任晓丹
教授
所属大学: 同济大学
所属学院: 土木工程学院
个人简介
教育经历 2006.09~2010.10 同济大学 结构工程 博士 2008.10~2010.10 美国加州大学洛杉矶分校 计算力学 联合培养博士 公派留学 2003.09~2006.07 同济大学 结构工程 硕士 1999.09~2003.07 青岛建筑工程学院 土木工程 本科 工作经历 2011.04~2013.12 同济大学 讲师 2013.12~2021.12 同济大学 副教授 2021.12~至今 同济大学 教授 科研奖励 2020年,上海市科技进步二等奖 2019年,上海市科技进步一等奖 2018年,同济大学“黄金枝奖研金”一等奖 2018年,“世界华人计算力学学会”优秀青年科学家奖 2012年,上海市优秀博士论文奖 2011年,上海市科技进步二等奖 2010年,教育部科技进步二等奖 教学奖励 2020年,同济大学建筑工程系,通正铝合金奖教金 2018年,同济大学“八五建杰奖教金”三等奖 2017年,同济大学建筑工程系“坚朗奖教金” 2016年,同济大学韩国龙土木奖教金二等奖 2015年,同济大学青年教师讲课竞赛(中文组)团体二等奖、个人二等奖 其他奖励 在国内外学术会议上作特邀报告6次 在国外著名大学作特邀学术讲座3次 获得会议优秀论文奖2次 所提出的本构关系模型和计算方法被我国自主研发的代表性结构大震弹塑性分析软件SAUSAGE采用 基于损伤模型和数值算法开发的ConcreteD模块已被OpenSees平台集成
研究领域
混凝土随机损伤力学 工程结构新型计算理论与方法 交叉学科(生物力学、先进技术等)
学术兼职
国际期刊《Engineering Failure Analysis》(JCR Q1/Q2)土木工程主题编辑中国建筑学会建筑结构分会青年理事中国勘测设计协会结构设计分会性能化抗震设计专家工作组委员上海市力学学会振动力学专业委员会秘书长2019.09~2020.08 Computer Modeling in Engineering & Sciences客座编辑
近期论文
出版著作 任晓丹,李杰著,基于多尺度分析的混凝土随机损伤本构理论研究,2020,上海,同济大学出版社。 发表论文 J Tao, X Ren, J Chen. Random transition of failure modes in concrete shear walls with constitutive parameters involving spatial variation[J]. Engineering Structures, 2021, 242(7):112508. D Feng, Y Liang, X Ren, et al. Random fields representation over manifolds via isometric feature mapping-based dimension reduction[J]. Computer-Aided Civil and Infrastructure Engineering. D Feng, X Ren. Analytical examination of mesh-dependency issue for uniaxial RC elements and new fracture energy-based regularization technique[J]. International Journal of Damage Mechanics,2021.105678952110392. J He, J Chen, X Ren, et al. Uncertainty Quantification of Random Fields Based on Spatially Sparse Data by Synthesizing Bayesian Compressive Sensing and Stochastic Harmonic Function[J]. Mechanical Systems and Signal Processing, 2021, 153(1). J Shen, X Ren, J Chen. Effects of spatial variability of ground motions on collapse behaviour of buildings[J]. Soil Dynamics and Earthquake Engineering,2021,144. D Feng, X Ren. Implicit gradient-enhanced force-based Timoshenko fiber element formulation for reinforced concrete structures[J]. International Journal for Numerical Methods in Engineering, 2020(1). X Gao, L Zhou, X Ren, J Li. Rate effect on the stress–strain behavior of concrete under uniaxial tensile stress [J]. Structural Concrete, 2020, 1-16. Q Wang, X Ren, R Ballarini. A Multifield Model for Early-Age Massive Concrete Structures: Hydration, Damage, and Creep [J]. Journal of Engineering Mechanics, 2020, 146(10), 04020115. X Ren, T Huang. Introduction to the Special Issue Numerical Modeling and Simulation for Structural Safety and Disaster Mitigation [J]. CMES-Computer Modeling in Engineering &Science, 2020, 124(2), 411-413. J Tao, J Chen, X Ren. Copula-Based Quantification of Probabilistic Dependence Configurations of Material Parameters in Damage Constitutive Modeling of Concrete [J]. Journal of Structural Engineering, 2020, 146 (9), 04020194. J He, J Chen, X Ren, J Li. A shake table test study of reinforced concrete shear wall model structures exhibiting strong non-linear behaviors [J]. Engineering Structures, 2020, 212, 110481. X Ren, Q Wang, R Ballarini, X Gao. Coupled Creep-Damage-Plasticity Model for Concrete under Long-Term Loading [J]. Journal of Engineering Mechanics, 2020, 146(5), 04020027. C Hu, D Ling, X Ren, S Gong, L Wang, Z Huang et al. An improved crack-tip element treatment for advanced FEMs [J]. Theoretical and Applied Fracture Mechanics, 2020, 102587. T Zhang, X Ren, X Feng, et al. Failure mechanisms of pedicle screws and cortical screws fixation under large displacement: A biomechanical and microstructural study based on a clinical case scenario [J]. Journal of the Mechanical Behavior of Biomedical Materials,2020, 104, 103646. L Hai, X Ren. Computational investigation on damage of reinforced concrete slab subjected to underwater explosion [J]. Ocean Engineering 2020,195, 106671. X Ren, Y Shao. Numerical Investigation on Damage of Concrete Gravity Dam during Noncontact Underwater Explosion [J]. Journal of Performance of Constructed Facilities, 2019, 33(6): 04019066. Z Huang, X Ren, Z Chen, D Ling. Centrifuge experiment and numerical analysis of an air-backed plate subjected to underwater shock loading [J]. Frontiers of Structural and Civil Engineering ,2019, 13 (6), 1350-1362. J Shen, X Ren, Y Zhang, J Chen. Nonlinear dynamic analysis of frame-core tube building under seismic sequential ground motions by a supercomputer [J]. Soil Dynamics and Earthquake Engineering, 2019, 124:86-97. X Gao, Y Pan, X Ren. Probabilistic model of the minimum effective cross-section area of non-uniform corroded steel bars [J], Construction and Building Materials, 2019, 216:227-238. Z Ding, D Feng, X Ren, J Wang. Physically based constitutive modeling of concrete fatigue and practical numerical method for cyclic loading simulation [J]. Engineering Failure Analysis, 2019, 101, 230-242. X Ren, W Fan, J Li, J Chen. Building Information Model–based finite element analysis of high-rise building community subjected to extreme earthquakes [J]. Advances in Structural Engineering, 2019,22(4):971-981. X Gao, N Li, X Ren. Analytic solution for the bond stress-slip relationship between rebar and concrete [J]. Construction and Building Materials, 2019, 197:385-397. H Liu, X Ren, S Liang, J Li. Physical Mechanism of Concrete Damage under Compression [J]. Materials, 2019,12(20), 3295. X Gao, X Ren, J Li, Y Zhang. Bond behavior between steel reinforcing bars and concrete under dynamic loads[J]. Structural Concrete, 2018(1). J Wu, D Hao, W Li, X Ren. Numerical modeling and simulation of a prestressed concrete containment vessel [J]. Annals of Nuclear Energy, 2018, 121:269-283. Z Huang, Z Chen, X Ren, et al. Centrifuge Model Tests and Numerical Simulations of the Impact of Underwater Explosion on an Air-Backed Steel Plate [J]. Computer Modeling in Engineering &Sciences, 2018,118(1):139-155. X Gao, J Li, X Ren. Probabilistic Model for Long-Term Time-Dependent Compressive Strength of Concrete in Existing Buildings[J]. Journal of Performance of Constructed Facilities, 2018,32(5): 04018074. D Feng, C Yang, X Ren. Multi-scale stochastic damage model for concrete and its application to RC shear wall structure[J]. -Engineering Computations, 2018, 35(6):2287-2307. X Ren, J Li. Two-Level Consistent Secant Operators for Cyclic Loading of Structures [J]. Journal of Engineering Mechanics, 2018,144(8): 04018065. D Feng, X Ren, J Li. Cyclic behavior modeling of reinforced concrete shear walls based on softened damage-plasticity model [J]. Engineering Structures, 2018,166:363-375. J Chen, J He, X Ren, J Li. Stochastic Harmonic Function Representation of Random Fields for Material Properties of Structures [J]. Journal of Engineering Mechanics, 2018,144(7): 04018049. X Ren, Q Yue. Reliability assessment of reinforced concrete structures based on random damage model [J]. Structure and Infrastructure Engineering, 2018,14(6):780-790. D Feng, X Ren, J Li. Softened damage-plasticity model for analysis of cracked reinforced concrete structures [J]. Journal of Structural Engineering, 2018,144(6): 04018044. S Liang, X Ren, J Li. A mesh-size-objective modeling of quasi-brittle material using micro-cell informed damage law [J]. International Journal of Damage Mechanics, 2018,27(6):913:936. H Liu, X Ren, J Li. Indentation tests based multi-scale random media modeling of concrete[J]. Construction & Building Materials, 2018, 168:209-220. SA Kulper, CX Fang, X Ren, et al. Development and initial validation of a novel smoothed‐particle hydrodynamics‐based simulation model of trabecular bone penetration by metallic implants [J]. Journal of Orthopaedic Research?, 2018, 36(4):1114-1123. SA Kulper, KY Sze, CX Fang, X Ren, M Guo, et al. A novel fracture mechanics model explaining the axial penetration of bone-like porous, compressible solids by various orthopaedic implant tips [J]. Journal of the mechanical behavior of biomedical materials, 2018, 80:128-136. X Ren, Q Bai, C Yang, J Li. Seismic behavior of tall buildings using steel-concrete composite columns and shear walls [J]. The Structural Design of Tall & Special Buildings, 2018, 27(4): e1441. X Ren, K Liu, J Li, X Gao. Compressive behavior of stirrup-confined concrete under dynamic loading[J]. Construction & Building Materials, 2017, 154:10-22. T Huang, X Ren, J Li. Incremental dynamic analysis of seismic collapse of super‐tall building structures [J]. The Structural Design of Tall and Special Buildings, 2017,26(16): e1370. Q Yue, X Ren, X Zhang. Mechanical properties of underpinning joints in structural moving: Experiments and numerical modeling [J]. The Structural Design of Tall and Special Buildings, 2017, 26(14): e1379. D Feng, X Ren. Enriched force-based frame element with evolutionary plastic hinge [J]. Journal of Structural Engineering, 2017,143(10): 06017005. H Zhou, J Li and X Ren. Multiscale Stochastic Structural Analysis Toward Reliability Assessment for Large Complex Reinforced Concrete Structures. International Journal for Multiscale Computational Engineering. 2016, 14(3): 303-321. D Feng, X Ren, J Li. Stochastic damage hysteretic model for concrete based on micromechanical approach[J]. International Journal of Non-Linear Mechanics, 2016, 83: 15-25. J Chen, P Song, X Ren. Stochastic dynamic response analysis of nonlinear structures with general nonuniform random parameters by minimizing GL 2-Discrepancy [J]. International Journal for Multiscale Computational Engineering, 2016, 14(3). J Liang, X Ren, J Li. A competitive mechanism driven damage-plasticity model for fatigue behavior of concrete[J]. International Journal of Damage Mechanics, 2016, 25(3): 377-399. X Yan, X Ren, J Li. Compressive behavior of concrete under different loading rates: Experimental analysis[C]. The Fifth International Symposium on Life-Cycle Engineering (IALCCE 2016). 2016. X Ren, S Zeng, J Li. A rate-dependent stochastic damage–plasticity model for quasi-brittle materials[J]. Computational Mechanics, 2015, 55(2): 267-285. DC Feng, X Ren, J Li. Implicit gradient delocalization method for force-based frame element[J]. Journal of Structural Engineering, 2015, 142(2): 04015122. X Yan, X Ren, J Li. Heterogeneous Lattice Model Based Simulation of Concrete under Uniaxial Loading[J]. Applied Mechanics & Materials, 2015, 784:249-257. X Ren, T Huang, J Li. Nonlinear Behaviors of Super-Columns: A Three-Dimensional Numerical Study [C]. International Symposium on Structural Engineering. 2014. X Ren, J Li. Multi-scale based fracture and damage analysis of steel fiber reinforced concrete[J]. Engineering Failure Analysis, 2013, 35: 253-261. J Li, Q Huang, X Ren. Dynamic Initiation and Propagation of Multiple Cracks in Brittle Materials[J]. Materials, 2013, 6(8): 3241-3253. S Liang, X Ren, J Li. A random medium model for simulation of concrete failure[J]. Science China Technological Sciences, 2013, 56(5): 1273-1281. X Ren, J Li. A unified dynamic model for concrete considering viscoplasticity and rate-dependent damage [J]. International Journal of Damage Mechanics, 2013, 22(4): 530-555. S Zeng, X Ren, J Li. Triaxial behavior of concrete subjected to dynamic compression[J]. Journal of Structural Engineering, 2012, 139(9): 1582-1592. X Ren, J Li. Dynamic fracture in irregularly structured systems[J]. Physical Review E, 2012, 85(5): 055102. X Ren, J Chen, J Li, et al. Micro-cracks informed damage models for brittle solids[J]. International journal of solids and structures, 2011, 48(10): 1560-1571. X Ren, J Li. Pragmatic analysis of material instability under strain control loading[J]. Engineering Failure Analysis, 2011, 18(2): 720-725. X Ren, J Li. Multi-scale based stochastic damage evolution[J]. Engineering Failure Analysis, 2011, 18(2): 726-734. X Ren, J Li. Hysteretic deteriorating model for quasi-brittle materials based on micromechanical damage approach[J]. International Journal of Non-Linear Mechanics, 2011, 46(1): 321-329. J Li, X Ren. Homogenization-based multi-scale damage theory[J]. Science China Physics, Mechanics and Astronomy, 2010, 53(4): 690-698. J Li, X Ren. Stochastic damage model for concrete based on energy equivalent strain[J]. International Journal of Solids and Structures, 2009, 46(11): 2407-2419. X Ren, W Yang, Y Zhou, et al. Behavior of high-performance concrete under uniaxial and biaxial loading[J]. ACI materials journal, 2008, 105(6): 548-557. 吕欣亮,任晓丹,宁超列.剪切失效型钢筋混凝土柱滞回模型参数识别与经验预测[J]. 防灾减灾工程学报,2021,41(03):520-530. 贺景然,陈建兵,任晓丹,李杰.基于不同损伤本构模型的钢筋混凝土剪力墙结构数值模拟[J].建筑结构学报,2021,42(06):139-149. 薛亮,孙千伟,任晓丹.基于内聚单元模型的装配式剪力墙数值模拟研究[J].地震工程与工程振动,2020,40(04):174-182. 陈建兵,陶金聚,任晓丹,李杰.基于Copula理论的混凝土受压本构全曲线参数相关性研究[J].土木工程学报,2020,53(07):52-63. 王思,胡晶,张雪东,任晓丹,陈祖煜,张紫涛.不同水深水下爆炸数值及离心试验研究[J].哈尔滨工业大学学报,2020,52(06):78-84. 吕林梅,陈叶青,魏晓丽,汪剑辉,任晓丹.基于毁伤面积率指标的混凝土重力坝毁伤评估方法研究[J].防护工程,2020,42(02):28-32. 贺景然,陈建兵,任晓丹,李杰.基于不同损伤本构模型的混凝土剪力墙结构数值模拟与振动台试验验证[J/OL].建筑结构学报:1-13[2020-08-03]. 任晓丹, 刘凯, 魏公涛,等. 不同加载速率下箍筋约束混凝土力学性能试验研究[J]. 建筑结构学报, 2017, 38(3):141-150. 任晓丹, 范伟达. 基于损伤模型的钢筋混凝土梁剪切破坏全过程分析[J]. 工程力学, 2017, 34(s1):139-142. 李杰, 冯德成, 任晓丹,等. 混凝土随机损伤本构关系工程参数标定与应用[J]. 同济大学学报(自然科学版), 2017, 45(8):1099-1107. 梁诗雪,任晓丹,李杰.两相介质随机场的随机谐和函数表达[J].同济大学学报(自然科学版),2016,08:1139-1144+1152. 李杰,晏小欢,任晓丹.不同加载速率下混凝土单轴受压性能大样本试验研究[J].建筑结构学报,2016,08:66-75. 晏小欢,任晓丹,李杰.混凝土单轴受压全过程变异性试验研究[J].同济大学学报(自然科学版),2016,05:664-670. 岳庆霞,任晓丹,张鑫.考虑土体弹性模量随机场的隧道结构地震响应分析[J].建筑结构学报,2016,S1:356-361. 周来军,任晓丹,李杰.混凝土单轴受拉动力本构试验技术[J].结构工程师,2016,01:163-168. 张晓悦,任晓丹,李杰.压电智能骨料的动态响应性能试验研究[J].地震研究,2016,01:165-170+182. 徐涛智,任晓丹. 基于双标量损伤黏聚裂缝模型的混凝土单轴受压裂缝扩展分析 [J]. 水利学报, 2016,47(11):1427-1434. 任晓丹. 纤维混凝土开裂与破坏细观数值模拟研究[C]. 中国力学大会-2015论文摘要集. 2015. 任晓丹,李杰.基于损伤理论的钢筋混凝土结构裂缝分析[J].同济大学学报(自然科学版),2015,08:1129-1134. 任晓丹,白琼.型钢混凝土框架-核心筒结构罕遇地震作用下非线性响应分析[J].建筑结构学报,2015,S2:9-15. 任晓丹,李杰.混凝土损伤与塑性变形计算[J].建筑结构,2015,02:29-31+74. 万增勇,任晓丹,李杰.OpenSees混凝土单轴本构关系二次开发[J].结构工程师,2015,02:93-99. 李杰,曾莎洁,任晓丹.混凝土动力随机损伤本构关系[J].同济大学学报(自然科学版),2014,12:1783-1789. 任晓丹.混凝土高坝地震灾变模拟与分析[J].水利学报,2014,S1:64-70. 任晓丹.弹塑性损伤本构关系的显式积分算法研究[J].固体力学学报,2014,S1:134-140. 李杰,任晓丹.混凝土随机损伤力学研究进展[J].建筑结构学报,2014,04:20-29. 李苹,任晓丹,李杰.基于隐式梯度理论的混凝土细观随机断裂模型[J].建筑科学与工程学报,2014,03:90-97. 任晓丹, 黄天璨, 李杰. 基于损伤理论与光滑粒子动力学方法的混凝土侵彻分析与模拟[C]. 全国混凝土结构基本理论及工程应用学术会议. 2014. 任晓丹. 基于损伤理论的钢筋混凝土梁剪切破坏模拟[C]. 中国力学大会. 2013. 梁诗雪,任晓丹,李杰.混凝土破坏过程模拟的随机介质模型[J].中国科学:技术科学,2013,07:807-815. 任晓丹.伪脆性材料一维非线性波动分析[J].水利学报,2012,S1:173-178+186. 李杰, 任晓丹, 曾莎洁. 新、旧规范建议混凝土单轴本构关系之讨论[C]. 全国混凝土结构基本理论及工程应用学术会议. 2012. 李杰,任晓丹,黄桥平.混凝土黏塑性动力损伤本构关系[J].力学学报,2011,01:193-201. 李杰,任晓丹.基于摄动方法的多尺度损伤表示理论[J].中国科学:物理学力学天文学,2010,03:344-352. 李杰,任晓丹.混凝土静力与动力损伤本构模型研究进展述评[J].力学进展,2010,03:284-297. 司炳君,孙治国,任晓丹,王东升,王清湘.钢筋混凝土桥墩滞回性能的有限元模拟分析[J].哈尔滨工业大学学报,2009,12:105-109. 李杰,任晓丹,杨卫忠.混凝土二维本构关系试验研究[J].土木工程学报,2007,04:6-12.