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程青
  • 职称: 副教授 职称:
  • 岗位: 仅研究系列选择
  • 联系电话:
  • 办公地址:
  • 电子邮件: chengqing@nju.edu.cn
  • 课题组链接:

个人简介

程青,博士,副教授。入选国家高层次青年人才计划、中国科协青年托举人才、江苏省“333高层次人才”、江苏省“双创博士”。现任国际环境岩土工程学会秘书、江苏省力学学会岩土力学专业委员会副秘书长、中国土木工程学会土力学与岩土工程分会青年工作委员会委员等。

主要从事生态工程地质方面的研究,重点关注气候作用下工程土体的变形响应和大气-植被-土体的相互作用。主持国家自然科学基金青年项目、面上项目、国家重大研发计划子课题等科研项目;在GéotechniqueEngineering GeologyCanadian Geotechnical Journal等领域内国际主流期刊上发表SCI论文60余篇;授权/申请发明专利9项。

获教育部自然科学一等奖(排名第3)、第四届全国大学青年教师地质课程教学比赛特等奖、国际土力学及岩土工程学会“Bright Spark未来之星奖”、第七届“谷德振青年奖”、国际环境岩土工程学会“Hsai-Yang Fang最佳论文奖”、南京大学“通识教育优秀教学奖”、年南京大学“育教融合奖”等。

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                                                    每年招收博士研究生2名,硕士研究生2-3名,欢迎你加入!

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教育、工作经历:

2010.09-2014.06, 河海大学,学士

2014.09-2017.08, 香港科技大学, 博士 (导师:英国皇家工程院院士吴宏伟教授)

2017.09-2018.09, 香港科技大学,访问学者

2018.10-2021.01, 南京大学,助理研究员

2021.02   , 南京大学,副教授

研究兴趣:

Ÿ   饱和/非饱和土力学

Ÿ   极端气候作用下土体的工程性质响应

Ÿ   生态调控措施及作用机制

Ÿ   大气-植被-土体互馈作用及环境灾害效应

主持项目:

Ÿ   国家自然科学基金国际(地区)合作与交流项目,2025.01-2028.12,大气-植被协同作用下土体多重介质的水分运移机理,100万元

Ÿ   国家自然科学基金面上项目,2022.01-2025.12,大气-植被共同作用下土体干缩裂隙的发育与演化机制研究,60万元

Ÿ   国家重点研发计划专题,石窟寺壁画起甲、酥碱等典型病害精细化监测技术研究,2025.04-2028.0320万元

Ÿ   山地自然灾害与工程安全重点实验室(中国科学院)开放研究基金A类项目,植被覆盖对土质边坡降雨侵蚀的韧性防护,2025.10-2027.098万元

Ÿ   国家重点研发计划专题,2020.11-2024.10,低渗透地层中非水相污染物三维展布特征及源汇机制,94万元

Ÿ   国家自然科学基金青年项目,2020.01-2022.12,水-热耦合条件下压实黏性土干缩裂隙发育过程及理论模型研究,24万元

Ÿ   江苏省自然科学基金面上项目,2022.07-2025.06,植被土蒸发-收缩-开裂互馈过程与机理研究,10万元

Ÿ   成都理工地质灾害防治与地质环境保护国家重点实验室开放基金,2020.01-2021.12,基于微生物矿化作用的黄土水土流失防治研究,8万元

第一/通讯作者论文:

2026

1.         Cui, L. X., Cheng, Q.*, So, P. S., Tang, C. S., Yang, Z. M., Lu, Y., Li, C. Y. (2026) Modeling of saturated hydraulic conductivity for vegetated soils considering root-soil interactions. Journal of Rock Mechanics and Geotechnical Engineering, 18(4), 3131-3141.

2.         Cui, X., Cheng, Q.*, Tian, B. G., Tang, C. S., Shi, B. (2025) Influence of soil microstructure on disintegration characteristics of a compacted clayey soil subjected to drying. Journal of Rock Mechanics and Geotechnical Engineering, 18()

3.         Yang, S.Q., Cheng, Q.*, Tang, C. S.*, Shi, B. (2026) Applications and advancements of infrared thermal imaging technology in geotechnical engineering: a review.Journal of Rock Mechanics and Geotechnical Engineering, 18(3), 2437-2451.

4.         Tian, B. G., Cheng, Q.*, Tang, C. S.*, Cui, Y. J., Wang, H., Shi, B. (2026) Microstructural effects on the tensile strength of a clayey soil during drying: experimental investigation and modelling. Acta Geotechnica, 21, 77-90.

5.         Cai, Z. L., Cheng, Q.*, Tang, C. S.*,Ji, X. L., Xu, J. J., Gu, Y. D., Shi, B. (2026) Size effects on desiccation cracking behavior of a clayey soil.Acta Geotechnica, 21, 2273-2289.

2025

6.         Cheng, Q.*, Zhang, S. X., Tang, C. S., Tian, B. G., Shi, B. (2025) Thermal effects on tensile strength of a compacted soil. Canadian Geotechnical Journal, 62, 23. 1-12.

7.         Cui, L. X., Cheng, Q.*, So, P. S., Tang, C. S., Yang, Z. M., Lu, Y., Li, C. Y. (2025) Modeling of saturated hydraulic conductivity for vegetated soils considering root-soil interactions. Journal of Rock Mechanics and Geotechnical Engineering, 18(4)

8.         Yang, S.Q., Cheng, Q.*, Tang, C. S.*, Shi, B. (2025) Applications and advancements of infrared thermal imaging technology in geotechnical engineering: a review.Journal of Rock Mechanics and Geotechnical Engineering, 18(3)

9.         Tian, B. G., Cheng, Q.*, Tang, C. S.*, Cui, Y. J., Wang, H., Shi, B. (2025) Microstructural effects on tensile strength of unsaturated soils during drying. Acta Geotechnica,

10.     Mu, W., Tang, C. S.*, Cheng, Q.*, Hu, H. C., Tian, B. G., Liu, W. J., Zhou, Q. Y. (2025) 2D soil surface suction measurement using infrared thermal imaging technology. Environmental Earth Sciences, 84, 341.

2024

11.     Cheng, Q., Gu, Y. D.*, Tang, C. S.*, Zhang, X. Y., Shi, B. (2024) Desiccation cracking behaviour of a vegetated soil incorporating planting density. Canadian Geotechnical Journal, 61(1), 165-173.

12.     Cheng, Q., Tang, C. S.*, Rong, D. Z., Li, H. D., Shi, B. (2024) Effects of compaction state on structural strength of a clayey soil in micropenetrometer tests. Acta Geotechnica, 19, 2907-2918.

13.     Cui, L. X., Cheng, Q.*, So, P. S., Tang, C. S., Tian, B. G., Li, C. Y. (2024) Relationship between root characteristics and hydraulic conductivity in a grassed soil. Journal of Hydrology, 645, 132231.

14.     Li, C. Y., Cheng, Q.*, Tang, C. S., Gu, Y. D., Cui, L. X., Guo, H. W. (2024) Effects of layer thickness on desiccation cracking behaviour of a vegetated soil. Biogeotechnics, 2 (2), 100068.

15.     Zeng, Z. J., Tang, C. S.*, Cheng, Q.*, An, N., Yang, Z. M., Gong, X. L., Chen, X. Y. (2024) Field and numerical investigation of soil hydro-thermal response to the climatic conditions in southern China considering soil heterogeneity. Engineering Geology, 329, 107401.

16.     Zeng, Z. J., Tang, C. S.*, Cheng, Q.*, An, N., Chen, X. Y., Luo, Z. Q., Shi, B. (2024)Numerical Analysis of Environmental Influences on Evaporation in a Cracked Soil Slope. Computers and Geotechnics, 168, 106126.

17.   Xu, J. J., Tang, C. S.*, Cheng, Q.*, Vahedifard, F., Liu, B., Shi, B. (2024) Monitoring and early detection of soil desiccation cracking using distributed fiber optical sensing. Géotechnique, 74 (5), 7431-442.

18.     Cai, Z. L., Tang, C. S.*, Cheng, Q.*, Shi, B. (2024) Fracture morphology of desiccation cracks in clayey soil. Canadian Geotechnical Journal, 61(9), 1955-1967.

2023

19.     谷英东,程青*,唐朝生,施斌 (2023) 不同干密度条件下植被土干缩开裂特性试验研究, 岩土工程学报, 45(11), 2420-2428.

20.     Yang, Z. M., Cheng, Q.*, Tang, C. S.*,Tian, B. G., Zhang, X. Y. (2023) Coupled effects of temperature and relative humidity on desiccation curling of a clayey soil. Engineering Geology, 327, 107370.

21.     Tian, B. G., Cheng, Q.*, Tang, C. S.*, Shi, B. (2023) Healing behaviour of desiccation cracks in a clayey soil subjected to different wetting rates. Engineering Geology, 313, 106973.

22.     Tang, C. S.*, Cheng, Q.*, Gong, X. P., Shi, B., Inyang, H. I. (2023) Investigation on Microstructure Evolution of Clayey Soils: A Review Focusing on Wetting/Drying Process. Journal of Rock Mechanics and Geotechnical Engineering, 15, 268-284.

23.     Zeng, Z. J., Tang, C. S.*, Cheng, Q.*, An, N., Chen, X. Y., Shi, B. (2023) A numerical model of water evaporation from cracked soil. Computers and Geotechnics, 162, 105641.

2022

24.     Cheng, Q., Tang, C. S.*, Lin, Z. Z., Shi, B. (2022) Measurement of water content at bare soil surface with infrared thermal imaging technology. Journal of Hydrology, 615, 128715.

25.     Tian, B. G., Cheng, Q.*, Tang, C. S.*, Zeng, H., Xu, J. J., Shi, B. (2022) Effects of compaction state on desiccation cracking behaviour of a clayey soil subjected to wetting-drying cycles. Engineering Geology, 302, 106650.

26.     Tang, C. S.*, Cheng, Q.*, Lin, L., Zeng, H., Shi, B. (2022) Study on the dynamic mechanism of soil desiccation cracking by surface strain/displacement analysis. Computers & Geotechnics, 152, 104998.

27.     Xu, J. J., Tang, C. S.*, Cheng, Q.*, Xu, Q. L., Inyang, H. I., Lin, Z. Y., Shi, B. (2022) Investigation on desiccation cracking behavior of clayey soils with a perspective of fracture mechanics: a review. Journal of Soils and Sediments, 22, 859-888.

28.     Zeng, H., Tang, C. S.*, Cheng, Q.*, Zhu, C., Lin, Z. Z., Yin, L. Y., Shi, B. (2022) Desiccation-induced curling of mud layers: field observations and experimental insights. Engineering Geology, 296, 106458.

29.     Lv, C., Shen, Z., Cheng, Q.*, Tang, C. S.*, Wang, Y., Gu, K. (2022) Effects of biochar and polypropylene fiber on mechanical behavior of cement-solidified sludge. Soil Use and Management, 38, 1667-1678.

30.     Xu, J. J., Zhang, H., Tang, C. S.*, Cheng, Q.*, Liu, B., Shi, B. (2022) Automatic Soil Desiccation Crack Recognition Using Deep Learning. Géotechnique, 72(4), 337-349.

2021

31.     Cheng, Q., Tang, C. S.*, Xu, D., Zeng, H., Shi, B. (2021) Water infiltration in a cracked soil considering effect of drying-wetting cycles. Journal of Hydrology, 593, 125640.

32.     Cheng, Q., Tang, C. S.* (2021) Coupled effects of matric suction and temperature on the compression behaviour of loess. Environmental Geotechnics, 8(6), 401-407.

2020

33.     Cheng, Q., Zhou, C.*, Ng, C. W. W., Tang, C. S. (2020) Effects of soil structure on thermal softening of yield stress. Engineering Geology, 269,105544.

34.     Cheng, Q., Tang, C. S.*, Zeng, H., Zhu, C.,An, N., Shi, B. (2020) Effects of microstructure on desiccation cracking of a compacted soil. Engineering Geology, 265, 105418.

35.     Cheng, Q., Tang, C. S.*, Chen, Z. G., Zeng, H., Shi, B. (2020) Tensile behavior of clayey soils during desiccation cracking process. Engineering Geology, 279, 105909.

36.     Cheng, Q., Zhou, C., Ng, C. W. W., Tang, C. S.* (2020) Thermal effects on water retention behaviour of unsaturated collapsible loess. Journal of Soils and Sediments, 20(2), 756-762.

37.     Cheng, Q., Tang, C. S.*, Zhu, C., Li, K., Shi, B. (2020) Drying-induced soil shrinkage and desiccation cracking monitoring with distributed optical fiber sensing technique. Bulletin of Engineering Geology and the Environment, 79(8), 3959-3970.

38.     Tang, C. S., Cheng, Q.*, Wang, P., Wang, H.S., Wang, Y., Inyang, H. (2020) Hydro-mechanical behavior of fiber reinforced dredged sludge. Engineering Geology, 276, 105779.

39.     Tang, C. S.*, Cheng, Q.*, Leng, T., Shi, B., Zeng, H., Inyang, H. (2020) Effects of wetting-drying cycles and desiccation cracks on mechanical behavior of an unsaturated soil. Catena, 194, 104721.

40.     Zeng, H., Tang, C. S.*, Cheng, Q.*, Zhu, C., Yin, L.Y., Shi, B. (2020) Drought induced soil desiccation cracking behavior with consideration of basal friction and layer thickness. Water Resources Research, 56(7), e2019WR026948.

41.     Tang, C. S.*, Lin, L., Cheng, Q.*, Zhu, C., Wang, D. W., Lin, Z. Y., Shi, B. (2020) Quantification and Characterizing of soil microstructure features by image processing technique. Computers & Geotechnics, 128, 103817.

2019

42.     Cheng, Q., Ng, C. W. W., Zhou, C.*, Tang, C. S. (2019) A new water retention model that considers pore non-uniformity and evolution of pore size distribution. Bulletin of Engineering Geology and the Environment, 78(7), 5055-5065.

43.     Zeng, H., Tang, C. S.*, Cheng, Q.*, Inyang, H., Rong, D. Z., Lin, L., Shi, B. (2019) Coupling effects of interfacial friction and layer thickness on soil desiccation cracking behavior. Engineering Geology, 260, 105220.

2018

44.     Cheng, Q., Guo, H. W.*, Feng, T. G., Lu, Y. (2018) Volume changes of biochar-amended landfill cover soil under a thermal cycle. Waste Management & Research, 36(12), 1223-1227.

45.     Ng, C. W. W., Cheng, Q.*, Zhou, C. (2018) Thermal effects on yielding and wetting-induced collapse of recompacted and intact loess. Canadian Geotechnical Journal, 55(8), 1095-1103.

 

研究生培养:

入学时间

姓名

本科院校

毕业去向

2021

谷英东

河海大学

江苏苏美达成套设备工程有限公司

2021

张抒星

河南理工大学

青岛市生态环境局

2022

崔伶鑫

合肥工业大学

香港科技大学读博

2022

李聪颖

太原理工大学

合肥市科技馆

2023

崔旭

中国矿业大学

杭州市钱塘区委组织部

2023

陈婷婷

合肥工业大学

合肥选调

2024

高升旗

中国矿业大学(北京)

 

2024

龙飞和

中山大学

 

2025

甘仁雪

河海大学

 

2025

陆香雪

合肥工业大学

 

2025

程兰草

吉林大学

 

 


教育经历

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