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邓建辉 教授

四川大学-香港理工大学灾后重建与管理学院二级教授、博士生导师,全国注册岩土工程师,四川省天府杰出科学家、学术和技术带头人,重庆市巴渝学者讲座教授,《岩石力学与工程学报》、《岩土力学》、《工程科学与技术》、《防灾减灾工程学报》等期刊编委。主要研究方向为岩石工程与地质灾害、西南山区堵江滑坡与河谷地貌演变。


联系方式

jhdeng@scu.edu.cn


代表性成果

截至2026年6月,发表学术论文近300篇,其中SCI收录100余篇;出版专著4部;获得发明专利30项,代表性论文如下:

[1] Zhou X, Deng J, Zhao S, et al. Field and numerical investigations of the highest natural dam in the Jinsha River catchment formed by the Wangdalong landslide. Journal of Rock Mechanics and Geotechnical Engineering, 2026,18:4457–4473

[2] Fu Zhiguo, Chen Fei, Deng Jianhui, Zhao Siyuan, et al. Statistical investigation of induced seismicity associated with the impoundment of the Xiangjiaba Reservoir, Southwestern China. Bulletin of Engineering Geology and the Environment, 2024, 83(4): 106.

[3] Zhou, X., Deng J., Zhao, S., et al. (2024). Formation and breach of the giant Cuola landslide dam and their impacts on the landscape evolution of river valley in the Jinsha River, southeastern Tibet. Landslides 21(11): 2655-2671.

[4] Zhu, J., Deng J, Ning P. et al. (2024). Effects of Water Saturation and Loading Condition on Rock Tensile Strength: Insights from Acoustic Emission Analysis. Rock Mechanics and Rock Engineering 57(1): 163-179.

[5] Zhao S, Dai F, Deng J, et al. Insights into landslide development and susceptibility in extremely complex alpine geoenvironments along the western Sichuan–Tibet Engineering Corridor, China. Catena, 2023, 227: 107105.

[6] He, Z., Wang F, Deng J et al. Fracture and energy evolution of rock specimens with a circular hole under multilevel cyclic loading. Theoretical and Applied Fracture Mechanics, 2023, 127:103996.

[7] Li, H., Gheibi A, Hedayat A, Yin J, Deng J. Experimental validation of a velocity discontinuity model for prediction of the seismic and static shear stiffness of rock joints. International Journal of Rock Mechanics and Mining Sciences, 2023, 165:105360.

[8] Yang, S., et al. A Nonlinear Viscoelastic Model for Wave Propagation in Porous Sandstones Under Uniaxial Loads. Rock Mechanics and Rock Engineering, 2023, 56(10): 7639-7653.

[9] Zhu, J., Deng J, Chen F, Wang F. (2022). Failure analysis of water-bearing rock under direct tension using acoustic emission. Engineering Geology 299:106541

[10] Zhao, S., He Z, Deng J et al. (2022). Giant river-blocking landslide dams with multiple failure sources in the Nu River and the impact on transient landscape evolution in southeastern Tibet. Geomorphology 413.

[11] Li H, Deng J, Yin J, et al. An experimental and analytical study of rate-dependent shear behaviour of rough joints. International Journal of Rock Mechanics and Mining Sciences. 2021, 142. https://doi.org/10.1016/j.ijrmms.2021.104702

[12] Chen F, Gao Y, Zhao S, Deng J, et al. Kinematic process and mechanism of the two slope failures at Baige Village in the upper reaches of the Jinsha River, China. Bulletin of Engineering Geology and the Environment. 2021, 80(4): 3475-3493.

[13] Cui Y, Deng J, Hu W, et al. Cl-36 exposure dating of the Mahu Giant landslide (Sichuan Province, China). Engineering Geology. 2021;285: 106039.

[14] Liu T, Zheng J, Deng J. A new iteration clustering method for rock discontinuity sets considering discontinuity trace lengths and orientations. Bulletin of Engineering Geology and the Environment. 2021, 80(1): 413-428.

[15] Li H, Zhou T, Deng J, Yin J, Zhu J. An excess stress model for capturing rate-dependent compressive behavior of rock joint and its validation and applications. International Journal of Rock Mechanics and Mining Sciences. 2020;128.

[16] Wang F, Wang M, Zhu Z, et al. Rock Dynamic Crack Propagation Behaviour and Determination Method with Improved Single Cleavage Semi-circle Specimen Under Impact Loads. Acta Mechanica Solida Sinica. 2020;33(6): 793-811.

[17] Zhang Z & Deng J. 2020, A new method for determining the crack classification criterion in acoustic emission parameter analysis. International Journal of Rock Mechanics and Mining Sciences, 2020,130. 3239-3249.

[18] Wang Y, Deng J, Li L, et al. Micro‑failure Analysis of Direct and Flat Loading Brazilian Tensile Tests. Rock Mechanics and Rock Engineering (2019) 52:4175–4187.

[19] Zhang Z.H., Deng J.H., Zhu J.B., Li L.R. An Experimental Investigation of the Failure Mechanisms of Jointed and Intact Marble under Compression Based on Quantitative Analysis of Acoustic Emission Waveforms[J]. Rock Mechanics and Rock Engineering, 2018, 51(7), 2299-2307.

[20] Li L R, Deng J H, Zheng L, et al. Dominant Frequency Characteristics of Acoustic Emissions in White Marble During Direct Tensile Tests[J]. Rock Mechanics & Rock Engineering, 2017, 50(5):1-10.

[21] Liu T, Deng J, Zheng J, Zheng L, Zhang Z, Zheng H. A new semi-deterministic block theory method with digital photogrammetry for stability analysis of a high rock slope in China. Engineering Geology. 2017, 216: 76-89.

[22] Li L R, Deng J H, Liu J F, et al. A new understanding of punch-through shear testing[J]. Geotechnique Letters, 2017, 7(2):129-135.

[23] Chen T, Deng J, Sitar N, et al. Stability investigation and stabilization of a heavily fractured and loosened rock slope during construction of a strategic hydropower station in China. Engineering Geology. 2017;221: 70-81.

[24] Deng J.H., Tham, L.G., Lee, C.F. and Yang, Z.Y. 2007. Three-dimensional stability evaluation of a preexisting landslide with multiple sliding directions by the strength-reduction technique. Canadian Geotechnical Journal. 44(3): 343-354.

[25] Dai, FC, Lee, CF, Deng, JH, Tham, LG. 2005. The 1786 earthquake-triggered landslide dam and subsequent dam-break flood on the Dadu River, Southwestern China. Geomorphology, 65(3-4): 205-221.

[26] Dai, FC, Deng JH,Tham, LG, Law, KT, Lee, CF. 2004. A large landslide in Zigui County, Three Gorges area- A factual report. Canadian Geotechnical Journal, 41 (6): 1233-1240.

[27] Deng, JH, Lee, CF & Ge, XR. 2001. Characterization of the disturbed zone in a large rock excavation for the Three Gorges Project. Canadian Geotechnical Journal, 38(1): 95-106.

[28] 韩建华,陈菲,谢晨希,叶成林,邓建辉.基于地质演变分析的岸坡堆积体稳定性评价[J/OL].工程科学与技术. DOI:10.12454/j.jsuese.202400630

[29] 邓建辉,周小棚,赵思远等. 河谷文明演变与历史滑坡堵江——以金沙江上游卓英村为例 [J]. 工程科学与技术, 2023, 55 (06): 1-9.

[30] 邓建辉,李化,戴福初等.金沙江上游超大古堰塞湖及其相关问题[J].工程科学与技术,2022,54(06):75-84.DOI:10.15961/j.jsuese.202100989.

[31] 邓建辉,高云建,姚鑫等.八宿巨型滑坡的发现及其意义[J].工程科学与技术,2021,53(03):19-28.DOI:10.15961/j.jsuese.202100319.

[32] 邓建辉,戴福初,文宝萍,姚鑫.青藏高原重大滑坡动力灾变与风险防控关键技术研究[J].工程科学与技术,2019,51(05):1-8.

[33] 邓建辉,高云建,余志球,谢和平.堰塞金沙江上游的白格滑坡形成机制与过程分析[J].工程科学与技术,2019,51(01):9-16.

[34] 邓建辉,李林芮,陈菲,刘建锋,余建.大理岩破坏的声发射双主频特征及其机制初探[J].工程科学与技术,2018,50(05):12-17.

[35] 彭琦,王俤剀,邓建辉,谢和平,汤荣,高鹏.地下厂房围岩变形特征分析[J].岩石力学与工程学报,2007(12):2583-2587.

[36] 王俤剀,彭琦,汤荣,邓建辉,曲宏略.地下厂房岩锚梁裂缝成因分析[J].岩石力学与工程学报,2007(10):2125-2129.

[37] 邓建辉,陈菲,尹虎,高明忠,蒙玉林,黄润太.泸定县四湾村滑坡的地质成因与稳定评价[J].岩石力学与工程学报,2007,26(10):1945-1950.

[38] 邓建辉,魏进兵,闵弘.基于强度折减概念的滑坡稳定性三维分析方法(I):滑带土抗剪强度参数反演分析[J].岩土力学,2003,24(6):896-900.


获奖情况

获得国家科技进步二等奖1项,省部级科技进步一等奖5项、二等奖3项,三等奖3项。曾获得《Canadian Geotechnical Journal》2001年度最佳论文提名奖(the R.M. Quigley Award)。


承担项目

主持“973”课题1项、国家重点研发计划项目1项、国家自然科学基金重点项目3项,面上项目4项,香港RGC项目1项。

代表性项目如下:

[1] 国家自然科学基金面上项目(41772322).硬岩的水软化机制研究,2018-2021

[2] 国家重点研发计划(2018YFC1505000). 青藏高原重大滑坡动力灾变与风险防控关键技术研究,2018-2021

[3] NSFC区域创新发展联合基金(U19A2098),深地岩石动力学及深地工程安全,2020-2023

[4] NSFC区域创新发展联合基金(U22A20601),藏东南水电开发引致重大地质灾害机制与评估,2023-2026

[5] 四川省自然科学基金重点项目(2023NSFSC0021),金沙江上游历史滑坡堵江的环境效应及其对藏彝走廊影响研究,2023-2025

[6] 西藏自治区重大科技专项“西藏重大自然灾害风险预判与防治关键技术及示范应用”课题三“西藏重大岩质滑坡灾害多动力机制与风险预判”(XZ202402ZD0001),2024-2027

[7] NSFC基金重点项目,晚更新世以来金沙江上游滑坡堵江事件及其河谷地貌演化效应,2027-2031。

[8] 金沙江乌东德水电站区域河段古滑坡堵江事件及其对水库岸坡稳定影响研究(21H0083),长江三峡勘测研究院有限公司(武汉)

[9] 白鹤滩水电站右岸库岸灾害风险预测与预警关键技术研究(22H1167),中国长江三峡集团公司

[10] 拉萨至林芝铁路改造项目雅鲁藏布江河谷水库坍岸及对铁路影响评价专题报告编制工作分包合同(包件三)(25H1540),中铁二院工程集团有限责任公司(勘-25-拉林-51)

[11] 向家坝和溪洛渡水库岸坡稳定性与水位日变幅优化研究(25H1270、25H1271),中国长江三峡集团有限公司


人才培养

本科生课程:《水利水电工程地质》、《地球系统科学导论》

研究生课程:《边坡工程》、《工程地质分析原理》、《岩土工程新进展》