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中国科学院南京土壤研究所 潘喜才 男 硕导
 

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研究领域

1)田间尺度土体结构(静态/动态)的地球物理方法识别与基于多源信息融合的三维重构;

2)地球关键带土体结构演变与生态水文功能模拟:冻土环境/农田环境;

3)变化环境下农田生态过程响应与地力提升调控机理。

 

招生信息

  • 硕士研究生招生专业为土壤学,研究方向为土壤环境物理、土壤地理、土壤障碍因子消减技术与中低产田治理等

招生专业
090301-土壤学
070501-自然地理学

教育背景

2008-01--2011-04   海德堡大学   博士
2004-09--2007-07   中国科学院寒区旱区环境与工程研究所   硕士
2000-09--2004-07   中国地质大学(武汉)   学士
学历

中国地质大学(武汉),水文与水资源工程,本科(2000-2004

中国科学院寒区旱区环境与工程研究所,岩土工程,硕士(2004-2007

德国海德堡大学,环境物理,博士(2008-2011

 

学位
   

工作经历

德国海德堡大学,环境物理研究所,博士后(2011-2012

加拿大萨斯喀彻温大学,全球水安全研究所,博士后(2012-2016

德国海德堡大学,环境物理研究所,副研究员(2016-2017

中国科学院南京土壤研究所,研究员(2017-至今)

 

社会兼职
   

教授课程

   

专利与奖励

   
奖励信息
   
专利成果
( 1 ) 一种利用自然冷能阻止多年冻土层上水向开挖基坑涌水的方法, 发明, 2014, 第 3 作者, 专利号: 210210042422.6

出版信息

  1.  

  1. Yu, Qihao, Yanhu Mu, Chang Yuan, Wei Ma, Xicai Pan, The cold accumulative effect of  expressway embankment with a combined cooling measure in permafrost zones, Cold Regions Science and Technology, doi:10.1016/j. coldregions.2019.04.009

  2. Yanhui You, Mingbin Yang, Qihao Yu, Xicai Pan, Lei Guo, Xinbin Wang, Qingbai Wu , Factors influencing the reliability of grounded and floating ice distinguishing based on ground penetrating radar reflection amplitude. Cold Regions Science and Technology, 154, 1-8 doi:10.1016/j.coldregions.2018.06.008, 2018.

  3. Gao Hongkai, Li Hong, Duan Zheng, Ren Ze, Meng Xiaoyu, Pan Xicai. Modelling glacier variation and its impact on water resource in the Urumqi Glacier No. 1 in Central Asia. Science of the Total Environment 644,1160–1170, 2018.

  4. Pan, Xicai; Yu, Qihao; You, Yanhui; Chun, Kwok Pan; Shi, Xiaogang; Li, Yanping. Contribution of supra-permafrost discharge to thermokarst lake water balances on the northeastern Qinghai-Tibet Plateau, Journal of Hydrology, 555: 621–6301. Doi:10.1016/j.jhydrol.2017.10.046, 2017

  5. Pan, X., Helgason, W., Ireson, A., Wheater, H.: Field-scale water balance closure in seasonally frozen conditions, Hydrology and Earth System Sciences, 21, 5401–5413, 2017. 

  6. You,Yanhui; Wang, Jinchang; Wu, Qingbai; Yu, Qihao; Pan, Xicai; Wang, Xinbin; Guo, Lei. Causes of pile foundation failure in permafrost regions: The case study of a dry bridge of the Qinghai-Tibet Railway, Engineering Geology, 230, 95–103, 2017

  7. You Y., Yu Q., Pan X., Wang X., Guo L., Wu Q.Thermal effects of lateral suprapermafrost water flow around a thermokarst lake on the QinghaiTibet Plateau, Hydrological Processes, 31(13): 2429-2437, 2017. 

  8. You, Y., Yu, Q., Pan, X., Wang, X., Guo, L.Geophysical imaging of permafrost and talik configuration beneath a thermokarst lake, Permafrost and Periglacial Processes, 28: 470–476doi: 10.1002/ppp.1938, 2017. 

  9. Pan, X., Yang, D., Li, Y., Barr, A., Helgason, W., Hayashi, M., Marsh, P., Pomeroy, J., Janowicz, R. J.: Bias corrections of precipitation measurements across experimental sites in different ecoclimatic regions of western Canada, The Cryosphere, 10, 2347–2360, 2016, doi:10.5194/tc-2016-122.

  10. Pan, X., Li, Y., Yu, Q., Shi, X., Yang, D., and Roth, K.: Effects of stratified active layers on the high-altitude permafrost warming: a case study on the Qinghai-Tibet Plateau, The Cryosphere, 10, 1591–1603, 2016, doi:10.5194/tc-2015-201.

  11. Pan, X., Ireson, A., Helgason, W. and Chun, K.: An efficient calibration technique for heat dissipation matric water potential sensors, Soil Science Society of America Journal. 79:1115–1122, 2015, doi:10.2136/sssaj14.10.0413.

  12. Pan, X., You, Y., Yu, Q., Roth, K., Guo, L., and Wang, X.: Mapping permafrost features that influence hydrological processes of a thermokarst lake on the Qinghai-Tibet Plateau, Permafrost and Periglacial Processes. doi: 10.1002/ppp.1797, 2014.

  13. You, Y., Yu, Q., Pan, X., Wang, X., Guo, L.: Application of electrical resistivity tomography in investigating depth of permafrost base and permafrost structure in Tibetan Plateau, Cold Regions Science and Technology, 87, 19-26, doi:10.1016/j.coldregions. 2012.11.004, 2013.

  14. Pan, X., Zhang, J., Huang, P., and Roth, K.: Estimating field-scale soil water dynamics at a heterogeneous site using multi-channel GPR, Hydrology and Earth System Sciences, 16, 4361-4372, doi:10.5194/hess-16-4361-2012, 2012.

  15. Pan, X., Wollschläger, U., Gerhards, H., and Roth, K.: Optimization of multi-channel ground-penetrating radar for quantifying field-scale soil water dynamics, Journal of Applied Geophysics, 82, 101-109. doi:10.1016/j.jappgeo.2012.02.007, 2012.

  16. Weismüller, J., Wollschläger, U., Boike, J., Pan, X., Yu, Q., and Roth, K.: Modeling the thermal dynamics of the active layer at two contrasting permafrost sites, The Cryosphere, 5, 741-757, doi:10.5194/tc-5-741-2011, 2011.

  17. YU Qihao, GUWei, QIAN Jin, ZHANG Jianming, PAN Xicai. Problem Analysis of High Grade Highway Construction in Permafrost Regions. 2010Highway, 2010Novermber74-80.

  18. Gerhards, H., Wollschläger, U., Yu, Q., Schiwek, P., Pan, X., and Roth, K.: Continuous and simultaneous measurement of reflector depth and average soil-water content with multichannel ground-penetrating radar, Geophysics, 71, doi:10.1190/1.2943669, 2008.

  19. Yu, Q., Niu, F., Pan, X., Bai, Y., and Zhang, M.: Investigation of embankment with temperature-controlled ventilation along the Qinghai-Tibet railway, Cold Regions Science and Technology, 53(2):193–199, doi:10.1016/j.coldregions.2007.07.002, 2008.

  20. Yu Q., Pan, X., Cheng, G., and He, N.: An experimental study on the cooling mechanism of a shading board in permafrost engineering, Cold Regions Science and Technology, 53(3):298–304, 2008.

  21. Yu Q., Pan, X., Cheng, G., and Bai, Y.: Heat transfer process of roadway embankments with different type and width of road surface in permafrost regions, Progress in Natural Science, 17(3):314–319, 2007.

  22. 俞祁浩潘喜才程国栋何乃武.通风路基主要影响因素及应对措施研究.岩石力学与工程学报, V26(S1): 3045-3045, 2007.

  23. Yu, Q., Cheng, G., He, N., Pan, X.: The study on heat transfer process in the permafrost embankment with different surface and width. Progress in Natural Science. 16(11): 1482-1486, 2006.

发表著作
   

科研活动

   
科研项目
( 1 ) 基于MT天然新材料优质耕作层快速构建技术研究, 参与, 国家级, 2017-01--2017-12
( 2 ) 田间复杂土体构型的探地雷达识别与三维重构, 主持, 国家级, 2018-01--2021-12
参与会议
(1)基于探地雷达观测的二维浅层土体结构及水力参数反演   土壤物理与生态环境学术研讨会   2018-08-01
(2)基于稳定同位素和卫星产品监测生态水文多尺度变化: 以波多黎各为例    ”中国水论坛“学术研讨会   2017-11-10
(3)Parameterization of Water Flow in Prairie Shallow Critical Zone with Vertically Integrated Hydraulic Functions   “土壤物理学与水土资源可持续利用”学术研讨会   2017-08-03

合作情况

   
项目协作单位
   

指导学生

现指导学生

韩雨迪  硕士研究生  090301-土壤学  

 

 
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