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师资力量
景伟
2026-01-11 12:04 点击: 作者: 来源:

姓名:景伟

职称:教授

通信地址:甘肃省兰州市兰工坪路287号兰州理工大学土木工程学院

邮编:730050

电话:13919105919

E-mail:jingwei3276@163.com

教育经历

2014.09-2017.12:兰州理工大学土木工程学院防灾减灾工程及防护工程专业,工学博士

2012.09-2014.06:兰州理工大学土木工程学院结构工程专业,工学硕士

2008.09-2012.06:兰州理工大学土木工程学院土木工程专业,工学学士

工作履历

2026.01-至今,兰州理工大学,教授

2025.12-至今,兰州理工大学土木与水利工程学院,建筑工程系主任

2025.07-2025.12,兰州理工大学土木与水利工程学院,建筑工程系副主任

2021.01-2025.12,兰州理工大学,副教授

2019.12-至今,兰州理工大学,硕士研究生导师(破格)

2018.02-2020.12,兰州理工大学,讲师

2017.12-2020.07,兰州理工大学,博士后

教学工作

硕士生课程:结构振动与控制理论

本科生课程:高层建筑结构设计、结构力学、工程弹性力学

本科生实践教学:毕业设计、认识实习、生产实习

学术兼职

[1]《Earthquake Engineering and Resilience》期刊青年编委

[2] 宁夏土木工程防震减灾工程技术研究中心技术委员会委员

[3] 甘肃省抗震防灾协会理事

[4] 甘肃省城科会韧性城市专委会委员

研究领域

工程结构减震控制;生命线工程防震减灾;液-固耦合动力响应

荣誉获奖

[1]甘肃省科学技术进步奖二等奖:石油/天然气储配核心设施的安全运营保障关键技术创新集成及应用(排名第一)

[2]江西省科学技术进步奖二等奖:调峰用天然气液化/储配系统综合防灾关键技术研究及应用(排名第二)

[3]中国石油和化学工业联合会科学技术奖三等奖:天然气液化、储存及输配系统综合防灾关键技术研究(排名第二)

[4]甘肃省高等教育教学成果奖二等奖:西部院校土木工程防灾减灾创新人才培养国际化探索与实践(排名第六)

[5] 甘肃省高等学校省级线下一流课程:结构优化设计(排名第五)

[6]甘肃省土木建筑学会科技英才奖

[7]第四届全国大学生岩土工程竞赛二等奖指导教师

[8]第三届全国大学生岩土工程竞赛三等奖指导教师

[9]兰州理工大学“三育人奖”

[10]甘肃省“创新之星”指导教师

科研项目

纵向项目:

[1]国家自然科学基金(52168071):“多因素耦合下大型隔震储液罐的地震破坏及灾变控制方法研究”,主持,2022.01-2025.12

[2]国家自然科学基金(51908267):“液-固-土耦合下黄土区大型储液罐群的多维地震动响应及振动控制研究”,主持,2020.01-2022.12

[3]甘肃省杰出青年基金(23JRRA759):“地震水平-摇摆耦合作用下储液罐力学行为及减震控制方法研究”,主持,2024.01-2026.12

[4]甘肃省重点研发计划(24YFGA032):“高烈度区大型薄壳储罐的地震破坏评估及灾变控制关键技术研究”,主持,2024.09-2026.09

[5]甘肃省青年科技基金计划(20JR5RA433):“黄土区储油罐群复合地基的地震动响应和破坏机理研究”,主持,2021.01-2022.04

[6]中国博士后科学基金(2018M633652XB):“西北特殊环境下大型储液罐的动力灾变及控制研究”,主持,2019.01-2020.07

[7] 兰州市重点产业创新创业项目:“大型储液罐负刚度惯容阻尼器-隔震混合控制系统研发与应用”,主持,2026.01-2027.12

[8]兰州市青年科技人才创新项目(2023-QN-30):“强震下黄土区重要能源设施储罐的抗震性能评估和混合控制关键技术研究”,主持,2023.11-2025.11

[9]甘肃省高等学校创新基金项目(2023A-027):“罕遇地震下生命线工程储罐的复杂动力响应及高效减震控制方法研究”,主持,2023.01-2024.12

[10]西部土木工程防灾减灾教育部工程研究中心开放基金(WCDMCE-23-02):“极罕遇地震下软土场地隔震储罐的抗震性能及减震方法研究”,主持,2024.01-2025.12

[11]国家自然科学基金(51968045):“高液位板-壳组合隔震混凝土贮液结构的液-固耦合动力响应和减震控制研究”,排名第2,2020.01-2023.12

[12]宁夏自然科学基金重点项目(2024AAC02016):“强震区能源基地储液罐群地震平-转耦合效应及双控减震策略研究”,排名第2,2025.01-2027.12

[13]宁夏自然科学基金重点项目(2020AAC02007):“液-固-土耦合下强震区大型储液罐群多维地震动响应及减隔震控制研究”,排名第2,2020.01-2022.12

[14]中国地震局工程力学研究所基本科研业务费专项资助项目(2020D26):“桩-土-固-液耦合下黄土区隔震储液罐的减震性能和动力灾变研究”,主持,2020.09-2024.01

[15]甘肃省高等学校创新能力提升项目(2019A-021):“多因素耦合下黄土区不同类型隔震储液罐的动力响应及减震性能研究”,主持,2019.07-2020.09

[16]甘肃省土木工程减震隔震国际科技合作基地开放基金资助项目(GII2019-N03):“大型隔震钢制储液罐碰撞动力响应研究”,主持,2019.01-2020.12

[17]甘肃省建设科技攻关项目(JK2019-13):“地震作用下相邻建筑结构碰撞的多防线控制实用技术研究”,主持,2019.01-2020.12

[18]天水市自然科学基金(TS-STK-2024A-265):“土-结构相互作用下村镇建筑抗震性能及减震控制关键理论与技术研究”,排名第3,2025.01-2026.12

横向项目:

[1]甘肃新发展城市开发建设运营集团有限公司:“异形曲线钢筋混凝土框架结构建造关键技术研究”,主持,2025.07-2026.12

[2]甘肃省城乡规划设计研究院有限公司:“节点试验”,主持,2025.01-2025.12

[3]甘肃路桥建设集团有限公司第十分公司:“黄土区隧道-相邻地上结构系统的地震响应及影响因素研究”,主持,2024.01-2024.12

[4]甘肃省城乡规划设计研究院有限公司:“结构振动台试验”,主持,2024.01-2024.12

[5]中国建筑第四工程局有限公司:“海南州贵德县惠安黄河市政大桥建设项目技术服务”,主持,2023.01-2024.12

[6]甘肃新美城市装饰工程有限公司:“城市红色主题浮雕建模及材料选择的应用研究”,主持,2023.01-2023.12

学术论著

[1]景伟.能源设施隔震储液罐抗震性能分析与提升关键技术(著).北京:科学出版社.

[2]程选生,景伟.混凝土矩形贮液结构—隔震与减震(著).北京:科学出版社.

[3]Wei Jing(景伟)*, Hui Zhang, Yixin Zhang, Teng Wang, Wenwei Yang. Seismic mitigation performance of 3D-isolated liquid storage tank under horizontal-rocking coupled earthquake excitations[J]. Bulletin of Earthquake Engineering, 2025.(SCI)

[4]Wei Jing(景伟)*, Yaoqu Yang, Yixin Zhang, et al. Mechanical behavior of aseismic and base-isolated liquid storage tanks under coupled horizontal-rocking ground motions[J]. Structures,2025, 80: 109949. (SCI)

[5]Wei Jing(景伟)*, Menghui Mao, Shuang Tian, Wenwei Yang. Seismic Responses of Three-Dimensional Isolated Liquid Storage Tank Under Uneven Settlement of Foundation[J].Journal of Vibration Engineering & Technologies, 2025.(SCI)

[6]Wei Jing(景伟)*, Zinuo Zhang, Shuang Tian, et al. Influence of earthquake oblique incidence on dynamic responses of three-dimensional isolated liquid storage tank[J]. Structures, 2025, 77: 109017. (SCI)

[7]Wei Jing(景伟)*, Menghui Mao, Fangdie Hu, Shihao Wang. Failure probability of base-isolated storage tank using positive-negative stiffness under significant duration[J]. Journal of Constructional Steel Research, 2025, 226:109275. (SCI)

[8]Wei Jing(景伟)*, Fangdie Hu, Yixin Zhang, Shushuang Song. Seismic performance improvement of base-isolated liquid storage tank based on positive and negative stiffness under different definitions of ground motion duration[J]. Soil Dynamics and Earthquake Engineering, 2025, 188: 109061. (SCI)

[9]Wei Jing(景伟)*, Yixin Zhang, Jie Feng, Shushuang Song. Seismic performance improvement of liquid storage tank using new type three-dimensional base-isolation[J]. Earthquakes and Structures, 2025, 28(1): 37-60. (SCI)

[10]Wei Jing(景伟)*, Yixin Zhang, Qisen Wang, Shushuang Song. Dynamic responses of non-isolated and isolated liquid storage tanks under mainshock-aftershock sequences[J]. Structures, 2024, 69: 107347. (SCI)

[11]Wei Jing(景伟)*, Shihao Wang, Jian Shen, Shushuang Song. Seismic control of adjacent liquid storage tanks based on vibration barrier considering structure-soil-structure interaction[J]. Journal of Earthquake Engineering, 2024: 1-23. (SCI)

[12]Wei Jing(景伟)*, Shihao Wang, Jian Shen, Shushuang Song. Influence of seismic wave incidence angle on dynamic responses and vibration control of adjacent liquid storage tanks[J]. International Journal of Structural Stability and Dynamics, 2024: 2450254. (SCI)

[13]Wei Jing(景伟)*, Jie Feng, Shihao Wang, Shushuang Song. Seismic performance improvement of liquid storage tank based on base-isolation and pendulum tuned mass damper[J]. Nuclear Engineering and Design, 2024, 417: 112867. (SCI)

[14]Wei Jing(景伟)*, Jie Feng, Shihao Wang, Shushuang Song. Failure probability of a liquid storage tank with three-dimensional base-isolation under earthquake action[J]. Structures, 2023, 58: 105633. (SCI)

[15]Wei Jing(景伟)*, Jie Feng, Xuansheng Cheng, Wenwei Yang. Seismic Response Reduction of Liquid Storage Tank Using a Passive System Based on Improved Tuned Mass Damper [J]. International Journal of Structural Stability and Dynamics, 2024, 24(02), 2450089. (SCI)

[16]Wei Jing(景伟)*, Qisen Wang, Shangshang Xing, Xuangcheng Cheng, Yu Song. Control measures of collapse-pounding dynamic responses of adjacent structures under earthquake action[J]. Soil Dynamics and Earthquake Engineering, 2023. (SCI)

[17]Jing W(景伟)*, Wang QS, Xing SS, et al. Seismic failure probability of adjacent frame structures retrofitted by flexible control measure[J]. Structures, 2023, 56: 104863. (SCI)

[18]Wei Jing(景伟)*, Jian Shen, Xuansheng Cheng, Wenwei Yang. Seismic responses of a liquid storage tank considering structure-soil-structure interaction[J]. Structures, 2022, 45: 2137-2150. (SCI)

[19]Wei Jing(景伟)*, Jian Shen, Xuansheng Cheng. Dynamic responses of liquid storage tank under near fault pulse-like earthquakes with different focal mechanisms[J]. International Journal of Acoustics and Vibration, 2022, 27(2), 151-161. (SCI)

[20]Xuansheng Cheng, Wei Jing(景伟)*, Zhongtie Wu. Seismic capacity evaluation of a sliding isolation concrete rectangular liquid storage structure[J]. European Journal of Environmental and Civil Engineering, 2022, 26(2): 635-656. (SCI)

[21]Jing W(景伟)*, Feng J, Cheng X S. Pounding probability of base-isolated steel liquid storage tank under earthquake actions[J]. Journal of Vibration Engineering & Technologies, 2021, 9: 1347-1357. (SCI)

[22]Wei Jing(景伟)*, Jingxuan Wang, Xuansheng Cheng. Dynamic responses of oil storage tank considering wind interference effect[J]. Engineering Failure Analysis, 2019, 104: 1053-1063. (SCI)

[23]Wei Jing(景伟)*, Jingxuan Wang, Xuansheng Cheng. Dynamic responses of liquid storage tanks caused by wind and earthquake in special environment[J]. Applied Sciences, 2019. (SCI)

[24]Wei Jing(景伟)*, Xuansheng Cheng. Dynamic responses of sliding isolation concrete rectangular liquid storage structure under far-field long-period earthquake[J]. Journal of Applied Fluid Mechanics, 2019, 12(3):907-919. (SCI)

[25]Xuansheng Cheng, Wei Jing(景伟)*, HuanFeng. Nonlinear dynamic responses of sliding isolation concrete liquid storage tank with limiting-devices[J]. KSCE Journal of Civil Engineering, 2019, 23: 3005-3020. (SCI)

[26]Xuansheng Cheng, Wei Jing(景伟)*, Lijun Gong. Simplified model and energy dissipation characteristics of a rectangular liquid storage structure controlled with sliding base isolation and displacement-limiting devices[J]. Journal of Performance of ConstructedFacilities, ASCE, 2017, 31(5):1-11. (SCI)

[27]Xuansheng Cheng, Wei Jing(景伟)*, Chao Yin, et al. Stability parameter analysis of a composite foundation of an oil storage tank in a loess area treated with compaction piles[J]. Soils and Foundations, 2018, 58(2):306-318. (SCI)

[28]Wei Jing(景伟), Xuansheng Cheng, Wei Shi. Dynamic responses of sliding isolation concrete rectangular liquid storage structure with limiting-devices under bidirectional earthquake actions[J]. Arabian Journal for Science and Engineering, 2018, 43(4):1911-1924. (SCI)

[29]Xuansheng Cheng, Wei Jing(景伟), Xiaoyan Zhang, Bo Liu. Pounding dynamic responses and mitigation measure of sliding base-isolated concrete rectangular liquid-storage structures[J]. KSCE Journal of Civil Engineering, 2018. (SCI)

[30]Xuansheng Cheng, Wei Jing(景伟)*, Lijun Gong. Dynamic responses of a sliding base-isolated RLSS considering free surface liquid sloshing[J]. KSCE Journal of Civil Engineering, 2018, 22(12):4964-4976. (SCI)

[31]Xuansheng Cheng*, Wei Jing(景伟)*. Calculation models and stability of composite foundation treated with compaction piles[J]. Geomechanics and Engineering, 2017, 13(6):929-946. (SCI)

[32]Xuansheng Cheng*, Wei Jing(景伟)*, Xinlei Li. Effect of the limiting-device type on the dynamic responses of sliding isolation in a CRLSS[J]. Earthquakes and Structures, An International Journal, 2018, 15(2):133-144. (SCI)

[33]Xuansheng Cheng, Wei Jing(景伟)*, Lijun Gong. Liquid sloshing problem in a concrete rectangular LSS with a vertical baffle[J]. Arabian Journal for Science and Engineering, 2019, 44:4245-4256. (SCI)

[34]程选生,景伟,杜永峰,等.基于振动台试验的滑移隔震-限位混凝土矩形贮液结构减震研究[J].土木工程学报, 2018, 51(12):120-132. (EI)

程选生,景伟*,李国亮,等.微幅晃动下考虑地基效应的矩形贮液结构动力响应研究[J].振动与冲击, 2017, 36(7):164-170. (EI)

发明专利:

[1]景伟,田爽,胡芳蝶,等.一种减小相邻储液罐地震响应的振动控制装置及其振动控制方法.专利号:ZL202211361015.1

[2]景伟,丰杰,赵忠忠,等.一种碰撞耗能及防晃减晃相结合的储液罐减震控制装置.专利号:ZL202111573801.3

[3]景伟,陈鹏,朱胜祥,等.一种大高宽比混凝土矩形储液结构的设计方法及其结构.专利号:ZL202010176195.0

[4]景伟,王景玄,邢尚尚,等.相邻框架结构倒塌碰撞的刚-柔结合的多防线控制方法及控制结构.专利号:ZL201910190488.1

[5]程选生,景伟,周欣海,陈佳,张小燕,巩利军,马亮,李国亮,李德.设置橡胶块的滑移隔震贮液结构与限位墙碰撞缓冲方法,专利号:ZL201610915524.2

[6]程选生,景伟,石玮,等.河堤混凝土悬挑结构的加固方法,专利号:ZL2015100067078

[7]程选生,景伟,殷超,等.简化挤密桩复合地基计算模型的新方法,专利号:ZL2015106568287

[8]程选生,冯欢,李文惠,朱前坤,景伟,等.悬挑板结构弯曲型裂缝加固方法,专利号:ZL2015100066821

教改项目:

[1]甘肃省高等教育教学成果培育项目(2024-12),新工科背景下课程思政与数智化融入的防震减灾课程群教学改革与实践,主持

[2]甘肃省第二批高校课程思政示范课程:《结构力学》,参与

[3]《结构力学》省级教学团队成员

[4]兰州理工大学高等教育研究项目,新工科背景下少学时弹性力学课程的数字化教学改革与实践(GJ2024B-19),主持

[5]甘肃省高校引进和使用优质在线开放课程,《弹性力学及有限单元法》,主持

[6]兰州理工大学混合式教学课程,《工程弹性力学》,主持

[7]兰州理工大学高等教育研究项目,基于学生创新思维与实践能力培养的少学时弹性力学课程教学改革(GJ2021B-4),主持

[8]兰州理工大学“课程思政”改革试点课程,《弹性力学及有限元》,主持

[9]兰州理工大学研究生课程思政建设项目,《结构振动控制理论》(115050020007),主持