方宏远

郑州大学水利与交通学院院长、黄河实验室(郑州大学)执行主任
研究方向:地下基础设施防灾减灾城市地下管道灾变防控技术与装备研发
办公地点:

个人简介

方宏远,男,郑州大学水利与交通学院教授、博导,国家重大人才工程入选者、宝钢优秀教师、河南省基础研究领军人才、河南省青年卓越创新群体负责人,主要研究方向为地下基础设施防灾减灾、城市地下管道灾变防控技术与装备研发。任郑州大学水利与交通学院院长、黄河实验室(郑州大学)执行主任、重大基础设施检测修复技术国家地方联合工程实验室副主任、地下工程灾变防控省部共建协同创新中心(教育部认定)执行主任、岩土工程检测修复技术河南省重点实验室主任,国际管线专业学会(1IUS)副会长等职。

主持国家重点研发计划课题2项、国家自然科学基金3项、省部基金和企业委托项目40余项;授权发明专利72项(含美国发明专利19项);发表SCI、EI论文292篇,其中Nature子刊1篇,中科院一区53篇,高被引、热点、封面论文8篇,H指数36,他引5700余次。出版专著3部;主编国家标准2项、地方标准工法5项,参编国家和行业标准5项。获国家科技进步二等奖1项,牵头获省部级科技进步一等奖2项、二等奖2项、日内瓦国际发明金奖和银奖各1项,参与获省部级科技进步一等奖5项、二等奖2。成果在广州、郑州、苏州、重庆等13个城市10000多公里道路与管道检修工程中成功应用。

学术兼职

[1] 国际管线专业学(International Institute of Underground Storage, IIUS),副会长
[2] 中国非开挖技术协会(China Society for Trenchless Technology, CSTT),常务理事
[3] 中国岩石力学与工程学会地质与岩土工程智能监测分会(Geological and Geotechnical Engineering Intelligent Monitoring Branch, Chinese Society for Rock Mechanics and Engineering, CSRME),常务理事
[4] 中国市政工程协会地下管道检测与修复专委会(China Municipal Engineering Association, CMEA),副秘书
[5] 中国力学学会委员会(Chinese Society of Theoretical and Applied Mechanics, CSTAM),委员
[6] 重大基础设施检测修复技术国家地方联合工程实验室,副主任
[7] 岩土工程检测修复技术河南省重点实验室,副主任
[8] 中国科协科技人才奖项,评审专家
[9] 《非开挖技术》期刊,编委
[10] 《中南大学学报》(英文版),编委
[11] 《南水北调与水利科技(中英文)》,编委
[12] 《北京工业大学学报》,青年编委

教学课程

本科生教学课程:

  • 文献检索与科技创新(24学时)
  • 给排水管网系统(40学时)
  • 城市交通与道路规划(24学时)
  • 水利类创新创业基础(32学时)

研究生教学课程:

  • 工程结构反分析理论(32学时)
  • 地下管网检测与修复新技术(32学时)

科研项目

[1] 主持国家重点研发计划课题“城市供水和排水管道病害全工况智能检测技术与装备”(课题负责人2022YFC3801002),2022.11-2026.10
[2] 主持国家重点研发计划课题“膨胀土岸坡和堤坝渗透滑动柔性修复加固技术”(课题负责人2017YFC1501204),2017.12-2021.12
[3] 主持国家重点研发计划专题“基于物性差异的城市既有给水和排水管线隐患精确定位”(课题负责人2016YFC0802402),2016.07-2021.12
[4] 主持国家自然科学基金面上项目“基于辛算法的复杂色散介质电磁响应精细化高效数值模型研究”(课题负责人51978536),2017.01-2020.12
[5] 主持国家自然科学基金面上项目“多场耦合作用下高聚物注浆修复材料与地下混凝土排水管道相互作用机理研究”(课题负责人51978630),2020.01-2023.12
[6] 主持国家自然科学基金青年项目“高聚物注浆材料介电特性及其探地雷达无损检测方法研究”(课题负责人41404096),2015.01-2017.12
[7] 主持河南省创新群体项目“城市地下管网安全防护”(课题负责人),2024.01-2027.12
[8] 主持河南省高校科技创新团队项目“城市地下排水管网灾变防控与韧性提升”(课题负责人23IRTSTHN004),2023.01-2025.12
[9] 主持河南省高校科技创新人才项目“地下管道灾变防控与非开挖修复技术”(课题负责人19HASTIT043),2020.01-2021.12
[10] 主持 教育部“蓝火计划”(惠州)产学研联合创新基金“地下排水安全防控技术集成与示范”(课题负责人CXZJHZ201742),2018.07-2022.03
[11] 主持河南省重大科技专项子课题“地下供水和排水管道灾变机理与隐患探测技术”(课题负责人171100310100),2017.01-2019.12
[12] 主持河南省科技攻关计划“高速公路高聚物注浆修复效果评价关键技术研究”(课题负责人152102310066),2015.01-2017.12
[13] 主持河南省高校重点科研项目“隧道衬砌病害自动识别关键技术研究”(课题负责人15A580005),2015.01-2016.12
[14] 主持河南省高校重点科研项目“高速公路软基高聚物碎石桩加固技术研究”(课题负责人14A580003),2014.01-2015.12

教研项目

[1] 河南省高等教育教学改革研究与实践重大项目(本科教育类),主持,2024
[2] 河南省高等教育教学改革研究与实践重点项目(研究生教育类),主持,2024
[3] 河南省研究生课程思政示范课程项目,主持,2025
[4] 河南省专创融合特色示范课程,主持,2023
[5] 河南省高等教育教学改革研究与实践项目(研究生教育类),主持,2021
[6] 河南省优秀研究生导师团队,主持,2022
[7] 郑州大学教学改革研究与实践项目,主持,2022
[8] 国家级一流本科课程线上课程,排2,2023
[9] 国家级第二批新工科研究与实践项目,排13,2023
[10] 教育部第二批新工科研究与实践项目,排18,2020
[11] 河南省高等教育教学改革研究与实践项目,排2,2021

论文和专著

【论文】

[1] Sun Mingming, Fang Hongyuan*, Wang Niannian, et al. Limit State Equation and Failure Pressure Prediction Model of Pipeline with Complex Loading[J]. Nature Communications, 2024,15(1):4473.
[2] Ma Duo, Fang Hongyuan*, Wang Niannian, Lu Hongfang, Matthews John, Zhang Chao. Transformer-optimized generation, detection, and tracking network for images with drainage pipeline defects. Computer-Aided Civil and Infrastructure Engineering, 2023.1.21.
[3] Hongjin Liu, Hongyuan Fang*, Xiang Yu, Yangyang Xia. Genetic algorithm optimized frequency-domain convolutional blind source separation for multiple leakage locations in water supply pipeline[J]. Computer-Aided Civil and Infrastructure Engineering, 2024, 39(12): 1285-1298.
[4] Ma Duo, Fang Hongyuan*, Wang Niannian, Zheng Hangwei, Dong Jiaxiu, Hu Haobang. Automatic defogging, deblurring, and real-time segmentation system for sewer pipeline defects[J]. Automation in Construction, 2022,144:104595.
[5] Danyang Di, Yu Bai, Hongyuan Fang*, Bin Sun, Niannian Wang, Bin Li. Intelligent siltation diagnosis for drainage pipelines using weak-form analysis and theory-guided neural networks in geo-infrastructure[J]. Automation in Construction, 2025, 176:106246.
[6] Du Yuchuan, Zhong Shan, Fang Hongyuan*, Wang Niannian, Liu Chenglong, Wu Difei, Sun Yan, Xiang Mang. Modeling automatic pavement crack object detection and pixel-level segmentation[J]. Automation in Construction, 2023.6, 150: 104840.
[7] Junyi Pi, Wenjing Xing, Siqi Wang, Shuai Zhang, Yangyang Xia, Chao Zhang, Xinxin Sang*, Hongyuan Fang*, Ren Liu*. Construction of fiber-reinforced composites with high-thickness: Achieving enhanced interfacial and mechanical properties through upconversion particles assisted near-infrared photopolymerizaton. Composites Part B: Engineering, 2024-08, 286: 111784.
[8] Fang Hongyuan, Tan Peiling*, Du Xueming*, Li Bin, Yang Kangjian, Zhang Yunhui. Mechanical response of buried HDPE double-wall corrugated pipe under traffic-sewage coupling load[J]. Tunnelling and Underground Space Technology, 2021.2, 108: 103664.
[9] Hongyuan Fang, Zhaoyang Zhang, Danyang Di*, Jinping Zhang, Bin Sun, Niannian Wang, Bin Li. Integrating fluid–solid coupling domain knowledge with deep learning models: An automatic and interpretable diagnostic system for the silting disease of drainage pipelines[J]. Tunnelling and Underground Space Technology, 2023, 142: 105386.
[10] Fang Hongyuan, Liu Chang, Du Xueming*, Li Bin, Zhai Kejie, Zhao Xiaohua, Du Mingrui, Xue Binghan, Wang Shanyong. Experimental study on the diffusion characteristics of nonaqueous reactive expansive polymers in sand and gravel media under dynamic water conditions[J]. Tunnelling and Underground Space Technology, 2023,142:105433.
[11 Hongyuan Fang, Jiayang Sun, Bin Li, Xueming Du, Niannian Wang, Danyang Di, Kejie Zhai. Longitudinal and circumferential bending moment responses of dislocated concrete pipes rehabilitated with CIPP liners under traffic loads[J]. Tunnelling and Underground Space Technology, 2025, 155:106222.
[12] Kanglian Yang, Jianwei Zhang, Hongyuan Fang*, Shaochun Ma, Lei Shi, Bin Li,Yizhuang Lou,Kuoyu Yang, Kejie Zhai. Mechanical performances of the pipe-liner structure under void conditions[J]. Tunnelling and Underground Space Technology, 2025, 159:106484.
[13] Zhai Kejie , Fang Hongyuan*, Di Dangyang, et al. Mechanical behavior of the rigid pipeline strengthened by CIPP under the action of soil pressure: Analytical solution and numerical simulation[J]. Tunnelling and Underground Space Technology, 2025, 166: 106938.
[14] Li Bin, Wang Fuming, Fang Hongyuan*, Yang Kangjian, Zhang Xijun, Ji Yanting. Experimental and Numerical Study on Polymer Grouting Pretreatment Technology in Void and Corroded Concrete pipes[J]. Tunnelling and Underground Space Technology, 2021.6, 113: 103842.
[15] Yang Kangjian, Fang Hongyuan*, Bu junlin, Zhang Xijun, Li Bin, Du Xueming, Zhang Zongyuan. Full-scale Experimental investigation of the Mechanical Characteristics of Corroded Buried Concrete Pipes after Cured-in-place-pipe Rehabilitation[J]. Tunnelling and Underground Space Technology, 2021.12, 117: 104153.
[16] Zhai Kejie, Fang Hongyuan*, Guo Chengchao, Ni Pengpeng, Wu Hanying, Wang Fuming. Full-scale Experiment and Numerical Simulation of Prestressed Concrete Cylinder Pipe with Broken Wires Strengthened By Prestressed CFRP[J]. Tunnelling and Underground Space Technology, 2021.9, 115: 104021.
[17] Du Xueming, Fang Hongyuan*, Wang Shanyong, Xue Binghan*, Wang Fuming. Experimental and Practical investigation of The Sealing Efficiency of Cement Grouting in Tortuous Fractures with Flowing Water[J]. Tunnelling and Underground Space Technology, 2021, 108: 103693.
[18] Zhang Xijun, Fang Hongyuan*, Hu Qunfang, Ma Baosong, Hu Shaowei, Du Mingrui, Du Xueming, Yang Kangjian, Li Bin, Shi Mingsheng. Mechanical Performance of Corroded Reinforced Concrete Pipelines Rehabilitated with Sprayed-On Cementitious Liners Subjected to Combined Loads[J]. Tunnelling and Underground Space Technology, 2022, 120: 104266.
[19] Zhai Kejie, Wang Fuming, Fang Hongyuan*, Ni Pengpeng, Ji Xinbo*, Guo Chengchao, Hu, Shaowei. Serviceability Assessment of Prestressed Concrete Cylinder Pipes with Broken Wires: Analytical Solution and Numerical Simulation[J]. Tunnelling and Underground Space Technology, 2022, 126: 104551.
[20] Li Bin, Fang Hongyuan*, Zhai Kejie, Yang Kangjian, Zhang Xijun, Wang Yuke. Mechanical behavior of concrete pipes with erosion voids and the effectiveness evaluation of the polyurethane grouting. Tunnelling and Underground Space Technology, 2022, 129: 104672.
[21] Li Bin, Fang Hongyuan*, Yang Kangjian, Zhang Xijun, Du Xueming, Wang Niannian, Guo Xiaoxiang*. Impact of erosion voids and internal corrosion on concrete pipes under traffic loads[J]. Tunnelling and Underground Space Technology,2022,130:104761.
[22] Yang Kangjian, Fang Hongyuan*, Zhang Xijun, Li Bin, Hu Qunfang. Investigation of mechanical properties of corroded concrete pipes after cured-in-place-pipe (CIPP) rehabilitation under multi-field coupling[J]. Tunnelling and Underground Space Technology,2022,128:104656.
[23] Zhang Xijun, Fang Hongyuan*, Shi Mingsheng, Du Mingrui, Yang Kangjian, Li Bin, Zhang Zongyuan. Structural performance of corroded concrete pipes after mortar spraying rehabilitation under traffic load[J]. Tunnelling and Underground Space Technology,2022,128:104620.
[24] Li Bin, Yu Wei, Xie Yongen, Fang Hongyuan*, Du Xueming, Wang Niannian, Zhai Kejie, Wang Dianchang, Chen Xianming, Du Mingrui, Sun Mingming, Zhao Xiaohua. Trenchless rehabilitation of sewage pipelines from the perspective of the whole technology chain: A state-of-the-art review[J]. Tunnelling and Underground Space Technology, 2023.6.8, 134: 105022.
[25] Di Danyang, Wang Dianchang, Fang Hongyuan*, He Qiang, Zhou Lifen, Chen Xianming, Sun Bin, Zhang Jinping. An automatic and integrated self-diagnosing system for the silting disease of drainage pipelines based on SSAE-TSNE and MS-LSTM[J]. Tunnelling and Underground Space Technology, 2023.8.12, 136: 105076.
[26] Zhai Kejie, Fang Hongyuan*, Li Bin, Guo Chengchao, Yang Kangjian, Du Xueming, Du Mingrui, Wang Niannian. Failure experiment on CFRP-strengthened prestressed concrete cylinder pipe with broken wire[J]. Tunnelling and Underground Space Technology, 2023.6.29, 135: 105032.
[27] Du Xueming, Fang Hongyuan*, Liu Kang, Li Bin, Wang Niannian, Zhang Chao, Wang Shanyong. Experimental and practical investigation of reinforcement mechanism on permeable polymer in loose area of drainage pipeline[J]. Tunnelling and Underground Space Technology, 2023.9.13, 140: 105250.
[28] Hu Haobang, Fang Hongyuan*, Wang Niannian*, Ma Duo, Dong Jiaxiu, Li Bin, Di Danyang, Zheng Hongbiao, Wu Jiang. Defects identification and location of underground space for ground penetrating radar based on deep learning[J]. Tunnelling and Underground Space Technology, 2023.9.10, 140: 105278.
[29] Xia Yangyang, Zhang Chao*, Wang Cuixia, Liu Hongjin, Sang Xinxin, Liu Ren, Zhao Peng, An Guanfeng, Fang Hongyuan*, Shi Mingsheng, Li Bin, Yuan Yiming, Liu Bokai. Prediction of bending strength of glass fiber reinforced methacrylate-based pipeline UV-CIPP rehabilitation materials based on machine learning[J]. Tunnelling and Underground Space Technology, 2023.9.10, 140: 105319.
[30] Duo Ma, Hongyuan Fang*, Niannian Wang, Gaozhao Pang, Bin Li, Jiaxiu Dong, Xue Jiang. A low-cost 3D reconstruction and measurement system based on structure-from-motion (SFM) and multi-view stereo (MVS) for sewer pipelines[J]. Tunnelling and Underground Space Technology, 2023, 141: 105345.
[31] Danyang Di, Tianwei Li, Hongyuan Fang*, Lizhong Xiao, Xueming Du, Bin Sun, Jinping Zhang, Niannian Wang, Bin Li. A CFD-DEM investigation into hydraulic transport and retardation response characteristics of drainage pipeline siltation using intelligent model. Tunnelling and Underground Space Technology incorporating Trenchless Technology Research, 2024-07, 152: 105964.
[32] Hongjin Liu, Hongyuan Fang*, Xiang Yu, Fuming Wang, Xuan Yang, Yangyang Xia. Multi-leakage localization in water supply pipes based on convolutional blind source separation. Tunnelling and Underground Space Technology, 2024-01, 144: 105576.
[33] Fang Hongyuan, Su Zhan, Li Xinxin*, Wang Fuming, Fu Yingchun. Interfacial bond performance between self-expansion polymer and concrete[J]. Construction and Building Materials, 2021.2, 270: 121459.
[34] Fang Hongyuan, Yu Zisen, Wang Juan*, Wang Fuming, Zhang Juan, Chen Jianguo. Effects of Crushed Stones on the Compression Properties of Polymer Grout Materials[J]. Construction and Building Materials, 2021.2, 271: 121517.
[35] Fang Hongyuan, Zhao Peng, Zhang Chao*, Pan Wang*, Yu Zisen, Cai Kun, Wang Cuixia, Wang Juan, Du Mingrui, He Wei, Zhao Ruitao, Deng Nan. A Cleaner Polyurethane Elastomer Grouting Mterial with High Hardening Strain for the Fundamental Rehabilitation: The Comprehensive Mechanical Properties Study[J]. Construction and Building Materials, 2022, 318: 125951.

【专著】

[1] 方宏远,王念念,郑航桅,代毅. 地下排水管道智能检测技术. 科学出版社,2022年.
[2] 方宏远,王念念,李斌,雷建伟. 地下排水官网智慧检测与评估技术. 科学出版社,2025年.
[3] 马保松,方宏远,黄胜,曾聪,孔耀祖. 地下排水官网智慧检测与评估技术. 人民交通出版社股份有限公司,2024年.

专利和软件著作权

【授权发明专利】

[1] 方宏远,赵鹏,王磊,潘艳辉,李斌,李曼珺,杨康建. Polymer expanding material used in infiltration or seepage watery environment and preparation method thereof. 专利号:US 11,618,802 B2
[2] 方宏远,王念念,马铎,张娟,董家修,薛冰寒,胡浩帮,雷建伟. Method for detecting road diseases by intelligent cruise via unmanned aerial vehicle, unmanned aerial vehicle and detecting system therefor, 专利号:US11,908.207 B2
[3] 方宏远,赵鹏,李斌,雷建伟,郭成超,潘艳辉,李海军,吴伟,卢宗胜. Pipeline radar and television inspection robot. 专利号:US 11, 708, 933 B2
[4] 王复明,方宏远,赵鹏,郭成超,潘艳辉,赵线峰,乔国斌,贾志辉,刘辉. A composite slotting equipment combined static pressure and vibration of polymer anti-seepage wall and using method thereof. 专利号:US 11,085,166 B2
[5] 王复明,方宏远,潘艳辉,赵鹏,郭成超. Assembled recyclable rectangular working well with preset detachable door opening and construction method thereof. 专利号:US 11,319,690 B2
[6] 王复明,方宏远,赵鹏,潘艳辉,李斌,何航. Trenchless methods for forming curved hole channel with steel sleeve and pipeline lifting. 专利号:US 11,585,467 B2
[7] 王复明,方宏远,赵鹏,潘艳辉,赵线峰,王颖丽. Thin-slotting lifting synchronous grouting device and its usage method. 专利号:US 11,149,400 B2
[8] 王复明,方宏远,王磊,赵鹏,潘艳辉. Rapid-hardening underground pipeline grouting repair polymer and preparing method. 专利号:US 11, 104, 612 B2
[9] 王复明,方宏远,赵鹏等. A track-type jet grouting integrated system. 专利号:US 11, 149, 399 B2
[10] 王复明,方宏远,赵鹏,潘艳辉,李斌,何航. Detecting and repairing method for external diseases of buried drainage pipeline. 专利号:US 11, 231, 139 B2
[11] 王复明,方宏远,翟科杰等. In-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire. 专利号:US 11, 274, 784 B2
[12] 王复明,方宏远,赵鹏等. Support tool and back-pressure grouting device for leakage repair of inspection well and repair method thereof. 专利号:US 11, 346, 487 B2
[13] 王复明,方宏远,赵鹏,潘艳辉,李斌,何航. A Trenchless integrative repair method for concrete drainage pipeline with cracking, corrosion and subsidence.
[14] 王复明,方宏远,赵鹏等. Trenchless rehabilitation device for disconnects on large-diameter concrete drainage pipe and method thereof. 专利号:US 11,079,057 B2
[15] 王复明,方宏远,赵鹏,潘艳辉,李斌,何航. In-service and trenchless repair method for disconnection of drainage pipeline. 专利号:US 10, 907, 761 B2
[16] 王复明,方宏远,潘艳辉等. Rectangular working well with preset pipe jacking hole and sliding back wall in water-rich stratum and construction method thereof. 专利号:US 11, 143, 027 B2
[17] 方宏远,赵鹏,潘艳辉,夏洋洋. 一种装配循环式市政井壁模板支护装置. 专利号:ZL201911239826.2
[18] 方宏远、雷建伟、薛冰寒、李银萍、胡浩帮、张超. 一种基于GPU并行的探地雷达电磁波数值模拟计算方法. 专利号:ZL202010182487.5
[19] 方宏远,狄丹阳,王念念,孙斌,李斌,杜雪明. 排水管道淤积病害双层智能诊断方法及系统. 专利号:ZL202310496993.5
[20] 方宏远,王娟,张娟,李迅,余自森,薛冰寒,张超. 一种高聚物材料力学性能的细观分析方法. 专利号:ZL202110689458.2
[21] 方宏远,王念念,马铎,狄丹阳,李斌. 一种基于知识-数据双驱动的排水管道力学性能评估方法. 专利号:ZL202311232569.6
[22] 方宏远,谭佩玲,李斌,何航,杨康建,王甫,张曦君. 基于MpCCI多物理场作用的管道耦合分析方法. 专利号:ZL202010603643.0
[23] 方宏远,王念念,庞高兆,梁静,杜雪明.一种面向混凝土管道损伤识别的数据建模扩增方法. 专利号:ZL202210872779.0
[24] 方宏远,李斌,杨康建,何航,谭佩玲,张曦君.一种暴雨环境下管道多物理场作用致灾机理演示方法. 专利号:ZL202010603642.6
[25] 方宏远,李斌,杨康建,王甫,谭佩玲,郭晓向.一种管道多病害复杂环境下服役性能评估方法. 专利号:ZL202010603091.3
[26] 方宏远,王念念,马铎,李斌,翟科杰.一种基于多视角几何的管道三维重建和坑洞量化方法. 专利号:ZL202310207987.3
[27] 方宏远,狄丹阳,孙斌,李斌,王念念,张金萍,翟科杰. 一种排水管网协同诊断装备及智慧决策系统. 专利号:ZL202410112399.6
[28] 方宏远,杜雪明,李斌,赵鹏,潘艳辉,王磊,杜明瑞,梁佳森,霍璐阳. 一种地下碎石砂层扩展式注浆管及其注浆方法. 专利号:ZL202210539009.4

【软件著作权】

[1] 方宏远, 雷建伟,郭成超,刘海,林鹏. 基于共形时域有限差分方法的三维雷达建模软件V1.0, 登记号:2020SR0284537
[2] 方宏远, 韩泽军. 基于精细积分方法的路基路面动模量反算软件V1.0, 登记号:2021SR1080401

荣誉和奖励

[1] 国家科技进步二等奖,城市地下排水管道灾变防控与非开挖修复成套技术及装备,2025年,排2
[2] 河南省科技进步奖一等奖,城市道路塌陷隐患多源智能诊断与微创靶向快速处治成套技术及应用,2023年,排1
[3] 中国交通运输协会科技进步一等奖,城市道路隐蔽病害智能诊断及快速修复成套技术与装备,2025年,排1
[4] 日内瓦国际发明展金奖,Full-space detection method and system of airport pavement disease based on deep learning,2024年,排1
[5] 江西省科技进步一等奖,堤坝防渗体修复加固与应急处置关键技术及其应用,2022年,排2
[6] 大禹奖一等奖,基于管网动力学的城市洪涝监测、模拟与调控关键技术,2025年,排2
[7] 河南省科技进步一等奖,地下管道灾变防控与非开挖修复成套技术,2018年,排2
[8] 河南省科技进步一等奖,水泥路面、机场道面与高铁无砟轨道隐蔽病害快速诊治成套技术,2019年,排6
[9] 河南省科技进步一等奖,复杂地质环境下隧道工程灾变理论与防控关键技术,2014年,排9
[10] 广东省科技进步二等奖,城市地下排水管网功能提升关键技术及应用,2022年,排1
[11] 湖北省科技进步二等奖,城市地下排水管网隐患智能探测与非开挖修复成套技术及应用,2021年,排2
[12] 河南省科技进步二等奖,隧道围岩特性反演理论与高聚物注浆加固技术,2017年,排4
[13] 广东省科技进步二等奖,重交通沥青路面多维快速检测与资源节约养护关键技术及示范工程应用,2021年,排10
[14] 全国博士后创新创业大赛金奖,城市排水管网"知识-数据"协同诊断装备及智慧决策系统,2023年,排1
[15] 日内瓦国际发明展银奖,Rapid - hardening Underground Pipeline Grouting Repair Polymer and Preparing Method,2023年,排1
[16] 中国产学研合作促进会科技创新奖创新成果二等奖,地下排水管道智能诊断与低碳增韧成套技术及装备,2025年,排1
[17] 国家教学成果二等奖,“水土交融,场网共享“新时期大土木实践育人模式构建与示范,2023年,排18
[18] 河南省高等教育教学成果特等奖,基于“产教科融合”共享平台的大土木研究生培养模式探索与实践,2024年,排3
[19] 河南省高等教育教学成果特等奖,基于“实践育人共享平台”大土木人才培养模式探索与实践,2023年,排3
[19] 河南省高等教育教学成果二等奖,“双一流”建设背景下水利水电工程专业卓越工程师人才培养改革研究与实践,2022年,排2
[20] 广东省高等教育教学成果特等奖,基于“水土交融”理念的大土木人才培养研究与实践,2021年,排15
[21] 第三届水利德育教育优秀成果三等奖,党建铸魂、交叉赋能、实践育人——郑州大学“纵向贯通、师生联动”临时党支部建设探索与实践,2023年,排1