一、个人简介
刘德军,教授、博士生导师,现任BV伟德官方网站(北京)BV伟德官方网站副院长、中国岩石力学与工程学会采矿岩石力学分会秘书长、软岩工程与深部灾害控制分会常务理事、地下工程分会理事、青年工作委员会委员、土木工程学会工程风险与保险研究分会常务理事。主持国家自然科学基金项目3项、省部级课题5项,校企合作项目20余项。获省部级/协会特等、一等及其他科研奖项7项,获省部级/协会特等、一等等教学奖项8项,发表学术论文120余篇,其中《Tunnelling and Underground Space Technology》、《Computers and Geotechnics》、《Thin-Walled Structures》\《Engineering Structures》、 《岩石力学与工程学报》、《岩土工程学报》、《土木工程学报》、《中国公路学报》等国际国内期刊SCI/EI论文90余篇;获授权国家发明/实用新型专利32项;入选全球前2%顶尖科学家榜单。
电子邮件: ldj@cumtb.edu.cn
二、教育背景
[1]. 2003.09-2007.06: 山东大学,土木工程本科
[2]. 2007.09-2010.06: 山东大学,岩土工程硕士
[3]. 2010.09-2014.03: 同济大学,隧道及地下建筑工程博士
[4]. 2012.09-2013.01: 长崎大学,地盘工学交流访学
三、研究领域
[1]. 隧道结构劣损机制、安全评价及韧性提升
[2]. 巷道围岩变形机制及控制方法技术
[3]. 混凝土结构新型加固方法
[4]. 岩石宏细观力学特性
四、代表性科研/教学成果
1. 项目
[1] 国家自然科学基金面上项目: 底拱局部接触损失下盾构隧道纵横向变形机制及钢板跨环协同控制,2025.01-2028.12,主持
[2] 国家自然科学基金面上项目: 盾构隧道FRP网格加固机理及可恢复性优化方法,2019.01-2022.12,主持
[3] 国家自然科学基金青年项目: 偏压荷载引起的隧道衬砌裂损机制及FRP网格加固方法研究,2016.01-2018.12,主持
[4] 国家重点研发计划“交通基础设施”重点专项: 长段落石膏岩层对铁路隧道工程的影响机理及工程对策,2023.12-2026.11,项目骨干
[5] 新疆自治区重点研发计划项目: 新疆矿山灾害全生命周期智慧运维及生态修复技术开发,2024.12-2027.12,项目骨干
[6] 自然科学创新培育类项目: 盾构隧道施工引起的地表沉降智能预测及施工参数优化,2024.01-2026.12,主持
[7] 重点领域交叉创新项目: 城市盾构隧道结构安全智能评价及可恢复性控制,2022.01-2023.12,主持
[8] 教育部重点实验室基金项目: 软土盾构隧道内表面加固界面作用机制研究,2018.01-2019.12,主持
[9] 国家重点实验室基金项目: 煤矿巷道承压环支护模型及钢混支架协同控制技术,2020.09-2022.08,主持
2. 论著
[1]. Dejun Liu, Ximing Wang, Huan Liu, Jianping Zuo, Weiping Zhao, Mingyao Li, Yanjun Liu. Flexural behavior of Concrete-Filled Steel Tubular (CFST) beams with T-shaped flange[J]. Journal of Constructional Steel Research, 2026, 238: 110169.
[2]. Dejun Liu, Zhuanglin Jiang, Jianping Zuo, Leiyu Gu, Kang Duan, Weiping Zhao, Yingjie Li. Structural performance of corrugated steel-reinforced tunnel lining: An experimental and numerical study[J]. Construction and Building Materials, 2025, 504: 144619.
[3]. Dejun Liu, Xiaoyun Yao, Qingqing Dai, Cong Tian, Jianwen Zheng. Debonding and control of shield tunnel strengthened with thin Plate[J]. Aci Structural Journal, 2025, 122(5): 17-28.
[4]. Xiaoyan Zhang, Lingfeng Meng, Qiang Li, Yaling Wang, Dejun Liu*, Kaiyuan Wei. Pore size distributions and fractal characteristics of basalt fiber-reinforced coral sand concrete[J]. Scientific Reports, 2025, 15(1): 22253.
[5]. Dejun Liu, Yuhang Song, Kaixuan Pang, Wenpeng Zhang, Kang Duan. Development of phosphate fast-setting cement mortar based on multi-objective intelligent optimization[J]. Journal of Building Engineering, 2025, 108: 112827.
[6]. Dejun Liu, Wenpeng Zhang, Kang Duan, Jianping Zuo, Mingyao Li, Xiaoyan Zhang, Xu Huang, Xuanwei Liang. Intelligent prediction and optimization of ground settlement induced by shield tunneling construction[J]. Tunnelling and Underground Space Technology, 2025, 160: 106486.
[7]. Mingyao Li, Lei Peng, Dejun Liu*, Jianping Zuo. Microstructure effect of mechanical and cracking behaviors on brittle rocks using image-based fast Fourier transform method[J]. Journal of Rock Mechanics and Geotechnical Engineering, 2025, 17(1): 399-413.
[8]. Dejun Liu, Zhuanglin Jiang, Xiao Long, Kang Duan, Mingyao Li. Comparison of flexural performance of reinforced concrete beams reinforced with steel plates and corrugated steel plates[J]. Case Studies in Construction Materials, 2024: e04047.
[9]. Xianda Feng, Dejun Liu*, Yihao Guo, Fei Zhong, Jianping Zuo, Wei Liu. Research on mechanical performance of longitudinal joints in segmental tunnel linings strengthened by fiber-reinforced plastic grid with polymer-cement-mortar method[J]. Frontiers of Structural and Civil Engineering, 2024, 18(10):1610-1625.
[10]. Dejun Liu, Wenpeng Zhang, Qingqing Dai, Jiayao Chen, Kang Duan, Mingyao Li. Safety evaluation method for operational shield tunnels based on semi-supervised learning and a stacking algorithm[J]. Tunnelling and Underground Space Technology, 2024, 153: 106207.
[11]. Dejun Liu, Xianda Feng, Kang Duan, Jianping Zuo, Guoliang Chen, Mingyao Li, Yongquan Chang, Zhiheng Xia. A novel concrete-filled flange steel tubular composite supports for tunnels: A numerical perspective[J]. Case Studies in Construction Materials, 2024: e03384.
[12]. Feng Xianda, Liu Dejun*, Long Xiao, Duan Kang, Zuo Jianping, Liu Wei, Dong Haiyang. Flexural Capacity of the Normal Sections of Concrete Beams Strengthened with Corrugated Steel Plates[J]. Buildings, 2024, 14, 398.
[13]. Dejun Liu, Cong Tian, Jianping Zuo, Fei Wang, Qunfang Hu. Mechanical behaviour of shield tunnel linings strengthened by steel plates spanning circumferential joints[J]. Structure and Infrastructure Engineering, 2023: 2211964.
[14]. Dejun Liu, Yihao Guo, Xiaoyun Yao. Interfacial behaviour of shield tunnel segment strengthened by thin plate at inner surface[J]. Advances in Materials and Engineering, 2022: 7715844.
[15]. Dejun Liu, Qi Shang, Meng Li, Jianping Zuo, Yang Gao, Fei Xu. Cracking behaviour of tunnel lining under bias pressure strengthened using FRP Grid-PCM method[J]. Tunnelling and Underground Space Technology, 2022, 123: 104436.
[16]. Dejun Liu, Zhiheng Xia, Jun Wang, Jianping Zuo. Flexural strengthening mechanism of concrete-filled steel tube beam by welding round steel at soffit of the beam[J]. Structures, 2021, 34: 2243-2261.
[17]. Jianping Zuo, Haiyan Liu, Dejun Liu*, Jun Wang, Tangliang Zhang, Fei Xu. Study on large deformation mechanism and concrete-filled steel tubular support technology for ventilation shaft roadway[J]. Bulletin of Engineering Geology and the Environment, 2021, 80: 6245-6262.
[18]. Dejun Liu, Cong Tian, Fei Wang, Qunfang Hu, Jianping Zuo. Longitudinal structural deformation mechanism of shield tunnel linings considering shearing dislocation of circumferential joints[J]. Computers and Geotechnics, 2021, 139: 104384.
[19]. Dejun Liu, Meng Li, Jianping Zuo, Yang Gao, Fei Zhong, Yang Zhang. Experimental and numerical investigation on cracking mechanism of tunnel lining under bias pressure[J]. Thin-Walled Structures, 2021, 163, 107693.
[20]. Liu Dejun, Zuo Jianping, Wang Jun, Zhang Tangliang, Liu Haiyan. Large deformation mechanism and concrete-filled steel tubular support control technology of soft rock roadway-A case study[J]. Engineering Failure Analysis, 2020, 116: 104721.
[21]. Liu Dejun, Wang Fei, Hu Qunfang, Huang Hongwei, Zuo Jianping, Tian Cong, Zhang Dongming. Structural responses and treatments of shield tunnel due to leakage: A case study[J]. Tunnelling and Underground Space Technology, 2020, 103: 103471.
[22]. Liu Dejun, Wang Fei, Zhang Dongming, Duan Kang. Interfacial stresses of shield tunnel strengthened by a thin plate at inner surface[J]. Tunnelling and Underground Space Technology, 2019, 91: 103021.
[23]. Liu Dejun, Zuo Jianping, Wang Jun, Li Pan, Duan Kang, Zhang Dongming, Guo Song. Bending failure mechanism and strengthening of concrete-filled steel tubular support[J]. Engineering Structures, 2019, 198: 109449.
[24]. Liu Dejun, Huang Hongwei, Zuo Jianping, Duan Kang, Xue Yadong, Li Yingjie. Experimental and numerical study on short eccentric columns strengthened by textile-reinforced concrete under sustaining load[J]. Journal of Reinforced Plastics and Composites, 2017.36(23): 1712~1726.
[25]. Liu Dejun, Huang Hongwei, Yue Qingrui, Xue Yadong, Wang Mingzhuo. Behaviour of tunnel lining strengthened by textile-reinforced concrete [J]. Structure and Infrastructure Engineering, 2016.18(08): 964~976.
[26]. Liu Dejun, Huang hongwei, Yue Qingrui, Xue Yadong, Zeng Bin, Xu Qing. A rapidly solidified binder for textile-reinforced concrete[J]. Materials Research Innovations, 2015, 19: 1088~1094.
[27]. 刘德军,刘岩军,李静静,黄栩,高阳. 背后空洞对隧道衬砌结构安全性影响的智能评价[J]. 中南大学学报(自然科学版), 2025, 56(10): 4267-4283.
[28]. 刘德军,乔可可,商奇,左建平,段抗,董海洋,张成瑞. 复合地层大直径盾构隧道侧穿既有桩基扰动影响研究[J]. BV伟德官方网站学报, 2024, 53(06): 1144~1156.
[29]. 刘德军,夏志恒,王军,左建平,常永全. 圆钢加固钢管混凝土偏压构件弯曲性能提升机制[J]. 哈尔滨工业大学学报, 2023, 55(5): 122~131.
[30]. 刘德军,张杨,左建平,戴庆庆. 基于N-M 曲线的盾构隧道正截面承载性能加固评价及演化规律[J]. BV伟德官方网站学报, 2023, 52(1): 76-85.
[31]. 刘德军,夏志恒,王军,左建平,常永全,昌佳. 圆钢强化钢管混凝土梁正截面承载性能研究[J]. 中南大学学报(自然科学版), 2023, 54(1): 249-258.
[32]. 刘德军,戴庆庆,左建平,商奇,陈国亮,郭艺豪. 基于 Stacking 集成算法的岩爆等级预测研究[J].岩石力学与工程学报, 2022, 41(S1): 2915-2926.
[33]. 刘德军,仲飞,黄宏伟,左建平,薛亚东,张东明. 运营隧道衬砌病害诊治的现状与发展[J].中国公路学报, 2021, 34(11): 178-199.
[34]. 刘德军,仲飞,胡群芳,姚小云,王飞 张杨. 隧道下穿对引水隧洞的振动和开裂影响与控制[J].铁道工程学报, 2021, 270(3): 65-71.
[35]. 刘德军,左建平,刘海雁,洪紫杰,文金浩,史月. 我国煤矿巷道支护理论及技术的现状与发展趋势[J]. 矿业科学学报, 2020, 5(1): 22-33.
[36]. 刘德军,左建平,郭淞等.深部巷道钢管混凝土支架承载性能研究进展[J].BV伟德官方网站学报,2018, 47(6): 1193~1211.
[37]. 刘德军,黄宏伟,左建平等. 盾构管片横向大变形TRC控制方法及作用机制研究[J].岩石力学与工程学报, 2017, 36(10): 1-9.
[38]. 刘德军,岳清瑞,黄宏伟等. TRC加固水工偏心受压结构的抗裂性能初探[J].水利学报, 2016, 47(1): 101-109.
[39]. 刘德军,黄宏伟,岳清瑞.用于纤维编织网增强混凝土的早强基体材料[J].建筑材料学报, 2016, 19(5): 888-895.
[40]. 刘德军,黄宏伟,薛亚东.纤维编织网增强混凝土加固隧道衬砌数值研究[J].土木工程学报, 2015, 48(3): 112~120.
[41]. 刘德军,黄宏伟,岳清瑞等.隧道衬砌张拉裂缝开裂机制及快速修复方法初探[J].土木工程学报,2015, 48: 236~243.
[42]. 刘德军,黄宏伟,薛亚东.纤维编织网增强混凝土补强隧道衬砌力学性能研究[J].工程力学, 2014, 31(7): 91-99.
[43]. 薛亚东,刘德军,黄宏伟.纤维编织网增强混凝土侧面加固偏压短柱试验研究[J]. 工程力学, 2014, 31(3): 228-226.
[44]. 黄宏伟,刘德军,薛亚东.基于扩展有限元的隧道管片裂缝开裂数值分析[J].岩土工程学报, 2013, 35(2): 266~275.
[45]. 刘德军,黄宏伟,薛亚东.基于灰色关联的隧道管片裂缝致灾通道分析[J].同济大学学报(自然科学版), 2013, 41(11): 1664-1669.
[46]. 郑文华,刘德军. 基于FLAC3D二次开发的不连续变形模拟方法探讨[J].岩土工程学报, 2013, 35(1): 197~202.
[47]. 刘德军,吕晶,张强勇等.具有流变特性的盐岩相似材料的研制及应用[J].岩土工程学报, 2011, 11, 33(10): 1590~1595.
[48]. 刘德军,张强勇,陈旭光等. 深部巷道围岩破裂模型试验变形量测研究[J].四川大学学报(工程科学版),2010, 42(4): 71-77.
[49]. 张强勇,刘德军,贾超.盐岩油气储库介质地质力学模型相似材料的研制[J].岩土力学, 2009, 30(12): 3581-3586.
[50]. 张强勇,刘德军,王圣来. KDP晶体力学参数测试与分析[J].人工晶体学报, 2009, 38(6): 1313-1319.