王澄海 :王澄海

更新时间:2024-09-20 16:54

王澄海,男,博士,教授,博士生导师,培养硕士生30余名,博士生10余名,博士后3名。他是甘肃省高等学校教学名师和全国气象教学名师,曾在国际理论物理中心(ICTP)短期进修。王澄海担任冻土工程国家重点实验室客座研究员(2003-2005年)和中国气象局新疆沙漠气象研究所客座研究员。他还是泰国兰泰恒大学客座教授,兰州大学教育学院兼职硕士生导师,中国气象局兰州干旱气象研究所客座研究员(2014.1—)。王澄海是第一届全国气候与气候变化标准化技术委员会委员,全国气候与气候变化标准化技术委员会风能太阳能气候资源分技术委员会委员(SAC/TC540/SC2),CNC-CliC/IACS委员,中国气象学会动力气象委员会委员,中国气象学会统计预报委员会委员,中国气象学会气候变化与低碳发展委员会委员,中国气象学会第27届干旱气象委员会委员,甘肃省气象学会第十届气候与气候变化委员会副主任委员。他还是WCRP_CN委员会委员,IUGG-IACS中国委员会委员(2012-2015),甘肃省第五届工程决策咨询专家(2012.1—2016.12),甘肃省青少年科技创新大赛评审委员会委员(2012-2016),《Sciences in Cold and Arid Regions》(创刊—2013年),《冰川冻土》《干旱气象》杂志编委,《Frontiers》Editorial Board Members。

研究方向

王澄海教授的研究方向包括气候变化诊断分析与模拟、陆面过程模式物理过程的研究和模拟、高原寒区陆面和大气的相互作用、西北干旱区气候的模拟和诊断分析、季风。

学术获奖

他已发表科研论文100余篇,教育教学论文5篇;著有《大气数值模式及模拟》《气候变化与荒漠化》。现主持国家自然基金项目一项“青藏高原冻融过程与东亚大气环流及中国夏季降水关系的研究”;承担国家重点基础研究发展规划项目“我国生态环境演变和北方干旱化趋势预测研究(G1999043408)”(“973”)项目子专题一项;科学院知识创新工程重要方向项目“亚洲季风区海-陆-气相互作用对我国气候变化的影响”子专题一项;承担国家自然基金重点项目“中国西部地区陆面数据同化系统研究”一项,对干旱区陆面过程模式的参数化进行了研究。曾获甘肃省气象局科技进步三等奖二等奖

获得荣誉

2023年,入选中国工程院2023年院士增选有效候选人名单。

主要论文

王澄海教授的主要论文包括:

1. Wang Chenghai, Bao Yue, Li Ruoling, Bao Hongyan, Impacts of the Asia-Australia Dipole and ENSO on climate variability in Asia-Australia region, International Journal of Climatology, DOI:10.1002/JOC4625

2. Shi Hongxia, Wang Chenghai, Projected 21st century changes in snow 液态水 equivalent over Northern Hemisphere landmasses from the CMIP5 model ensemble. The Cryosphere. 9, 2135-2166, 2015. doi:10.5194/tc-9-1-2015

3. Wang W, A. Rinke, J. More, X. Cui, D. Ji, Q. Li, N. Zhang, Ch. Wang, Sh. Zhang, D.M. Lawrence, A.D. McGuire, W. Zhang, C. Delire, C. Koven, K. Saito, A. MacDougall, and E.2016. Burke, Diagnostic and model dependent uncertainty of simulated Tibetan permafrost area, The Cryosphere, 10, 287–306, doi:10.5194/tc-10-287-2016

4. Wang, C. H., H. X. Shi, H. L. Hu, Y. Wang, and B. Xi, 2015: Properties of cloud and precipitation over the Tibetan 高原 Adv. Atmos. Sci., 32(11), 1504–1516, doi: 10.1007/s00376-015-4254-0.

5. Yi Wang, Chenghai Wang. The Features of Clouds and Convection before and after Monsoon Onset. Theo.\u0026 Appl.Clim. 1-4. DOI: 10.1007/s00704-015-1372-7.

6. Zhang F, Yang Yi, Chenghai Wang,2015. The Improvement Experiments of Assimilating ATOVS Radiances on forecasted Near-surface Wind with WRF-3DVAR. Mon.Wea.Rev. 143(1)153-164. DOI:10.1175/MWR-D-14-00038.

7. WANG Chenghai, Guo Yipeng, 2014. Trends in Precipitation Recycling over the Qinghai-Xizang 高原 in Last Decades. Journal of Hydrology, 517.PP: 826-835. DOI: 10.1016/j.jhydrol.2014.06.006 .

8. Wang Chenghai,Jin Shuanglong,2013.The Features of the Errors and their Possible Causes from a Low-level Wind Field Simulated by WRF. Wind 能量 DOI: 10.1002/we.1635

9. Hui Tian, Jun Wen, Cheng-hai Wang et al. Effect of pixel scale on Evapotranspiration estimation by remote sensing over oasis areas in north-western China, Environmental 地球 Sciences, 2012, doi: 10.1007/s12665-012-1677-0.

10. TIAN Hui, WANG Cheng-Hai, WEN Jun, WANG Xin, LU Deng-Rong, L? Shao-Ning.Soil moisture estimation over an arid environment in Mongolia from passive microwave remote sensing based on a simplified parameterization method. Chinese J. Geophys.

11. WANG Chenghai, Guo Yipeng, 2012, Precipitable 液态水 conversion rates over the Qinghai-Xizang (Tibet) 高原: changing characteristics with global warming, Hydrological Processes. 26, 1509–1516.DOI: 10.1002/ hyp.8246, 26,

12. Wang, C. H., L. Yu, and B. Huang, 2012: The impact of warm pool SST and general circulation on increased 温度 over the Tibetan 高原 Adv. Atmos. Sci., 29(2), 274-284, DOI: 10.1007/s00376-011-1034-3.

13. Wang Chenghai, Zhifu Zhang, Wenshou Tian, 2011, Factors Affecting The surface Radiation Trends Over China Between 1960-2000. Atmospheric Environment. 45. 2379-2385, 10.1016/ j.atmosenv.2011.02.028

14. Wang Chenghai, XZ Liang, A,Samel, 2011, AMIPII GCMs Simulations of East China precipitation Seasonal and interannual Variation. Journal of Climate, 24(8). 2116-2133. doi: 10.1016/ j.atmosenv.2011.02.028

15. Wang Chenghai , Cui Yang, Jin Shuanglong, 2010. Oscillation Propagation Features of Atmosphere around the Qinghai-Xizang 高原 during the Spring Season of Typical Strong and Weak Monsoon Years. SCIENCE CHINA 地球 Sciences 54(2): 305-314, DOI: 10.1007/s11430-010-4113-x

16. CUI Yang,WANG Cheng-hai,2009.Comparison of sensible and latent heat fluxes from reanalysis datasets during the transition season over the western Tibetan 高原 Progress in Nature Science.19(6): 719-726. DOI: 10.1016/j.pnsc.2008.11.001

17. Li Xin, Huang Chunlin, Che Tao,Jin Rui, Wang Shugong,Wang Jiemin, Gao Feng, Zhang Shuwen, Qiu Chongjian,Wang Chenghai. 2007.Development of a Chinese land data assimilation system: its progress and prospects. Progress in Natural Science.17(8):881-892

18. Wang Chenghai, Dong wenjie, Wei zhigang,2003.Study on Relationship between Freezing-Thawing Processes of the Qinghai-Tibet 高原 and the Atmospheric Circulation over East Asia,Chinese Journal of Geophysics. 46(3):438-441. DOI:10.1002/cjg2.3361.

19. Wang C.-H., W.-J. Dong and Z.-G.Wei, 2002.Anomaly feature of seasonal frozen soil variance on the Qinghai-Tibet 高原, JOURNAL OF GEOGRAPHICAL SCIENCES. Vol.12 (1): 99-107, DOI: 10.1007/BF02837433

20. Wang C.-H, S.-G.Wang, D.-B.Yang, 日本电视台Dong, 2003, The correlation between the Pacific sea surface 温度(SST) and precipitation over NW China. J. Tropical 气象学 Vol.9(1):64-73.

21. Meixue Yang, Tandong Yao, Fresderick Nelson, Nikolay I Shiklomanov, Donglin Guo, Chenhai Wang, 2008, Snow cover and depth of freeze-thaw on the Tibet 高原: a case study from 1997 to 1998. Physical Geography, 29(3):208-221

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