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工程地质研究中心

作者:陈宁生发布时间:2025-11-19来源: 访问量:

一、中心简介

本中心依托重点基金、面上基金等国家及地方项目和企业委托项目,在    多灾害的多动力形成理论、智能判识、预测预警及防控方面形成了特色研究方向,建立多灾害防控与工程安全研究团队。多灾害防控与工程安全是我校的传统和特色研究方向,也是一个工程地质、基础地质、油气地质、遥感地质、地球信息科学技术等多学科交叉的研究方向。伴随该研究方向的形成,先后建成了多灾害防控与工程安全国际科技合作基地、威廉williamhill应急技术产业研究院、威廉williamhill-刚果(金)多灾害联合减灾实验室等,成果持续推广于南亚国家(尼泊尔)、中亚国家(塔吉克斯坦)、非洲国家(刚果(金))和南美洲国家(智利)国家,实现防灾减灾决策的系统化、国际化与科学化

二、中心成员

中心主任

陈宁生,二级教授,博士生导师,学科杰出人才,俄罗斯自然科学院外籍院士,昆仑英才杰出人才,国务院政府特殊津贴专家,应急管理部应急减灾专家,中国地理学会山地分会主任委员。主要从事泥石流、滑坡、山洪等山地灾害研究,主持了国家自然科学基金7项,其中4项为重点基金,主持科技部重点研发课题4个,研究成果应用于樟木、天山天池、一带一路、雅下等重大减灾工程,效益显著。获国家科技进步奖等科技奖励12项,科研成果被遴选为2019年度中国生态环境十大科技进展。发表论文430多篇,出版专著7部,第一作者完成省部级领导以上采用的国家咨询报告38份,咨询报告数量同领域排名第一。联系邮箱: chennsh@yangtzeu.edu.cn

中心副主任

温韬,教授,博士生导师,2018年毕业于中国地质大学(武汉)。威廉williamhill菁英人才计划入选者,主持国家自然科学基金面上和青年项目、西藏自治区中央引导地方项目等共计20余项。已发表高水平论文80余篇(其中一作/通讯55篇),申请或授权国家发明专利50余项;部分论文入选领跑者F5000中国精品科技期刊顶尖学术论文、ESI高被引论文和热点论文等;主编/参编学术专著3部;1份决策咨询建议获省部级领导批示;6个国内外期刊的青年编委、作为4SCI期刊客座主编主持4期专刊;作为威廉williamhill援藏工作队主要成员荣获湖北省“工人先锋号”和“荆楚最美教师”荣誉称号;工作事迹被人民日报、湖北日报和荆楚网等报道。带领本科生荣获湖北省挑战杯一等奖。联系邮箱:wentao200840@yangtzeu.edu.cn

赵超,特任教授,中国地质大学(武汉)地质工程博士,挪威岩土工程研究所(Norwegian Geotechnical Institute)访问学者,中国土木学会工程风险与保险分会青年论坛青年委员会委员。主要从事地质灾害概率评价与风险评估理论、工程场地概率地质建模理论与方法等方面的研究工作。主持国家自然科学基金青年项目1项和中国博士后科学基金面上资助1项,参与国家重点研发计划项目1项、国家自然科学基金重大项目1项、面上项目2项、湖北省杰青项目1项等。累计发表SCI/EI论文20余篇,其中近五年以第一/通讯作者在Engineering GeologyComputers and GeotechnicsActa GeotechnicaTunnelling and Underground Space Technology等中科院一区Top期刊发表学术论文6篇。合著专著1部,登记软件著作权3项。联系邮箱:zhaochao@yangtzeu.edu.cn

中心成员

王艳昆,副教授,硕士生导师武汉英才(优秀青年人才)中国岩石力学与工程学会人工智能技术实用化专委会委员,国际工程地质与环境协会中国委员会中国地质学会中国地理学会会员。2014年获华北水利水电大学地质工程学士学位,2017年、2020年分获中国地质大学(武汉)地质工程硕士及博士学位,博士期间赴澳大利亚纽卡斯尔大学联合培养1年。长期从事滑坡演化机理与智能预测研究,主持国家自然科学基金青年项目、湖北省自然科学基金、西藏科技厅中央引导地方项目子课题项课题,参与多项国家级重大项目。发表论文50篇(第一/通讯作者18篇),其中2篇入选ESI高被引和热点论文,截止2025年7月谷歌学术总被引1301次,H指数20;合著专著3部,授权国家发明专利10项。研究方向涵盖库岸滑坡稳定性评价、冻融滑坡机理及机器学习地质灾害预测。联系邮箱:ykwang@yangtzeu.edu.cn

唐睿旋,讲师,主要从事岩土体稳定性,地质灾害预测预报及防治的研究工作。聚焦滑坡危险性评价的融合技术与智能计算,斜坡地质灾害、地下工程岩土体的非均质性表征,不同地质成因的堆积层斜坡灾变机理及防治对策。参与省部级项目5项,发表论文15篇,其中第一作者7篇。获第四届全国大学青年教师地质课程教学比赛特等奖、湖北省第九届高校青年教师教学竞赛二等奖。联系邮箱: tangruixuan@yangtzeu.edu.cn

薛阳,讲师,硕博士毕业于中国地质大学(武汉),在法国Grenoble Alpes University留学一年,为中国土木工程学会工程风险与保险研究分会青年论坛委员。主要从事岩土体稳定性和地质灾害机理与评价研究,主持了国家自然科学基金青年项目,并作为技术骨干参与了国家重点研发项目子课题、国家自然科学基金面上项目、西藏重大专项等项目。共发表了SCI/EI检索论文25篇,申请发明专利9项。其中以第一作者身份在Engineering GeologyComputers and GeotechnicsLandslides、岩土力学等专业领域期刊上发表SCI/EI论文11篇,以第一发明人授权和申请国家发明专利3项,以第一作者主编专著1部,以及参编专著2部。联系邮箱:egxyang@163.com

张勃成,特任副教授,2024 6 月毕业于中国地质大学(武汉)工程学院,获地质工程博士学位。近年来,围绕重大地质灾害防灾减灾领域发展的国际前沿与我国重大工程建设需求,主要开展了滑坡、岩崩等山地灾害致灾机制与稳定性研究等方面的研究,揭示了青藏东缘高山峡谷区互层反倾边坡倾倒变形破坏机制,提出了降雨与河谷下切条件下互层反倾边坡演化阶段的综合演化阶段划分方法,建立了互层反倾边坡全过程动态稳定性评价方法。目前以第一作者身份在Engineering GeologyRock Mechanics and Rock Engineering等国际期刊发表论文 5 篇,以第一发明人身份授权国家发明专利 3 项、软件著作权 1 项。联系邮箱:bczhang@yangtzeu.edu.cn

杨云鹏,特任副教授,主要从事泥石流灾害(链)形成演化机理与成灾机制、基于地震动信号的山地灾害参数反演等研究,阐明了强震区滑坡泥石流灾害链运动演进机理和冲击动力学特征,提出了基于地震动信号的泥石流灾害监测预警方案。在Journal of Geophysical Research: Earth SurfaceEngineering Geology等期刊发表论文10余篇。主持中国博士后科学基金面上资助1项,以项目骨干身份参与多项国家级项目,包括国家重点研发计划、国家自然科学基金(重点项目)、第二次青藏高原综合科学考察等。联系邮箱:709847287@qq.com

陈钱,特任副教授,20256月毕业于中国地质大学(武汉)工程学院,获地质工程专业博士学位。致力于先进技术(非接触测量,人工智能等)在地质工程领域中的应用研究,如岩体结构表征、岩体质量评价、地质灾害机理分析等。近年来共发表论文10余篇,其中以第一作者在Journal of Rock Mechanics and Geotechnical EngineeringEngineering GeologyGondwana Research等国内外地质工程领域知名期刊上发表SCI论文3篇;此外,参与授权国家发明专利、实用新型专利、软件著作权9项,并先后5次获得大学生创新创业大赛奖项。联系邮箱:chen_qian@yangtzeu.edu.cn

尚成,博士,讲师,硕士生导师,现任地球信息科学与技术系副主任,湖北省自然资源学会会员,曾任武汉市蔡甸区园林和林业局副局长。主要从事人工智能和深度学习技术在地球科学、遥感科学等领域的研究,重点研究基于GAN的遥感数据时空降尺度、江汉平原精细化水体和植被制图和数字油田分析等。在科研方面,主持湖北、青海及西藏等省级自然科学基金3项,省重点实验室开放基金2项,省教研项目1项,发表国际高水平SCI论文10余篇,申请软件著作权1项。在教学方面,指导本科大创竞赛省级1项、校级1项,国创赛省级1项,挑战杯省级1项。曾获评中国科学院优秀博士论文,并受邀在SENTECH 2023国际传感器峰会作特邀报告。联系邮箱: shangcheng@yangtzeu.edu.cn

高贤君,副教授,2015年毕业于武汉大学遥感信息工程学院,摄影测量与遥感专业,担任中国图象图形学会遥感图像专委会委员。主要从事多源遥感数据质量提升及智能解译分析处理,服务于测绘产品自动生产、洪涝地质灾害监测等应用。主持并参与了国家级及省部级项目10余项,发表论文70余篇,第一及通讯作者发表论文40余篇,出版专著1部,授权发明专利10余项。获省部级科技二等奖1项,湖北省教学创新大赛二等奖1项。联系邮箱: junxgao@yangtzeu.edu.cn

三、研究方向与学术特色

山地灾害的多动力形成理论

地质灾害形成理论上,发现了山地灾害的重复性、夜发性、集中性、滞后性、链生性、放大性等“六性”规律,建立了泥石流的早期干旱与地震作用下的气阻剪缩、剪涨与颗粒动力起动理,揭示了群蝶作用下的滑坡强水弱土岩机制,研究了冰湖小溃大灾的多圈层作用机制,创新了喜马拉雅沟槽雪崩的多阶步地貌与极端气象条件的约束机制。

基于表征识别的山地灾害判识技术系统

开发了基于过程特征的泥石流模糊判识、宏观判识和精细判识技术体系,创立融合内外动力的多尺度滑坡判识技术,创立了全要素影响和冰碛坝稳定性相结合的冰湖溃决判识方法,研发了以地貌、植被迹象与岩土遗迹为基础的雪崩判识技术。

基于过程机制的山地灾害预测预警技术体系

创立了基于早期地震干旱的泥石流动态预测技术,发展了基于早期干湿循环和滑坡临灾动态雨量的滑坡预测技术,建立了小流域泥石流的分级多指标监测预警技术,开发了基于变点阈值的阶跃型滑坡预警方法,研发了考虑极端降水、极端气温及其组合的多气象条件的冰湖溃决阈值确定技术。

山地灾害高精度勘察技术系统

集成创新泥石流工程防治参数计算方法和软件计算平台,创新了泥石流容重、弯道超高流速、阵性—混合流一次总量、雪崩规模频率、冰湖溃决泥石流流量等参数确定方法。

基于工程参数和灾害过程机制的山地灾害多目标调控技术系统

创新了泥石流容重、弯道超高流速、阵性—混合流一次总量、雪崩规模频率、冰湖溃决泥石流流量,开发了坡源“水土分离”的土质滑坡及坡面泥石流的起动调控技术,构建了坡脚基于顶冲、夹击和单边侧击为基础的雪崩调控技术,研发了沟道“以排为主、拦大排小”的泥石流调控技术,确定了干流滑坡堰塞湖灾害链的超前引水断链技术,开发了干流冰湖溃决灾害的水电工程过流调控减灾技术。

四、主要成果

研究中心团队成员取得了丰硕的研究成果,在国内外产生了重要影响,获得国家级省部级奖10多项,专利50余项近两年出版著作3,代表性成果如下:

获奖人:陈钱,第50届日内瓦国际发明展金奖,发明成果名称:Stereoscopic and Intelligent Measurement of Slope Structures for Landslide Hazards2025年。

获奖人:陈宁生等,中国交通运输协会科技进步一等奖,2023

青海省昆仑英才.高端创新创业人才杰出人才 2022

中国十大最美地理科技工作者 2022

中国科学院院科技促进发展奖,2019

中国科学院杰出科技成就奖(集体),突出贡献者2020

成果被遴选为中国生态环境十大科技进展 2019

四川省科技进步一等奖 2018

新疆科技进步二等奖2014。

国家科技进步二等奖2009。

四川省科技进步一等奖2006。

五、近五年承担的主要科研项目

负责、承担和完成国家重点研发计划课题、国家自然科学基金重点项目等省部级科研项目20多项。部分项目如下:

国家自然科学基金面上项目,冻融循环作用下藏东南高海拔山区岩质滑坡解锁力学机制与启滑判据,2025-2028

国家自然科学基金青年项目,含粗粒红层土体干湿——渗透劣化机理及库岸滑坡时变可靠度研究,2025-2027

中央引导地方项目,西藏地区灾害风险综合监测及信息集成平台,2025-2027

中国博士后科学基金面上资助,基于地震动监测高位泥石流堵江灾害临灾预警模型研究,2025-2027

国家自然科学基金国际(地区)合作项目重点项目,跨喜马拉雅经济走廊滑坡型多灾种形成机制与韧性社区构建,2024-2027

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,2024-2026

青海省基础研究计划项目,河湟谷地多灾种山地灾害形成机制及预判预警研究,2024-2026

国家自然科学基金青年项目,机理引导的阶跃型库岸滑坡变形智能预测模型研究,2024-2026

国家自然科学基金青年项目,基于多源勘察数据融合与概率分析的软硬相间地层滑坡演化机理研究,2024-2026

科技部重点研发项目课题,气候变化下高山工程区冰川型灾害链发育规律与风险源定量判识,2023-2026

中央引导地方项目,复杂地质环境下边境地区滑坡风险识别及应急预警方案研究—以西藏山南市为例,2023-2025

湖北省自然科学基金青年项目,阶跃型库岸堆积层滑坡形态结构控滑机理研究,2023-2025

湖北省自然科学基金项目,基于亚像元地物丰度和生成对抗网络的遥感影像时空反射率融合研究, 2023-2024

中央引导地方项目,西藏大型工程灾变滑坡演化机理及防治技术研究—以山南地区为例,2022-2024

中国博士后科学基金面上资助,基于多源勘察数据融合的工程场地地质模型概率建模研究,2022-2024

国家自然科学基金区域创新发展联合基金(重点项目),小流域沟源凹槽土体滑坡形成泥石流的动力机制与灾害预判,2021-2024

国家自然科学基金青年项目,水岩作用下巴东组红层边坡渐进破坏机理及动态稳定性研究,2021-2023

科技部重大专项专题,第二次青藏高原综合可续考察研究-新疆天山重大泥石流灾害及风险,2019-2024

国际合作项目(中尼),Detailed investigation and Risk assessment of Kodari Landslide2019-2020

国家自然科学基金国际合作重点项目(中智),多尺度滑坡泥石流灾害链发生机制与风险韧性管控,2018-2022

国家重点研发计划课题,复杂山区泥石流物源估算与预判关键技,2018-2021

六、研究目标(近三年)

经费

(1)科研经费总量:200;

(2)人均经费: 20//年。

国际1高水平论文数量

NatureSciencePNAS及其系列子刊或自然指数期刊投稿2-3;中科院2区及以上文章完成15篇。

国家级人才入围答辩人数

1人次申报“四青人才”计划。

带国徽的省部级及以上奖励

申报不少于1项。

指导学生参加B类以上学科竞赛获奖数量

不少于10人次参加,其中获奖不少于5人次。

学生培养

培养出博士3名,硕士20名。不少于3人次获国家奖学金。

、代表性论文(*为通讯作者)

Ningsheng Chen, Shufeng Tian, Fawu Wang, Peijun Shi*, et al.Multi-wing butterfly effects on catastrophic rockslides. Geoscience Frontiers, 202314(6):101627. https://doi.org/10.1016/j.gsf.2023.101627SCI I Top

Tian S, Hu G, Chen N*, et al. Effects of tectonic setting and hydraulic properties on silent large-scale landslides: A case study of the Zhaobishan landslide, China[J]. International Journal of Disaster Risk Science, 2023, 14(4): 600-617. https://doi.org/10.1007/s13753-023-00502-0 (SCI I)

Tian S, Hu G*, Chen N*, et al. Extreme climate and tectonic controls on the generation of a large-scale, low-frequency debris flow[J]. Catena, 2022, 212: 106086. https://doi.org/10.1016/j.catena.2022.106086 (SCI I)

Tian S, Li Y, Hu G, Chen N* et al. Preliminary analysis on the formation mechanism of the unexpected catastrophic Qijiaba landslide in a tectonically non-active hilly area of China[J]. Landslides, 2023, 20(2): 409-420. https://doi.org/10.1007/s10346-022-01990-9  (SCI I)

Peng, T., Chen, N*, Hu, G. et al. Failure mechanism of Dege landslide in western China, March, 2021: the loess interlayer and multiple water resources. Landslides 19, 2189–2197 (2022). https://doi.org/10.1007/s10346-022-01910-x (SCI I)

Habumugisha J M, Chen N*, Rahman M, et al. Determining trigger factors of soil mass failure in a hollow: A study based in the Sichuan Province, China[J]. Catena, 2022, 216: 106368. https://doi.org/10.1016/j.catena.2022.106368  (SCI I)

Tian S, Hu G, Chen N, et al. Extreme climate and tectonic controls on the generation of a large-scale, low-frequency debris flow[J]. Catena, 2022, 212: 106086. https://doi.org/10.1016/j.catena.2022.106086 (SCI I)

Tian, S., Chen, N*., Rahman, M. et al. New insights into the occurrence of the catastrophic Zhaiban slope debris flow that occurred in a dry valley in the Hengduan Mountains in southwest China. Landslides 19, 647–657 (2022). https://doi.org/10.1007/s10346-021-01824-0 (SCI I)

Rahman M, Ningsheng C*, Mahmud G I, et al. Flooding and its relationship with land cover change, population growth, and road density[J]. Geoscience Frontiers, 2021, 12(6): 101224. https://doi.org/10.1016/j.gsf.2021.101224 (SCI I)

Rahman M , Chen N S* , Elbeltagi A ,et al.Application of stacking hybrid machine learning algorithms in delineating multi-type flooding in Bangladesh[J].Journal of EnvironmentalManagement,2021,295:113086. https://doi.org/10.1016/j.jenvman.2021.113086 (SCI I)

Rahman M, Chen N S*, Islam M M, et al.Development of flood hazard map and emergency flood relief operation system using hydrodynamic modeling and machine learning algorithm [J]. Journal of Cleaner Production, 2021, 311:127594 . https://doi.org/10.1016/j.jclepro.2021.127594 (SCI ITop)

Hou, R., Chen, N.*, Hu, G*. et al. Characteristics, mechanisms, and post-disaster lessons of the delayed semi-diagenetic landslide in Hanyuan, Sichuan, China. Landslides 19, 437–449 (2022). https://doi.org/10.1007/s10346-021-01751-0 (SCI I)

Wu, K., Chen, N., Hu, G. et al. Failure mechanism of the Yaoba loess landslide on March 5, 2020: the early-spring dry spell in Southwest China. Landslides 18, 3183–3195 (2021). https://doi.org/10.1007/s10346-021-01703-8 (SCI I)

Rahman M, Chen N S*, Islam M M, et al. Location-allocation modeling for emergency evacuation planning with GIS and remote sensing: A case study of Northeast Bangladesh[J], Geoscience Frontiers, 2021, 12(3): 101095. https://doi.org/10.1016/j.gsf.2020.09.022SCI ITop);

Zhang Y, Chen N, Liu M, et al. Debris flows originating from colluvium deposits in hollow regions during a heavy storm process in Taining, southeastern China[J]. Landslides, 2020, 17: 335-347. https://doi.org/10.1007/s10346-019-01272-x SCI Ⅱ区)

Hu G S, Tian S F, Chen N S*, et al. An effectiveness evaluation method for debris flow control engineering for cascading hydropower stations along the Jinsha River, China[J]. Engineering Geology, 2019, 266:105472. https://doi.org/10.1016/j.enggeo.2019.105472SCI ITop

Chen N S*, Li J , Liu L , et al. Post-earthquake denudation and its impacts on ancient civilizations in the Chengdu Longmenshan region, China[J]. Geomorphology, 2018, 309(may15):51-59. https://doi.org/10.1016/j.geomorph.2018.02.007  (SCI IITop

Chen N S*, Chen M L, Li J, et al. Effects of human activity on erosion, sedimentation and debris flow activity A case study of the Qionghai Lake watershed, southeastern Tibetan Plateau, China.[J]. Holocene, 2015. 25(6): 973-988. https://doi.org/10.1177/0959683615574893SCI II区);

Chen N S* , Zhou W , Yang C L , et al. The processes and mechanism of failure and debris flow initiation for gravel soil with different clay content[J]. Geomorphology, 2010, 121(3-4):222-230. https://doi.org/10.1016/j.geomorph.2010.04.017 (SCI IITop

Chen N S , Yue Z Q* , Cui P , et al. A rational method for estimating maximum discharge of a landslide-induced debris flow: A case study from southwestern China[J]. Geomorphology, 2007, 84(1-2):44-58. https://doi.org/10.1016/j.geomorph.2006.07.007SCI IITop

Tao Wen, Ningsheng Chen*, Dexin Huang, Yankun Wang. A medium sized landslide lead to a large disaster in Zhenxiong, Yunnan, China: characteristics, mechanism and motion process [J]. Landslides (2025). https://doi.org/10.1007/s10346-025-02531-w. 2SCI

Wen, T. *, Jia, W., Quan, Z. et al. Shear behavior of gravel-block soil of the Qinghai-Tibet Plateau based on large-scale direct shear test and numerical simulation. Bulletin of Engineering Geology and the Environment 84, 294 (2025).2SCI

Wanying Huang, Tao Wen*, Ningsheng Chen. Mechanical properties and microstructure failure mechanisms of conglomerate with prefabricated fissures under freeze-thaw cycles [J]. Engineering Fracture Mechanics, 2025: 111236. 2SCI

Zhihan Wang, Tao Wen*, Ningsheng Chen, Ruixuan Tang. Assessment of landslide susceptibility based on the two-layer Stacking model-A case study of Jiacha County, China [J]. Remote Sensing, 2025, 17(7): 1177. (2SCI)

Wen Tao, Wang Yankun*, Tang Huiming. Quantitative evaluation of rock brittle property based on energy evolution and its application in Three Gorges Reservoir area[J]. Journal of Earth Science, 2024. (1SCI)

Wang Yankun, Sun Xinshuang, Wen Tao*, Wang Luqi. Step-like displacement prediction of reservoir landslides based on a metaheuristic-optimized KELM: a comparative study[J]. Bulletin of Engineering Geology and the Environment, 2024, 83(8): 1-14. (2SCI)

Gao Dexiang, Li Kou, Cai Yuncheng, Wen Tao*. Landslide Displacement Prediction Based on Time Series and PSO-BP Model in Three Georges Reservoir, China[J]. Journal of Earth Science, 2024: 1-4. (1SCI)

Wen Tao, Tang Huiming*, Huang Lei*, Hamza Asif, Wang Yankun. An empirical relation for parameter mi in the Hoek–Brown criterion of anisotropic intact rocks with consideration of the minor principal stress and stress-to-weak-plane angle[J]. Acta Geotechnica, 2021, 16(2): 551-567. (1SCI

Wen Tao, Tang Huiming*, Wang Yankun, Ma Junwei. Evaluation of methods for determining rock brittleness under compression[J]. Journal of Natural Gas Science and Engineering, 2020: 1-20. (2SCI)

Wen Tao, Tang Huiming*, Wang Yankun. Brittleness evaluation based on the energy evolution throughout the failure process of rocks[J]. Journal of Petroleum Science and Engineering, 2020: 107361. (1SCI)

Wen Tao, Tang Huiming*, Huang Lei, Wang Yankun, Ma Junwei. Energy evolution: A new perspective on the failure mechanism of purplish-red mudstones from the Three Gorges Reservoir area, China[J]. Engineering Geology, 2020, 264: 105350. (1SCI)

Wen Tao, Tang Huiming*, Ma Junwei, Wang Yankun. Evaluation of methods for determining crack initiation stress under compression [J]. Engineering Geology, 2018, 235: 81-97. (1SCI)

Wen Tao, Tang Huiming*, Wang Yankun, Lin Chengyuan, Xiong Chengren. Landslide displacement prediction using the GA-LSSVM model and time series analysis: a case study of Three Gorges Reservoir, China[J]. Natural Hazards and Earth System Sciences, 2017, 17(12): 2181-2198. (2SCI)

Wen Tao, Tang Huiming*, Ma Junwei, Liu Yourong. Energy analysis of the deformation and failure process of rock and its damage constitutive model [J]. KSCE Journal of Civil Engineering, 2019(2), 513-524. (SCI)

温韬,张馨,孙金山,贾永胜,郎珉,贾文君,李德成,孙莉霞,唐辉明.基于峰前和峰后能量演化特征的岩石脆性评价[J].地球科学,2021:1-13. (EI)

温韬, 唐辉明*, 范志强,蔡毅,汪丁建.巴东组红层岩石加卸荷力学性质及其卸荷损伤本构模型[J]. 中国矿业大学学报,2018, 47(4): 768-779. (EI)

温韬, 唐辉明*, 马俊伟,张俊荣,范志强.考虑初始损伤和残余强度的岩石变形过程模拟[J]. 地球科学,2019, 44(2): 1-12. (EI)

温韬, 唐辉明*, 刘佑荣,邹宗兴,王康,林成远. 影响因子修正的新型岩石损伤统计本构模型[J].中国矿业大学学报,2016, 45(1): 142-150. (EI)

全志,温韬*,郭威,.青藏高原雅江河谷地带碎块石土强度特性及颗粒破碎分析[J].铁道科学与工程学报,2024,21(09):3647-3660. (EI)

王芷含,温韬*.基于树结构Parzen估计器优化后两层Stacking模型的岩石脆性指数预测[J].中国石油勘探,2025,30(02):115-132. EI

Zhao, C., Gong, W.*, Juang, C.H., Tang, H., Liu, Z., Hu, X. (2025). Probabilistic characterization of subsurface stratigraphic configuration by merging borehole and geophysical data. Acta Geotechnica, 1-19. https://doi.org/10.1007/s11440-025-02550-w.

Zhao, C., Gong, W.*, Juang, C.H., Tang, H., Liu, Z., Hu, X. (2025). Probabilistic performance analysis of longitudinal tunnels based on coupled characterization of stratigraphic and geo-properties uncertainties. Tunnelling and Underground Space Technology, 161, 106552. https://doi.org/10.1016/j.tust.2025.106552.

Zhao, C., Gong, W.*, Juang, C.H., Tang, H., Hu, X., Li, Z. (2024). Probabilistic analysis of lateral behaviour of offshore wind turbine monopile considering uncertainties of geological model and loads. Computers and Geotechnics, 171, 106348. https://doi.org/10.1016/j.compgeo.2024.106348.

Zhao, C., Gong, W.*, Juang, C.H., Tang, H., Hu, X., Wang, L. (2023). Optimization of site exploration program based on coupled characterization of stratigraphic and geo-properties uncertainties. Engineering Geology, 317, 107081. https://doi.org/10.1016/j.enggeo.2023.107081.

Zhao, C., Gong, W.*, Li, T., Juang, C.H., Tang, H., Wang, H. (2021). Probabilistic characterization of subsurface stratigraphic configuration with modified random field approach. Engineering Geology, 288, 106138. https://doi.org/10.1016/j.compgeo.2020.103681.

Gong, W., Zhao, C.*, Juang, C.H., Zhang, Y., Tang, H., Lu, Y. (2021). Coupled characterization of stratigraphic and geo-properties uncertaintiesA conditional random field approach. Engineering Geology, 294, 106348. https://doi.org/10.1016/j.enggeo.2021.106348王艳昆, 温韬, 王鲁琦, 胡明毅, 魏梦雪. GeoStudioFLAC3D互馈的库岸滑坡多场信息模拟方法[J]. 土木与环境工程学报(中英文), 2024. https://jian.publish.founderss.cn/thesisDetails#10.11835/j.issn.2096-6717.2023.145&lang=zh.

Wang Yankun, Tang Huiming, Huang Jinsong, Wen Tao, Ma Junwei, Zhang Junrong. A comparative study of different machine learning methods for reservoir landslide displacement prediction[J]. Engineering Geology, 2022,298:106544. https://www.sciencedirect.com/science/article/pii/S0013795222000291. ESI高被引+热点论文)

Wang Yankun, Huang Jinsong, Tang Huiming. Global sensitivity analysis of the hydraulic parameters of the reservoir colluvial landslides in the Three Gorges Reservoir area, China[J]. Landslides, 2020,17(2):483-494. http://link.springer.com/10.1007/s10346-019-01290-9.

Wang Yankun, Huang Jinsong, Tang Huiming. Automatic identification of the critical slip surface of slopes[J]. Engineering Geology, 2020,273:105672. https://linkinghub.elsevier.com/retrieve/pii/S0013795219320812.

Wang Yankun, Huang Jinsong, Tang Huiming, Zeng Cheng. Bayesian back analysis of landslides considering slip surface uncertainty[J]. Landslides, 2020,17(9):2125-2136. http://link.springer.com/10.1007/s10346-020-01432-4.

Wang Yankun, Tang Huiming, Wen Tao, Ma Junwei. A hybrid intelligent approach for constructing landslide displacement prediction intervals[J]. Applied Soft Computing, 2019,81:105506. https://linkinghub.elsevier.com/retrieve/pii/S1568494619302765.

Wang Yankun, Tang Huiming, Wen Tao, Ma Junwei. Direct Interval Prediction of Landslide Displacements Using Least Squares Support Vector Machines[J]. Complexity, 2020,2020:1-15. https://doi.org/10.1155/2020/7082594.

Wang Yankun, Tang Huiming, Wen Tao, Ma Junwei, Zou Zongxing, Xiong Chengren. Point and Interval Predictions for Tanjiahe Landslide Displacement in the Three Gorges Reservoir Area, China[J]. Geofluids, 2019,2019:1-14. https://www.hindawi.com/journals/geofluids/2019/8985325.

Tang Rui-Xuan, Kulatilake, PHSW, Yan, E-C, Cai, Jing-Sen. Evaluating landslide susceptibility based on cluster analysis, probabilistic methods, and artificial neural networks. Bulletin of Engineering Geology and the Environment. 2020, 79 (1): 2235–2254. (SCI 2, IF=4.4)https://webofscience.clarivate.cn/wos/woscc/full-record/WOS:000540841800004

Tang Rui-Xuan, Cai, J-S, Yeh T-CJ, Yan E-C. Two-dimensional probabilistic infiltration analysis in a hillslope using first-order moment approach[J]. Groundwater. 2019, 57: 226-237. (SCI 2, IF=4.0). https://webofscience.clarivate.cn/wos/woscc/full-record/WOS:000460666100006

Rui-xuan Tang*, E-Chuan Yan, Tao Wen, Xiao-meng Yin, Wei Tang. Comparison of Logistic Regression, Information Value, and Comprehensive Evaluating Model for Landslide Susceptibility Mapping. Sustainability. 2021, 13(7): 3803. (SCI 3, IF=3.2) https://webofscience.clarivate.cn/wos/woscc/full-record/WOS:000638919000001

Ruixuan Tang*; Tao Wen; Zhenyan Bao; Yankun Wang; Mingyi Hu ; Groundwater Responses of Foundation Subjected to Water Level Fluctuation of Reservoir Considering Variability of Layered Structure, Water, 2023, 16(1): 81. (SCI 3, IF=3.4) https://webofscience.clarivate.cn/wos/woscc/full-record/WOS:000460666100006

唐睿旋, 晏鄂川, 唐薇. 基于粗糙集和BP神经网络的滑坡易发性评价[J]. 煤田地质与勘探, 2017, 45(06): 129-138. (中文核心)

Xue Yang, Miao Fasheng, Li Jingze, et al. Probabilistic back analysis of reservoir landslide considering hydro-mechanical coupled observations. Computers and Geotechnics, 2024, 176: 106798. Q1,中科院升级版大类一区,TOP

Xue Yang, Miao Fasheng, Wang Shun, et al. Slope stability analysis with a hypoplastic constitutive model: investigating a stochastic anisotropy model and a hydro-mechanical coupled simulation. International Journal for Numerical and Analytical Methods in Geomechanics, 2024, 48(7), 1846-1863. Q1,中科院升级版大类二区)

Xue Yang, Miao Fasheng, Wu Yiping, et al. Probabilistic assessment of constitutive model parameters: insight from a statistical damage constitutive model and a simple critical state hypoplastic model. Journal of Earth Science, 2024. Q1,中科院升级版大类二区)

Xue Yang, Miao Fasheng, Wu Yiping, et al. Combing soil spatial variation and weakening of the groundwater fluctuation zone for the probabilistic stability analysis of a riverside landslide in the Three Gorges Reservoir area. Landslides, 2023 20, 1013–1029. Q1,中科院升级版大类二区)

Xue Yang, Miao Fasheng, Wu Yiping, et al. Dynamic stability assessment of reservoir colluvial landslide using a hypoplastic clay constitutive model considering the effects of drying-wetting cycles on the hydro-fluctuation belt. Engineering Geology, 2022, 307: 10679. Q1,中科院升级版大类一区,TOP

Xue Yang, Miao Fasheng, Wu Yiping, et al. Application of uncertain models of sliding zone on stability analysis for reservoir landslide considering the uncertainty of shear strength parameters. Engineering with Computers, 2022, 38(Suppl 4): 3057-3076. Q1,中科院升级版大类二区,TOP

Xue Yang, Wu Yiping, Miao Fasheng, et al. Effect of spatially variable saturated hydraulic conductivity with non-stationary characteristics on the stability of reservoir landslides. Stochastic Environmental Research and Risk Assessment, 2020, 34(2), 311-329. Q1,中科院升级版小类二区)

薛阳, 苗发盛,吴益平,温韬,王艳昆. 土体本构模型参数的不确定性评估研究[J].岩土力学, 2024, 45(9): 2797-2807. EI,中国卓越梯队期刊)

薛阳,吴益平,苗发盛, . 基于随机场-贝叶斯的滑面抗剪强度参数反演[J].浙江大学学报(工学版),2021,55(06):1118-1127. EI

薛阳,吴益平,苗发盛, . 库水升降条件下考虑饱和渗透系数空间变异性的白水河滑坡渗流变形分析[J]. 岩土力学, 2020,41(05):1709-1720. EI,中国卓越梯队期刊)

Bocheng Zhang, Kun Fang, Huiming Tang*, Siddiqua Sumi, Bingdong Ding. Block-flexure toppling in an anaclinal rock slope based on multi-field monitoring[J].  Engineering Geology, 2023, 327:107340.

Bocheng Zhang, Huiming Tang*, Kun Fang, Bingdong Ding, Qihang Gong. Experimental study on deformation and failure characteristics of interbedded anti-inclined rock slopes induced by rainfall[J]. Rock Mechanics and Rock Engineering, 2024, 17:1-28.

Bocheng Zhang, Huiming Tang*, Siddiqua Sumi, Bingdong Ding, Long Zhang, Yibing Ning. Exploring the deformation and failure characteristics of interbedded anti-inclined rock slopes: insights from physical modelling tests[J]. Rock Mechanics and Rock Engineering, 2023, 18:1-26.

Bocheng Zhang, Huiming Tang*, Yibing Ning, Kun Fang, Ding Xia. Weight analysis of impact factors of interbedded anti-inclined slopes block-flexure toppling based on support vector regression[J]. Journal of Earth Science, 2023.

Bocheng Zhang, Yibing Ning, Huiming Tang*, Bingdong Ding, Kun Fang, Zongxing Zou. Study on the evolutionary process of interbedded anti-inclined slope block-flexure toppling in the upper Yalong River[J]. Bulletin of Engineering Geology and the Environment, 82(07): 240.

Yang Yunpeng, Chen Guan*, Meng Xingmin, Bian Shiqiang, Chong Yan, Shi Wei, Jiang Wanyu, Jin Jiacheng, Li Chen, Mu Xinliang, Yue Dongxia. Analysis of the microseismicity characteristics in landslide dam failure flume tests: implications for early warning and dynamics inversion. Landslides, 2022, 19(4):789-808.

Chen Guan, Yang Yunpeng*, Meng Xingmin, Chong Yan, Shi Wei, Jin Jiacheng, Bian Shiqiang, Wu Jie, Yue Dongxia. Seismic characterization of a landslide dam failure hazard chain: Insights into flow dynamics and implications for warning, Engineering Geology, 2022, 309:17.

Yang Yunpeng, Chen Guan*, Meng Xingmin, Chong Yan, Shi Wei, Bian Shiqiang, Jin Jiacheng, Yue Dongxia. Characteristics of the impact pressure of an outburst debris flow: Insights from experimental flume tests, Engineering Geology, 2024, 330:107428.

Yang Yunpeng, Chen Guan*, Li Yajun, Meng Xingmin, Chong Yan, Bian Shiqiang, Jin Jiacheng, Shi Wei, Wu Jie, Yue Dongxia. Characterization of Stream, Hyperconcentrated and Debris Flows from Seismic Signals: Insights into Sediment Transport Mechanisms and Flow Dynamics. Journal of Geophysical Research: Earth Surface, 2024, 129(4): e2023JF007527.

Chen Qian, Ge Yunfeng, Li Changdong, Tang Huiming, Liu Geng, Chen Weixiang. A human-machine interaction method for rock discontinuities mapping by three-dimensional point clouds with noises. Journal of Rock Mechanics and Geotechnical Engineering, 2025, 17(3): 1646-1663. https://doi.org/10.1016/j.jrmge.2024.03.002

Chen Qian, Ge Yunfeng, Tang Huiming. Rock discontinuities characterization from large-scale point clouds using a point-based deep learning method. Engineering Geology, 2024, 337: 107585. https://doi.org/10.1016/j.enggeo.2024.107585

Chen Qian, Ge Yunfeng, Tang Huiming. An unsupervised method for rock discontinuities rapid characterization from 3D point clouds under noise. Gondwana Research, 2024, 132: 287-308. https://doi.org/10.1016/j.gr.2024.04.017

Ge Yunfeng, Chen Qian, Tang Huiming, Cao Bei, Wakeel Hussain. A Semi-automatic approach to quantifying the geological strength index using terrestrial laser scanning. Rock Mechanics and Rock Engineering, 2023, 56(9): 6559-6579. https://doi.org/10.1007/s00603-023-03412-1

Cheng Shang*, Feng Ling, Xiaodong Li, et al., Spatiotemporal reflectance fusion using generative adversarial network[J], IEEE Transactions on Geoscience and Remote Sensing, 2021, 60(5400915): 1-15

Cheng Shang*, Feng Ling, Xiaodong Li, et al., Superresolution land cover mapping using a generative adversarial network[J], IEEE Geoscience and Remote Sensing Letters, 2022, 19(6000105): 1-5

Cheng Shang*,Shan Jiang,Feng Ling, et al., Spectral–spatial generative adversarial network for super-resolution land cover mapping with multispectral remotely sensed imagery[J], IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2022, 16: 522-537

Feng Ling, Doreen Boyd, Cheng Shang*, et al., Measuring river wetted width from remotely sensed imagery at the subpixel scale with a deep convolutional neural network, Water Resources Research, 2019, 55(7): 5631-5649.

Zhixiang Yin, Xiaodong Li, Cheng Shang*, et al., Estimating subpixel turbulent heat flux over lLeads from MODIS thermal infrared imagery with deep learning, Cryosphere, 2021, 15(6): 2835-2856.

Xianjun Gao, Guangbin Zhang, Yuanwei Yang, et al. Two-stage Domain Adaptation based on Image and Feature Levels for Cloud Detection in Cross spatiotemporal Domain, IEEE Transactions on Geoscience and Remote Sensing, 2024 (SCI 1); DOI: 10.1109/TGRS.2024.3366901

高贤君, 冉树浩, 张广斌, . 基于多特征融合与对象边界联合约束网络的建筑物提取[J]. 武汉大学学报(信息科学版), 2024, 49(03):355-365. DOI: 10.13203/j.whugis20210520

邢若芸,冉树浩,高贤君*.顾及多分辨率特征的复合字典城中村识别方法[J].测绘通报, 2023, (04):41-48. DOI: 10.13474/j.cnki.11-2246.2023.0102

钟康,高贤君*,杨元维等. 建筑物轮廓双向驱动自适应分割重构的规则化方法 [J]. 激光与光电子学进展, 2023, 60 (20): 200-209. DOI 10.3788/LOP223169

张广斌, 高贤君*, 冉树浩, .高分遥感影像云雪共存区轻量云高精度检测方法[J].测绘学报,2023,52(01):93-107. EI ;DOI: 10.11947/j.AGCS.2023.20210686

Yubin Lei, Xianjun Gao*, Yuan Kou, et al. Balanced Cloud Shadow Compensation Method in High-Resolution Image Combined with Multi-Level Information, applied science, 2023,13(16),9296; DOI:https://doi.org/10.3390/app13169296

Guangbin Zhang, Xianjun Gao*, Jinhui Yang, et al. A multi-task driven and reconfigurable network for cloud detection in cloud-snow coexistence regions from very-high-resolution remote sensing image[J]. International Journal of Applied Earth Observation and Geoinformation, 2022.10 (SCI 1) ; DOI:https://doi.org/10.1016/j.jag.2022.103070

杨栋杰, 高贤君*, 冉树浩, .基于多重多尺度融合注意力网络的建筑物提取[J].浙江大学学报(工学版),2022,56(10):1924-1934. (EI); DOI: 10.3785/j.issn.1008-973X.2022.10.004

潘美美, 常京新, 高贤君*, .基于主方向的建筑物轮廓优化方法[J].光学学报,2022,42(18):163-173. (EI); DOI:10.3788/AOS202242.1828005

Zhang Guangbin, Gao Xianjun*; Yang Yuanwei, et al. Controllably Deep Supervision and Multi-Scale Feature Fusion Network for Cloud and Snow Detection Based on Medium- and High-Resolution Imagery Dataset. Remote Sensing. 2021, 13, 4805. (SCI 2) ; DOI:https://doi.org/10.3390/rs13234805

Chang Jingxin, Gao Xianjun*, Yang Yuanwei, Nan Wang. Object-Oriented Building Contour Optimization Methodology for Image Classification Results via Generalized Gradient Vector Flow Snake Model[J]. Remote Sensing, 2021, 13(12): 2406. (SCI 2); DOI:https://doi.org/10.3390/rs13122406

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