
连帅龙,1991年10月出生,河南洛阳人,中共党员,博士,副教授(校聘),应急应急技术与管理系副主任。现任湖南科技大学资源环境与安全工程学院,矿业工程学科,应急技术与管理系专任教师。主要从事矿山岩体力学行为、岩体损伤、 水力耦合、岩体裂纹扩展机理、岩石力学行为理论与数值模拟、寒区露天矿山岩质边坡冻融损伤机制、寒区岩体冻胀变形与损伤机理、寒区隧道边坡等岩体工程灾害评估治理等方面的研究。近年来主持省级及校级科研项目3项,参与国家自然科学基金等课题10余项,在国内外主流权威期刊发表学术论文30余篇,其中在Engineering Geology, Construction and Building Materials, Theoretical and Applied Fracture Mechanic, International Journal of Damage Mechanics, Geomechanics and Geophysics for Geo-Energy and Geo-Resources, Bulletin of Engineering Geology and the Environment, Case Studies in Construction Materials, Scientific Reports, Sustainability, Reviews on Advanced Materials Science, Journal of Materials Engineering and Performance等SCI期刊检索20余篇,授权国家发明专利4项。目前担任Construction and Building Materials, Theoretical and Applied Fracture Mechanic, Engineering Fracture Mechanics, Engineering Failure Analysis, Geomechanics and Geophysics for Geo-Energy and Geo-Resources, Bulletin of Engineering Geology and the Environment, Journal of building engineering, Case Studies in Construction Materials, Result in Engineering, Scientific reports, Archive of Applied Mechanics, Sustainability, Applied Rheology等国际主流权威SCI期刊审稿人,并担任《矿业工程研究与开发》期刊青年编委。相关研究成果应邀在国际学术会议做主题报告7次。参与并完成瓮福磷矿磨坊矿、穿岩洞矿高陡边坡下地下开采安全施工控制技术研究、磨坊深部磷矿中大井工巷道掘进施工技术研究、磨坊深部磷矿中大井工巷道掘进施工技术研究增加内容之富含水地段井工巷道掘进施工技术研究、岩溶破碎带巷道施工技术研究与科技进步奖项申报服务、露采设计变更后穿岩洞矿段露采与地采影响关系研究等横向科研项目相关工作。目前本人所在的以湖南科技大学学科带头人赵延林、万文教授为核心的矿井防治水团队,聚焦于岩石流变-断裂-渗流耦合理论研究,为岩溶地区矿井建设灾害防控技术提供重要理论依据,团队与企业合作成立了湖南省企业科技创新团队:“湖南楚湘矿井灾害防治团队”,取得了一系列的理论与实践研究进展,已经发展并成为了一支特色鲜明的科研创新团队。团队热烈欢迎从事采矿工程、岩石力学与工程、岩土工程、工程力学、计算机等相关专业背景的同学加入。联系方式:sllianzbsb@126.com
主要代表性学术论文:
[1] Lian Shuailong, Zheng kun, Zhao Yu*, Bi Jing, Wang Chaolin, Huang Yansen, Investigation the effect of freeze–thaw cycle on fracture mode classification in concrete based on acoustic emission parameter analysis[J]. Construction and Building Materials, 2023,362,129789.(JCR分区:Q1, TOP期刊)
[2] Shuailong Lian, Jing Bi, Yu Zhao*, ChaolinWang, Can Du, Kun Zheng. Study on the pore structure and permeability evolution of tight sandstone under liquid nitrogen freezing‐thawing cycles based on NMR technology[J]. Geomechanics and Geophysics for Geo-Energy and Geo-Resources. 2024, 10:170. (JCR分区:Q1)
[3] Shuailong Lian, Lianyang Zhang, Yanlin Zhao*, Qiuhong Wu, Can Du, Wen Wan. Evolution characteristics of unfrozen water content and damage for saturated sandstone during freezing-thawing cycle process based on the in-situ nuclear magnetic resonance[J]. Bulletin of Engineering Geology and the Environment, 2025, 84, 296 . (JCR分区:Q1)
[4] Shuailong Lian, Yanlin Zhao, Wen Wan*, Qiuhong Wu, Rugao Gao, Min Wang. Study on the Freezing-Thawing Damage Mechanism and Evolution Model of saturated gray sandstone based on NMR and AE technology[J]. Bulletin of Engineering Geology and the Environment, 2025, 84, 560. (JCR分区:Q1)
[5] Shuailong Lian, Jingjing Huang, Wen Wan*, Yanlin Zhao, Weijun Wang, Xuan Wang, Qiuhong Wu. Study on the mechanical behavior of basalt-polypropylene fiber concrete: Insights from Experimental Testing and Numerical Simulation[J]. Case Studies in Construction Materials, 2026 (24), e05746, ISSN 2214-5095, https://doi.org/10.1016/j.cscm.2025.e05746.(JCR分区:Q1)
[6] Lian Shuailong, Wan Wen, Zhao Yanlin*, Wu Qiuhong, Du Can. Investigation of the mechanical behavior of rock-like material with two flaws subjected to biaxial compression[J]. Scientific Reports, 2024, 14,14136.(JCR分区:Q1)
[7] Lian Shuailong, Wan Wen, Zhao Yanlin*, Peng Wenqing, Du Can and Hu Hao. Study on the damage mechanism and evolution model of preloaded sandstone subjected to freezing–thawing action based on the NMR technology[J]. Reviews on Advanced Materials Science, 2024, 63(1) 20240034. (JCR分区:Q2)
[8] Lian Shuailong, Li Jiasheng, Gan Fei*, Bi Jing, Wang Chaolin, Zheng Kun. Investigation of the Shear Mechanical Behavior of Sandstone with Unloading Normal Stress after Freezing–Thawing Cycles[J]. Machines, 2021, 9: 339.(JCR分区:Q2)
[9] Shuailong Lian*, Jingjing Huang, Wen Wan, Yanlin Zhao, Xuan Li, Jiaxing Yang, Xuan Wang. Optimization of mix proportion of basalt-polypropylene fiber concrete based on response surface methodology[J]. Journal of Materials Engineering and Performance. https://doi.org/10.1007/s11665-026-13497-8. (JCR分区:Q2)
[10] Shuailong Lian, Yanlin Zhao, Wen Wan*, Qiuhong Wu, Kun Zheng, Can Du. Fracture characteristics and fracture toughness evaluation of I/II mixed type sandstone under freeze-thaw cycles[J]. Theoretical and Applied Fracture Mechanics, Revised. (JCR分区:Q1)
[11] Shuailong Lian, Jingjing Huang, Yanlin Zhao*, Wen Wan, Weijun Wang, Qiuhong Wu, Lianyang Zhang. Damage deterioration mechanism of sandstone subjected to freeze-thaw cycle under uniaxial compression conditions: Insights from macroscopic and microscopic perspectives.[J]. Bulletin of Engineering Geology and the Environment, Revised.
[12] Huang Jingjing, ZhaoYanlin, Lian Shuailong*,Wan Wen., Wu Qiuhong, Zhang, Lianyang. Study on Damage Mechanism and Damage Evolution Model of Sandstone Subjected to Freeze–Thaw Cycles. Journal of Materials Engineering and Performance (2026). https://doi.org/10.1007/s11665-025-13144-8. (JCR分区:Q2)
[13] Zhao Ning, Lian Shuailong*. Study of Damage Mechanism and Evolution Model of Concrete under Freeze–Thaw Cycles[J]. Applied Sciences. 2024, 14, 7693. https://doi.org/10.3390/ app14177693 (JCR分区:Q1)
[14] Huihong Chen, Yanlin Zhao, Shuailong Lian*, Lianyang Zhang. Formation law of frozen wall in shafts of neritic stratum with high salinity: ice water phase transition model and a case studys[J]. Journal of Materials Engineering and Performance, https://doi.org/ 10.1007/s11665-026-13375-3.(JCR分区:Q2)
[15] Zhao Yu, Lian Shuailong, Bi Jing*, Wang Chaolin, Zheng Kun. Study on Freezing-Thawing damage mechanism and evolution model of concrete[J]. Theoretical and Applied Fracture Mechanics, 2022, 121: 103439.(JCR分区:Q1)
[16] Zhao Yu, Lian Shuailong, Bi Jing*, Wang Chaolin, Zheng Kun. Investigation of the mechanical behavior and continuum damage model of sandstone after freezing–thawing cycle action under different immersion conditions[J]. Bulletin of Engineering Geology and the Environment, 2022, 81 (12): 505. (JCR分区:Q1)
[17] Li Jiashen, Lian Shuailong, Huang Yansen, Wang Chaolin*. Study on Crack Classification Criterion and Failure Evaluation Index of Red Sandstone Based on Acoustic Emission Parameter Analysis[J]. Sustainability, 2022, 14, 5143.(JCR分区:Q2)
[18] Hongna Lu, Shuailong Lian, Can Du*, Lei Wang, Qiumei Liu, Anjie Wu. Research on the mechanical properties and microstructure of high dosage β hemihydrate phosphogypsum based composite cementitious material[J]. Journal of Materials Engineering and Performance, https://doi.org/ 10.1007/s11665-026-13334-y.(JCR分区:Q1)
[19] Quan Daguo, Lian Shuailong, Bi jing*, Wang Chaolin. Analysis of Mechanical Properties of Sandstone under Freeze-Thaw Cycles Based on Digital Image Correlation (DIC)[J]. Geofluids, 2021,7101873. (JCR分区:Q2)
[20] Bi Jing, Du Can, Zhao Yu*, Wang Chaolin, Lian Shuailong, Xiong Xiaohui. Characterization of shear behavior and damage mechanism of periodic thermal loading sandstone based on NMR technique[J]. Engineering Geology, 2023, 325, 107272. (JCR分区:Q1, TOP期刊)
[21] Du Can, Bi Jing, Zhao Yu*, Wang Chaolin, Tang Wei, Lian Shuailong. Investigation of pore structure evolution and damage characteristics of high temperature rocks subjected to liquid nitrogen cooling shock[J]. International Journal of Damage Mechanics, 2024,0(0),1-34. ( JCR分区:Q1)
[22] Zheng Kun, Wang Chaolin, Zhao Yu*, Bi Jing, Niu Yong, Lian Shuailong. A dominant frequency-based hierarchical clustering method for evaluating the mode-II fracture mechanisms of shale using the acoustic emission technique[J]. Theoretical and Applied Fracture Mechanics, 2024, 1034464. ( JCR分区:Q1)
[23] Yuanzeng Wang , Wen Wan, Wei Chen*, Yanlin Zhao, Shuailong Lian, Qiuhong Wu, Wenqing Peng, Yu Zhou, Zhili Peng, Qiang Li. Multi-scale PFC2D-Experimental Assessment of Progressive Failure in Variable-Ratio Coal-Rock 3Composites[J]. Journal of Materials Engineering and Performance, https://doi.org/10.1007/s11665-026-13532-8. (JCR分区:Q2)
[24] Zhe Tan, Yanlin Zhao*, Lianyang Zhang, Rui Luo, Shuailong Lian, Minzhen Zhang, Zhao Liu. Multiaxial Mechanical Response and Crack Propagation in Steel Fiber- Reinforced Ultra-High Performance Concrete: Synergistic Experimental and Discrete Element Approach[J]. Journal of Materials Engineering and Performance, Revised. (JCR分区:Q2)
[25] Yingjie Zhang , Chuanqu Zhu , Yanlin Zhao* , Lianyang Zhang, Shuailong Lian, Rui Luo, Pei Tang. Study on thermal damage and pore structure evolution of granite under high temperature and different cooling methods.Bulletin of Engineering Geology and the Environment, Revised. (JCR分区:Q1)
[26] Teng Mingyang, Li Jiashen, Lian Shuailong, Bi Jing, Wang Chaolin. Shear Failure Mechanism and Numerical Simulation Analysis of Rock-like Materials with an Embedded Flaw[J]. Machines, 2022 (10): 382.(JCR分区:Q2)
[27] Chen Wei, Wan Wen*, Lian Shuailong, Xie Senlin, Zhou Yu, Peng Wenqing, Kuang Wenlong, Wang Xianqing, Tong Shasha. Mechanical Properties and Failure Modes of Thick-Walled Cylinder Granites with Different Apertures under Triaxial Compression[J]. Advances in Civil Engineering, 2020, 18, 8897086. (JCR分区:Q2)
[28] Chen Wei, Wan Wen*, Zhao Yanlin, Xie Senlin, Jiao bing, Dong Zhenming, Wang Xianqing, Lian Shuailong. Aging Features and Strength Model of Diorite’s Damage Considering Acidization[J]. Frontiers in Physics, 2020, 8. (JCR分区:Q2)
[29] 刘兵, 郑坤, 王超林*, 连帅龙. 冻融环境下基于声发射的砂岩各向异性劣化机理分析[J].中国地质灾害与防治学报,2024,35(01):132-142.
[30] 连帅龙, 万文*, 赵延林. 双轴加压下双裂隙类岩石材料破坏试验与数值[J].矿业工程研究,2018,33(04):45-50.
主持或参与纵向科研项目:
[1] 湖南科技大学校级科研启动项目,E52454, 冻融循环作用下裂隙岩体断裂行为研究,2024.05~2026.05,10万元,主持。
[2] 湖南省教育厅科学研究项目,24C0224,冻融循环作用岩体孔隙结构演化和损伤机理研究, 2024.12~2026.12, 1万元,主持。
[3] 国家自然科学基金面上项目,52574143,高铁隧道下伏急倾斜煤层采空区覆岩二次破断与地基活化机理,2026/1/1-2029/12/31,50万元,在研,参与。
[4] 湖南楚湘建筑工程有限公司,岩溶破碎带巷道施工技术研究与科技进步奖项申报服务,2024.11~2026.12,23万,在研,参与。
[5] 国家自然科学基金项目面上项目, 52274118, 露天-地下相向开采毗邻区域内复合岩体时效破断机理, 2023/1/1-2026/12/31,70.2万元,在研,参与。
[6] 国家自然科学基金项目面上项目, 52274118, 深立井富水基岩段井壁-帷幕注浆体-围岩协同承载与流变断裂机理, 2023/1/1-2026/12/31,58万元,在研,参与。
[7] 国家自然科学基金面上项目,51174088,二次卸荷条件下扰动岩体流变损伤破坏机理研究,2012/01-2015/12,60万元,已结题,参与。
[8] 国家自然科学基金面上项目,51774132,高湿环境高应力裂隙矿柱水化侵蚀与流变损伤破坏机制,2017/08-2021/12,60万元,已结题,参与。
[9] 国家自然科学基金地区科学基金项目,52164001,卸压作用下岩溶裂隙的跨尺度时空演化机制研究,2022/01-2025/12,35万,已结题,参与。
[10] 国家自然科学基金地区科学基金项目,52264006,页岩储层宏﹣细﹣微观流体运移关联性及多尺度模型研究,2022/01-2025/12,35万,已结题,参与。
[11] 国家自然科学基金地区科学基金项目,52064006, 非均压流体驱动水力裂隙起裂成网机理及有效缝网控制,2021/01-2024/12,35万元, 在已结题研,参与。
[12] 国家自然科学基金青年项目,52004072,复杂应力下岩体内置三维裂纹的生长行为与断裂机制研究,2021/01-2023/12,24万,已结题,参与。
[13] 贵州省科学技术厅, 黔科合平台人才-GCC[2022]005-1, 贵州省高层次创新型人才-百层次人才项目2022/07-2025/07,60万,已结题,参与。
[14] 贵州省科学技术厅, 黔科合支撑 [2020]4Y044号, 页岩气储层基质裂缝系统﹣细﹣微观流体运移关联性及跨尺度模型研究,2020/03-2023/03,40万元, 结题,参与。
[15] 贵州省科技计划项目“水热损伤干热岩的缝网扩展机制及地热关键技术研究与示范”,参与。
[16] 贵州省科技计划项目“基于多场耦合作用的富水区隧道涌突水机理及次生灾变链式效应研究”,参与。
[17] 贵州大学研究生创新基金项目,冻融循环砂岩卸载法向应力剪切力学特性研究,2021.3.30-2023.3.30,主持研究。
[18] 贵州省研究生创新基金项目,龙马溪组深地页岩储层脆-延转化特性及可压裂性能试验研究,YJSKYJJ〔2021〕065,2021.11~2022.11,参与。
代表专利:
[1] 廖健, 赵延林, 连帅龙. 岩石试件的酸碱腐蚀装置, 2018, 中国, CN207764099U.
[2] 赵瑜, 沈明轩, 毕靖, 王超林, 宁麟, 全大国, 党爽, 都粲, 连帅龙, 刘朝美, 黄彦森, 韦韬, 王化俗, 张坤鹏, 郑坤. 一种干湿循环三轴试验机及其使用方法, 2022, 中国, CN112834320A.
[3] 赵瑜, 沈明轩, 毕靖, 王超林, 宁麟, 杨进强, 韦韬, 党爽, 都粲, 连帅龙, 刘朝美, 黄彦森, 张坤鹏, 郑坤, 杨再荣, 王化俗. 一种注浆压力智能控制仪及智能注浆方法, 2021,中国, CN112506242A.
[4] 赵瑜, 沈明轩, 王超林, 毕靖, 杨再荣, 宁麟, 罗云凡, 丁丁, 党爽, 都粲, 连帅龙, 刘朝美, 黄彦森, 王化俗, 张坤鹏, 郑坤. 一种假三轴岩石试验机及其使用方法, 2021, 中国, CN202011168940.3.
获奖情况:
[1] 复杂地质条件下矿山注浆凿井水害防治关键技术研究与应用,2025年中国煤炭工业协会科学技术奖二等奖(R10)
[3] 贵州大学2023届优秀博士学位论文
[4] 2022~2023年 贵州大学研究生创新成果奖
[5] 2021~2022年 贵州大学研究生创新成果奖
[6] 2021~2022年 贵州大学博士研究生二等奖学金
[7] 2020~2021年 贵州大学博士研究生二等奖学金
[8] 湖南省第十一届研究生创新论坛‘岩土结构安全与绿色资源环境’分论坛三等奖。
学术报告:
[1] 连帅龙; Investigation the effect of freeze–thaw cycle on fracture mode classification in concrete based on acoustic emission parameter analysis, 第七届土木建筑与结构工程国际学术会议, 广州, 2023-4-13至2023-4-15 (学术报告)
[2] 连帅龙; 基于实时核磁共振技术对不同孔隙度砂岩未冻水含量演化及冻害特征研究, 第 42 届国际采矿岩层控制会议, 湘潭, 2023-10-20至2023-10-22 (学术报告)
[3] 连帅龙; 基于核磁共振技术冻融作用预加载砂岩损伤机理及演化模型研究, 第二十三届全国科学采矿与矿压理论会议, 湖南湘潭, 2024-7-19至2024-7-21 (学术报告)
[4] 连帅龙; Study on Pore Structure Evolution and Damage Mechanism of Freeze-Thaw Rock Mass in Cold Area, 第四届原位改性采矿国际研讨会(IMDPIM2024)暨第一届超深岩体力学与工程研讨会(URMME), 山西太原, 2024-8-8至2024-8-10 (学术报告)
[5] 2024-11-1至2024-11-3, 参加第43届国际采矿与岩层控制会议, 陕西西安, 连帅龙 (举办或参加学术会议)
[6] 连帅龙; 冻融循环作用下饱和砂岩孔隙水冻结特性与冻胀应变弹塑性模型研究, 第二十四届全国科学采矿与矿压理论及工程实践鸣高论坛, 陕西西安, 2025-7-18至2024-7-20(学术报告)
[7] 连帅龙; 冻融循环作用下饱和砂岩冻胀应变弹塑性模型研究, 第十届矿产资源综合开发国际学术会议, 黑龙江哈尔滨, 2025-9-26至2025-9-29(学术报告)
[8] 2025-5-19至2025-5-20, 参加2025全国矿业类人才培养教育论坛, 辽宁沈阳 连帅龙 (举办或参加学术会议)