教育经历
2010.09—2014.06 西南石油大学石油工程(A+)本科
2014.09—2017.06 西南石油大学油气井工程(A+)硕士(导师:孟英峰教授)
2018.09—2022.07 同济大学土木工程(A+)博士(导师:梁文灏院士、朱合华院士)
工作经历
2017.07—2018.04 中科院武汉岩土力学研究所 科研助理
2022.08—2025.03 同济大学土木工程学院 博士后
2025.03—至今 同济大学交通学院 研究员、副教授
研究方向
1、深部岩体力学与地下工程设计理论(交通铁路/公路深埋隧道、水工深埋隧洞、压缩空气储能硐室)
深部岩体强度理论与本构模型
深部岩体结构数字化原位探测与力学表征
深埋隧道(洞)应力-结构灾变控制与强度-刚度设计
2、极端环境高原铁路工程智能建造
高原铁路暖湿化盐渍冻土力学特性与极端环境承载理论
高原极端环境盐渍冻土-铁路轨道动力耦联作用机制与灾害防控
深埋隧道围岩-轨道互馈作用机制与链生灾变防控
成果被《Science》期刊遴选列入年度中国高校十大科学突破之一,获中国产学研科技创新成果一等奖、广西省技术发明奖、中国岩石力学与工程学会(CSRME)优秀博士学位论文奖(排名第1)、国际岩石力学与岩石工程学会(ISRM)“罗哈奖”提名、上海市“超级博士后”人才计划、同济大学优秀博士学位论文、优秀出站博士后、全国水工岩石力学优秀博士学位论文等奖项。发表高水平SCI、EI论文50余篇,授权/公开中国发明专利20余件、国际发明专利4件。
获奖情况
2024年中国产学研科技创新成果一等奖:复杂赋存环境下地下工程锚固岩体时效劣化机制与预测防控技术
2025年广西省技术发明奖:复杂环境隧洞岩体多场耦合破岩测掘装备与靶向防控关键技术
中国岩石力学与工程学会CSRME优秀博士学位论文奖(排名第1)、国际岩石力学与岩石工程学会ISRM“罗哈奖”提名奖、同济大学优秀博士学位论文奖、优秀出站博士后、全国水工岩石力学优秀博士论文奖等
发表刊物
发表高水平SCI、EI论文50余篇(一作/通讯20余篇,含17篇中科院一区Top期刊,3篇ESI高被引论文,6篇同济大学高水平科研能力提升创新论文),授权/公开中国发明专利20余件、国际发明专利4件,第二作者身份出版隧道工程领域专著2部。
部分代表性论著:
[1]Cai Wuqiang, Zhu Hehua, Liang Wenhao. Three-dimensional tunnel face extrusion and reinforcement effects of underground excavations in deep rock masses[J].International Journal of Rock Mechanics and Mining Sciences, 2022, 150: 104999.(中科院1区Top,连续4年ESI高被引论文)
[2]Cai Wuqiang, Su chenlong, Zhu Hehua, Liang Wenhao, Mao Yaocai, Xu Jinfeng, Xu Chen. Elastic–plastic response of a deep tunnel excavated in 3D Hoek–Brown rock mass considering different approaches for obtaining the out-of-plane stress[J].International Journal of Rock Mechanics and Mining Sciences, 2023, 169: 105425.(中科院1区Top)
[3]Cai Wuqiang, Zhu Hehua, Liang Wenhao. Three-dimensional stress rotation and control mechanism of deep tunneling incorporating generalized Zhang–Zhu strength-based forward analysis[J].Engineering Geology, 2022, 308: 106806.(中科院1区Top)
[4]Cai Wuqiang, Zhu Hehua, Liang Wenhao, Wang Xiaojun, Wei Xiangyang, Su Chenlong. A post-peak dilatancy model for soft rock and its application in deep tunnel excavation[J].Journal of Rock Mechanics and Geotechnical Engineering, 2023, 15(3): 683-701.(中科院1区Top,中国科技期刊卓越行动计划领军期刊,连续3年ESI高被引论文)
[5]Cai Wuqiang, Zhu Hehua,Liang Wenhao, Vu BaThao, Wu Wei. Physical and numerical investigation on nonlinear mechanical properties of deep-buried rock tunnel excavation unloading under complicated ground stresses[J].Tunnelling and Underground Space Technology,2023, 138: 105197.(中科院1区Top)
[6]Cai Wuqiang*, Zhu Hehua, Liang Wenhao, Zhang Lianyang, Wu Wei. A New Version of the Generalized Zhang–Zhu Strength Criterion and a Discussion on Its Smoothness and Convexity[J].Rock Mechanics and Rock Engineering, 2021, 54(8): 4265–4281.(中科院1区Top)
[7]Cai Wuqiang, Zhu Hehua, LiangWenhao, Vu BaThao, Su Chenlong, Zhang Keshen, Wang Xiaojun. Three-dimensional Forward Analysis and Real-time Design of Deep Tunneling Based on Digital In-situ Testing [J].International Journal of Mechanical Sciences, 2022, 226: 107385.(中科院1区Top)
[8]Wei Xiangyang,Cai Wuqiang*, Zhu Hehua, Liang Wenhao, Wang Xiaojun, Xu Jinfeng, Zhang Fengshou. Strength andGSIof deep rock mass: A GZZ strength criterion- and non-associated flow rule-based constitutive model and its application[J].International Journal of Mining Science and Technology,2026,(Online).(中科院1区Top)
[9]Su Chenlong,Cai Wuqiang*, Zhu Hehua. Elastoplastic semi-analytical investigation on a deep circular tunnel incorporating generalized Zhang-Zhu rock mass strength[J].Computers and Geotechnics, 2022, 150(4): 104926.(中科院1区Top)
[10]Su Chenlong, Zhu Hehua,Cai Wuqiang*, Wu Wei, Zhang Qi. Elastic perfect plastic rock mass analysis and equivalent GSI determination considering strain-softening behavior and three-dimensional strength[J].Tunnelling and Underground Space Technology,2023, 142: 105422.(中科院1区Top)
[11]Ma Yaocai,Cai Wuqiang*, Zhu Hehua, Su Chenlong, Wei Xiangyang. Plastic zone characteristics and rapid stability evaluation indexes of circular tunnels subjected to non-hydrostatic stress: A novel complex variable solution incorporating 3D rock mass strength[J].Tunnelling and Underground Space Technology,2024, 151: 105868.(中科院1区Top)
[12]Ma Yaocai, Zhu Hehua,Cai Wuqiang*, Su Chenlong, Wei Xiangyang, Zheng Zhi, Pu Jian. The stress-controlled mechanism of deep-buried tunnels based on functional gradient reinforcement in high tectonic stress zones[J].Journal of Rock Mechanics and Geotechnical Engineering, 2025.(中科院1区Top)
[13]Xu Jinfeng, Zhu Hehua,Cai Wuqiang*, Wu Kui, Wang Anming, Lyu Cheng. Failure mechanism analysis and yielding support control method for asymmetric large deformation tunnels in squeezing rock: A case study[J].Tunnelling and Underground Space Technology,2025, 158: 106426.(中科院1区Top)
[14]Su Chenlong, Zhu Hehua,Cai Wuqiang*, Zhang Lianyang, Chen Haohua, Zhang Qi, Zheng Zhi. Comprehensive evaluation of three-dimensional Hoek–Brown strength criteria: Properties, applicability, and parameter reliability[J].International Journal of Rock Mechanics and Mining Sciences,2025, 194: 106213.(中科院1区Top)
[15]Ma Yaocai, Zhu Hehua,Cai Wuqiang*, Su Chenlong, Wang Xiaojun. Analytical method for elastic-brittle-plastic analysis of a circular tunnel in a non-hydrostatic in-situ stress field considering the unified strength criterion[J].Applied Mathematical Modelling, 2023, 121: 780–799.(Q1,Top)
[16]蔡武强,梁文灏,朱合华*.深埋岩体隧道开挖面三维非线性挤出效应分析[J].岩石力学与工程学报, 2021, 40(9): 1868–1883.
[17]朱合华,蔡武强*,梁文灏. GZZ岩体强度三维分析理论与深埋隧道应力控制设计分析方法[J].岩石力学与工程学报, 2023, 42(1): 1–28.
[18]蔡武强*.岩体三维精细本构理论与深埋隧道应力控制设计分析方法[J].岩石力学与工程学报, 2022, 41(11): 2376.
[19]朱合华,蔡武强,武威.岩体隧道稳定三维精细化数值计算与分析[M]//龚晓南.岩土工程计算与分析.北京:中国建筑工业出版社, 2021: 330–399.
[20]朱合华,蔡武强,张琦,陈浩华,苏辰龙,沈益鑫,卫向阳.广义Zhang-Zhu岩体三维强度理论[M]//周创兵.水工岩石力学科技前沿.北京:科学出版社, 2026: 132–153.
部分代表性发明专利
[1]蔡武强,朱合华,梁文灏,徐金峰,马耀财,武威,卫向阳,苏辰龙,王肖骏.考虑围岩应力主轴旋转的深埋隧道主动控制支护设计方法[P].中国专利: CN116150843B, 2026-02-13.(发明授权)
[2]蔡武强,朱合华,徐金峰,梁文灏,武威,苏辰龙,马耀财,卫向阳.一种考虑岩体三维强度的深埋隧道支护时机快速确定方法[P].中国专利: CN115952661B, 2025-11-25.(发明授权)
[3]苏辰龙,蔡武强,朱合华,卫向阳,马耀财,王肖骏.一种深埋隧道开挖响应分析的半解析方法[P].中国专利: 202410102981.4, 2024-01-24.(发明授权)
[4]苏辰龙,蔡武强,朱合华,梁文灏,肖军华,陈力康,马耀财,卫向阳.基于三维强度与应变软化的岩体等效GSI参数取值方法[P].中国专利: 2026101142036, 2026-01-28.(发明授权)
[5]马耀财,朱合华,蔡武强,卫向阳,苏辰龙.一种深部硬岩隧道围岩稳定性三维动态量化评价方法[P].中国专利: 2023100994942, 2023-02-08.(发明授权)
[6]郑志,马展鹏,郑虹,陈炳瑞,裴书锋,徐鼎平,蔡武强,卢高明.地震/蠕滑诱发隧洞复杂断层活化离心机试验设备和方法[P].中国专利: CN120028156B, 2025-07-25.(发明授权)
[7]苏辰龙,蔡武强,朱合华,吕刚,梁文灏,肖军华,郑志,卫向阳.一种岩石应力的真三轴实验方法、装置、设备、介质和程序产品[P].中国专利: 2026101655925, 2026-02-05.(发明公开)
[8]马耀财,蔡武强,朱合华,武威,苏辰龙,卫向阳,王肖骏,蒲建.一种高构造应力区深埋隧道围岩稳定性快速量化评价方法[P].中国专利: 2025104296811, 2025-04-08.(发明公开)
[9]马耀财,蔡武强,朱合华,武威,卫向阳,苏辰龙,蒲建,王肖骏.一种穿越活动断裂带深埋隧道围岩功能梯度加固效应评价方法[P].中国专利: 2025104296807, 2025-04-08.(发明公开)
[10]徐金峰,蔡武强,朱合华,马耀财,武威,卫向阳.一种考虑岩体动力损伤的深埋隧道支护设计方法[P].中国专利: 2024116907328, 2024-11-25.(发明公开)
[11]徐金峰,李攀,蔡武强.隧道增阻自适应支护体系的动态设计施工反馈方法及体系[P].中国专利: 2023118579126, 2023-12-29.(发明公开)
[12]郑志,苏国韶,蔡武强,罗操,江权.高温高渗化学耦合下真三向动静组合剪切实验设备和方法[P].中国专利: 2023101217734, 2023-10-13.(发明公开)