


研究興趣

--氣相互作用、幹旱氣候變化、大氣邊界層


教育背景

20079-20136月,蘭州大學,氣象學,博士

20039-20076月,蘭州大學🛹🌳,應用氣象,本科

  

研究經歷

20211月—至今🍱,高級工程師🧘,沐鸣2

201812 ­ 202012月,實驗師,沐鸣2

20137 ­ 201811月,講師👨‍🦯‍➡️,蘭州大學

201010 201210月,訪問學者🍝👩🏽‍🌾,美國國家大氣研究中心(NCAR


承擔課題

20201 202312月,國家自然科學基金委面上項目,不同氣候區典型下墊面能量與碳循環機製的研究🧑🏽‍🔬,中國,73萬元🥑,主持

20151 201812月,公益性行業(氣象)科研專項,幹旱氣象科學研究—我國北方幹旱致災過程及機理,中國,20萬元,參與

20151 201712月,國家自然科學基金青年科學基金項目👺,幹旱半幹旱區陸-氣相互作用的觀測研究🤾🏿‍♂️,中國,25萬元,主持

20141 20168月,國家重點基礎研究發展計劃,全球典型幹旱半幹旱地區氣候變化及其影響,中國,106萬元🧛🏽‍♀️🕌,參與

  

教學經歷

本科生課程🚣🏼‍♀️:《大氣探測原理》、《大氣觀測實習》、《邊界層氣象學》(2014-2018)🤑、《航空氣象學》(2014-2018)、《大學信息技術基礎》(2017-2018

碩士生課程📚:《高等大氣物理學》(參與)😵、《現代大氣探測》(參與)


發表論文

1. Gong, H., Wang, Y., Wang, G.*, Gao, Y., Li, G., Kuang, Z., et al. (2023). Quantifying the Spatial Representativeness of Carbon Flux Footprints of a Grassland Ecosystem in the Semi-arid Region. Journal of Geophysical Research: Atmospheres, 128, e2022JD038269. https://doi.org/10.1029/2022JD038269

2. Wang Guoyin, Leng Wennan, Jiang Shaojing, Cao Bangjun*,2021, Long-Term Variation in Wintertime Atmospheric Diffusion Conditions Over the Sichuan Basin, Front. Environ. Sci. 9:763504. doi: 10.3389/fenvs.2021.763504

3. Yao J., Z. Gao, J. Huang*, H. Liu, G. Wang. 2021: Technical note: Uncertainties in eddy covariance CO2 fluxes in a semiarid sagebrush ecosystem caused by gap-filling approaches. Atmospheric Chemistry and Physics. 21 (20), 15589–15603. DOI: 10.5194/acp-21-15589-2021.

4. Wang J., Jian B., Wang G., Zhao Y., Li Y., Letu H., Zhang M., Li J*. Climatology of Cloud Phase, Cloud Radiative Effects and Precipitation Properties over the Tibetan Plateau. Remote Sensing, 2021, 13(3): 363.

5. Li W., Zhang F*., Yu Y., Iwabuchi H., Shen Z., Wang G., Zhang Y. The semi-diurnal cycle of deep convective systems over Eastern China and its surrounding seas in summer based on an automatic tracking algorithm. Climate Dynamics, 2021, 56, 357–379.

6. Yao J., Liu H.*, Huang J.*, Gao Z., Wang G., Li D., Yu H., Chen X. Accelerated dryland expansion regulates future variability in dryland gross primary production. Nature Communications, 2020, 11,1665. 

7. Jian B., Li J.*, Wang G., He Y., Han Y., Zhang M. and Huang J. The Impacts of Atmospheric and Surface Parameters on Long-Term Variations in the Planetary Albedo. Journal of Climate, 2018, 31(21): 8705-8718.

8. Tang, K., Z. Huang*, J. Huang, T. Maki, S. Zhang, X. Ma, J. Shi, J. Bi, T. Zhou, and G. Wang (2017), Characterization of atmospheric bioaerosols along the transport pathway of Asian dust during the Dust-Bioaerosol 2016 Campaign, Atmospheric Chemistry & Physics, 1-41.

9. Huang, J.*, Y. Li, C. Fu, F. Chen, Q. Fu, A. Dai, M. Shinoda, Z. Ma, W. Guo, Z. Li L. Zhang, Y. Liu, H. Yu, Y.He, Y. Xie, X. Guan, M. Ji, L. Lin, S. Wang, H. Yan, and G. Wang (2017), Dryland climate change: Recent progress and challenges, Reviews of Geophysics, 55(3).

10. Liang, J., L. Zhang*, X. Cao, J. Wen, J. Wang, and G. Wang (2017), Energy balance in the semi-arid area of the Loess Plateau, China, Journal of Geophysical Research Atmospheres122(1-4).

11. Li, H., Y. Yang*, X. M. Hu, Z. Huang, G. Wang, and B. Zhang (2017), Application of Convective Condensation Level Limiter in Convective Boundary Layer Height Retrieval Based on Lidar Data, Atmosphere8(4), 79.

12. Li, H., Y. Yang*, X. M. Hu, Z. Huang, G. Wang, B. Zhang, and T. Zhang (2017), Evaluation of retrieval methods of daytime convective boundary layer height based on lidar data, Journal of Geophysical Research Atmospheres,122(8), 4578-4593.

13. Huang, J.*, H. Yu, X. Guan, G. Wang, and R. Guo (2016), Accelerated dryland expansion under climate change, Nature Climate Change6(2).

14. Xie, Y., Y. Liu, J. Huang*, and G. Wang(2013), Impact of the Ice-albedo Feedback on Meridional Temperature Gradient of Northern Hemisphere, Advances in Earth Science,28(11), 1276-1282.

15. Wang, G., J. Huang*, W. Guo, J. Zuo, J. Wang, J. Bi, Z. Huang, and J. Shi (2010), Observation analysis of land-atmosphere interactions over the Loess Plateau of northwest China, Journal of Geophysical Research Atmospheres115(D7), -.

16. Jing, X., J. Huang*, G. Wang, K. Higuchi, J. Bi, Y. Sun, H. Yu, and T. Wang (2010), The effects of clouds and aerosols on net ecosystem CO2 exchange over semi-arid Loess Plateau of Northwest China, Atmospheric Chemistry & Physics,10(17), 8205-8218.

17. Huang, Z., J. Huang*, J. Bi, G. Wang, W. Wang, Q. Fu, Z. Li, S. C. Tsay, and J. Shi (2010), Dust aerosol vertical structure measurements using three MPL lidars during 2008 China-U.S. joint dust field experiment, Journal of Geophysical Research115(D7).

18. Zuo, J., J. Wang, J. Huang*, W. Li, G. Wang, and H. Ren (2010), Estimation of Ground Heat Flux for a Semi-Arid Grassland and Its Impact on the Surface Energy Budget, Plateau Meteorology29(4), 840-848.

19. Guan, X., J. Huang*, N. Guo, J. Bi, G. Wang, and H. Wang (2009), Variability of soil moisture and its relationship with surface albedo and soil thermal parameters over the Loess Plateau, Advances in Atmospheric Sciences26(4), 692-700.

20. Huang, J.*, Z. Wu, J. Zuo, J. Bi, J. Shi, W. Xin, Z. Chang, Z. Huang, Y. Su, and B. Zhang, G. Wang, G. Feng, J. Yuan, L. Zhang, H. Zuo, S. Wang, C. Fu and J. Chou (2008), An overview of the Semi-arid Climate and Environment Research Observatory over the Loess Plateau, Advances in Atmospheric Sciences25(6), 906-921.

21. Zuo, J., J. Huang*, J. Wang, W. Zhang, J. Bi, G. Wang, W. Li, P. Fu, and H. Wang (2009), Surface turbulent flux measurements over the Loess Plateau for a semi-arid climate change study, Advances in Atmospheric Sciences26(4), 679-691.

22. 藥靜宇,王國印,李晨蕊,於海鵬(2017),不同區域典型植被類型的凈生態系統碳交換特征蘭州大學學報(自科版),53(5),622-627.

23. 藥靜宇,王國印,黃建平*,閉建榮(2016),黃土高原半幹旱區凈碳交換量的特征分析,幹旱氣象,34(1),88-95.

24. 趙錢飛,郭維棟*,淩肖露,劉野,王國印,解靜(2013),半幹旱區不同類型土地利用的蒸散量及水分收支差異分析—以通榆為例,氣候與環境研究,18(4),415-426.

25. 左金清,王介民,黃建平*,李維京,王國印,任宏利(2010),半幹旱草地地表土壤熱通量的計算及其對能量平衡的影響,高原氣象,29(4),840-848.

26. 解靜,黃建平*,王國印,閉建容,趙錢飛,張明明(2010),中國北方半幹旱區二氧化碳通量的對比分析,地球科學進展,25 Suppl., doi:1001-81662010)增-0050-14.

  


#以上信息由本人提供,更新時間:2023/03/29

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