吕清芳


通讯方式:101011003@seu.edu.cn

研究方向:

  1. 现代竹木结构

  2. 预应力混凝土结构

  3. 混凝土结构耐久性等

办公地点:土木科研楼714室

 

 

个人简介

吕清芳,女,197210月生,浙江新昌人,东南大学土木工程学院教授,博士生导师,国家一级注册结构工程师。

1993年本科毕业于东南大学工业与民用建筑工程专业,之后免试进入东南大学结构工程专业攻读工学硕士学位,师从蒋永生教授(已故),1996年毕业并取得硕士学位,同年进入东南大学建筑设计院从事结构设计工作,并于1999年获得国家一级结构注册工程师资格;2003年辞职考入浙江大学建筑工程学院攻读工学博士学位,师从金伟良教授,于2007年毕业于浙江大学结构工程专业,取得博士学位; 20079月入职东南大学土木工程学院,20094月晋升为副研究员,20214月晋升为教授。

学术兼职
  1. 江苏省土木建筑学会竹木结构专业委员会副主任委员

  2. 中国复合材料学会土木工程复合材料分会理事

  3. 中国工程建设标准化协会木材及复合材结构专业委员会委员

教学课程

1、本科生:工程结构设计原理(48学时)

2、本科生:房屋建筑学(56学时)

科研、教改项目

曾主持国家自然科学基金面上项目两项,国家“十三五”重点研发计划子课题一项,并参与多项国家及省部级项目;

主要项目经历

12020.1-2023.12 国家自然科学基金面上项目, 51978152, 新型自复位竹摇摆墙结构体系的抗震性能研究(主持)

22017.7-2020.12 国家十三五重点研发计划, 20170622001, 绿色生态木竹结构体系研究与示范应用项目课题2子课题2:一体化关键预制构件及新型木竹组合结构(主持)

32011.1-2013.12 国家自然科学基金面上项目, 51078076, 新型BFRP增强竹结构受力性能及设计理论研究(主持)

42011.1-2013.12 国家教育部博士点基金项目, 20100092120017, 新型纤维复合增强竹结构受力性能研究(主持)

52016.01-2018.12 国家自然科学基金青年项目, 51508363, 光纤自传感混杂BFRP张弦梁力学性能优化及自监测研究(主研)

62014.01.1-2017.12.31 国家自然科学基金面上项目, 51378104, “预应力混凝土结构多尺度多因素耦合的耐久性研究(主研)

72012.1.1-2016.8.31 国家重点基础研究发展计划(973计划), 2012CB026205, 重大工程结构FRP应用关键技术与集成(主研)

82012.1.1-2015.12.31 国家科技部, 2011BAJ09B02-02, 新型城市组合结构桥梁经时行为与动力性能研究(主研)

92010.1.1-2012.12.31 国家自然科学基金-青年科学基金项目, 50908045, 玄武岩纤维网格轻质抗震墙性能及加固计算方法研究(主研)

论文和专著

发表SCIEI论文数十篇,授权国家发明专利多项,参编三项竹木行业协会和国家标准。

[1] Qingfang Lv, Ye Liu*, Yi Ding. Analyses on Prestress Loss and Flexural Performance of the Laminated Bamboo Beam Applied with Prestressed BFRP Sheet. Advances in Civil Engineering. 2019;2019:2319814. (IF: 1.104, SCI, Q3, 通讯) 中科院四区 1687-8086

[2] Qingfang Lv, Yi Ding, Ye Liu*. Study of the bond behaviour between basalt fibre-reinforced polymer bar/sheet and bamboo engineering materials. Advances in Structural Engineering. 2019;22(14):3121-3133. (IF: 1.32, SCI, Q2, 通讯) 中科院四区 1369-4332

[3] Qingfang Lv, Ye Liu*. Experimental study on the mechanical behavior of BFRP-bamboo composite beam. Advanced Composites Letters. 2019;28:1-13. (IF: 0.556, SCI, Q4, 通讯) 中科院四区 0963-6935

[4] Qingfang Lv, Yi Ding, Ye Liu*. Effect of the nonprestressed/prestressed BFRP bar on flexural performance of the bamboo beam. Advances in Polymer Technology. 2019;2019:7143023. (IF: 2.663, SCI, Q2, 通讯) 中科院三区 0730-6679

[5] Qingfang Lv, Weiyang Wang, Ye Liu. Study on Thermal Insulation Performance of Cross-Laminated Bamboo Wall. Journal of Renewable Materials. 2019;7(11):1231-1250. (IF: 1.427, SCI, Q3)中科院四区 2164-6325

[6] Qingfang Lv, Yi Ding, Ye Liu*. Concept and Development of a Steel-bamboo SI (Skeleton-Infill) System: experimental and theoretical analysis. Journal of wood science. 2019;65(1):1-12. (IF: 1.523, SCI, Q2, 通讯) 中科院三区 1435-0211

[7] Qingfang Lv, Weiyang Wang, Ye Liu. Flexural performance of cross-laminated bamboo (CLB) slab and CFRP grid composite CLB slab. Advances in Civil Engineering. 2019;2019:6980782. (IF: 1.104, SCI, Q3) 中科院四区 1687-8086

[8] Qingfang Lv, Yi Ding, Ye Liu*. Experimental study on double-headed screw joints and their application in bamboo shear walls. Advances in Structural Engineering. 2020;24(5): 914-928. (IF: 1.32, SCI, Q2, 通讯) 中科院四区 1369-4332

[9] Qingfang Lv, Tongchen Han, Ye Liu*, Yi Ding, Yujie Lu. An experimental and analytical study on cross-laminated bamboo rocking walls with friction dampers. Journal of Renewable Materials. 2021;9(10): 1757-1779. (IF: 1.427, SCI, Q3, 通讯) 中科院四区 2164-6325

[10] Qingfang Lv, Yujie Lu*, Ye Liu. Vibration serviceability of suspended floor: full-scale experimental study and assessment. Structures. 2021; 34:1651-1664. (IF: 2.983, SCI, Q1) 中科院三区 2352-0124

[11] Qingfang Lv, Weiyang Wang, Ye Liu*. Charring depth and charring rate of cross-laminated bamboo slabs exposed to a one-sided standard fire. Fire Safety Journal. 2021;125: 103439. (IF: 2.295, SCI, 通讯, Q1) 中科院三区 0379-7112

[12] Yujie Lu, Qingfang Lv, Ye Liu*. Experimental and Numerical Study on Seismic Performance of CLB Rocking Wall with Bending-Friction Coupled Dampers. Journal of Building Engineering. 2021; 45: 103622. (IF: 5.318, SCI, Q1) 中科院二区 2352-7102

[13] Qingfang Lv, Tongchen Han, Ye Liu*. Models and design procedure for cross-laminated bamboo rocking walls. Structures. 2022; 38: 1031-1049. (IF: 2.983, SCI, Q1) 中科院三区2352-0124

[14] Yujie Lu, Ye Liu*, Qingfang Lv. A partially restrained energy dissipater: Parametric analysis and application in rocking wall. Journal of Constructional Steel Research. 2022; 192: 107235.

[15] Yujie Lu, Ye Liu*, Qi Ge, Qingfang Lv, Zhengqi Wang. Experimental and Numerical Studies on Hysteretic Behavior of Friction-Strip Coupled Damper. Engineering Structures. 2022; 265: 114519.

[16] Yujie Lu, Qingfang Lv, Tongfei Sun, Ye Liu*, Hongyuan Tang. Experimental and numerical studies on hysteretic behavior of a novel bending-friction coupled damper. Thin-Walled Structures. 2022.

[17] Weiyang Wang, Qingfang Lv, Yu Zhang*. Chloride diffusion and binding in slag cements blended with limestone/magnesite. Construction and Building Materials. 2026; 514: 145554.

[18] Yujie Lu, Juewen Wang, Qingfang Lv, Ye Liu*, Jun Xu, Huanlong Ding. Interaction mechanism between infill walls and prestressed self-centering frames. Engineering Structures. 2026; 349: 121860.

[19] Xinlei Lv, Qingfang Lv, Yang Qian, Yujie Lu*. Experimental and theoretical study on the eccentric compressive behavior of tie-reinforced CFNRST columns. Engineering Structures. 2025; 344: 121348.

[20] Xinlei Lv, Yujie Lu, Qingfang Lv*. Axial compressive behavior of tie-reinforced CFNRST columns. Thin-Walled Structures. 2025; 217, Part A: 113777.

[21] Chaoyu Liu, Zhantang Chen, Qingfang Lv, Minfei Liang, Yu Zhang*. Multiscale pore structure segmentation of cementitious materials using light-weight and modified VGG-Unet network. Journal of Building Engineering. 2025; 111: 113618.

[22] Weiyang Wang, Qingfang Lv, Yu Zhang*. Hydration characteristics of slag cement blended with magnesite/limestone: The influence of curing temperature. Materials Today Communications. 2025; 44: 111981.

[23] Qingfang Lv, Juewen Wang, Yujie Lu*. Prestressed wood or bamboo structures: Historical overview and state-of-the-art. BioResources. 2024; 19(4): 9964-10004.

[24] Fan Yi, Huan Lei, Qingfang Lv, Yu Zhang*. Coupling physics in artificial neural network to predict the fatigue behavior of corroded steel wire. International Journal of Fatigue. 2025; 190: 108669.

[25] Weiyang Wang, YiChao Xu, Qingfang Lv, Yu Zhang*. Influence of magnesite/limestone addition on the hydration characteristics of ternary slag cement systems. Construction and Building Materials. 2024; 449: 138249.

[26] Yujie Lu, Qingfang Lv, Ye Liu*. Hysteresis performance and damage mode of self-centering frame with masonry infill wall: Experimental study assisted with DIC technique. Engineering Structures. 2024; 318: 118797.

[27] Yujie Lu, Ye Liu, Qingfang Lv*. Experimental study on the hysteretic performance of a self-centering frame infilled with a bamboo wall. Engineering Structures. 2024; 314: 118383.

[28] Yujie Lu, Qingfang Lv, Ye Liu*, Tongfei Sun, Huiqun Yan. A friction-strip hybrid damper with multi-phase energy dissipation mechanism: Cyclic test and numerical verification. Thin-Walled Structures. 2024; 200: 111913.

[29] Jianfei Wang, Tongchen Han*, Qingfang Lv, Ye Liu, Shixing Zhao, Shuheng Yang. Rolling shear properties of cross-laminated bamboo (CLB) specimens: A comprehensive study. Construction and Building Materials. 2024; 414: 135052.

[30] Jing Shi, Yujie Lu, Ran Zhu, Ye Liu, Yu Zhang*, Qingfang Lv. Experimental evaluation of fracture toughness of basalt macro fiber reinforced high performance lightweight aggregate concrete. Construction and Building Materials. 2024; 411: 134638.

[31] Jing Shi, Yujie Lu, Ran Zhu, Ye Liu, Yu Zhang, Qingfang Lv*. Experimental evaluation of fracture toughness of bamboo fiber reinforced high performance lightweight aggregate concrete. Engineering Structures. 2023; 297: 117028.

[32] Tongchen Han, Ye Liu, Yujie Lu, Weiwei Wu, Tongfei Sun, Qingfang Lv*. Design and numerical analysis of Cross-Laminated bamboo (CLB) buildings with different rocking wall configurations. Structures. 2023; 56: 105011.

[33] Yu Zhang*, Weiyang Wang, Qingfang Lv. The influence of reactive MgO on the hydration and carbonation performance of slag-rich cement system. Journal of Building Engineering. 2023; 77: 107477.

[34] Yujie Lu, Qingfang Lv, Tongfei Sun, Ye Liu*, Hongyuan Tang. Experimental and numerical studies on hysteretic behavior of a novel bending-friction coupled damper. Thin-Walled Structures. 2023; 183: 110385.

 

[35] 吕清芳, 王维扬, 刘烨*. 正交胶合竹板单面火损后力学性能试验研究 [J]. 东南大学学报(自然科学版), 2021; 51(02):212-218.

[36] 卢宇杰, 程逸建, 程正珲,吕清芳, 刘烨*. 悬挂结构组合楼盖人致振动舒适度试验研究 [J]. 建筑结构学报, 2020;41(S2):263-269.

[37] 卢宇杰, 吕清芳, 刘烨*. 正交胶合竹墙体的保温隔热性能[J]. 世界竹藤通讯, 2021, 19(06): 31-39.

[38] 黄明, 杨航, 刘烨, 耿功伟, 吕清芳*. 交错层积竹板抗火性能数值分析[J]. 世界竹藤通讯, 2021, 19(03): 66-71.

[39] 黄明, 刘文龙, 刘烨, 丁菡, 吕清芳*. 交错层积竹板抗弯承载力计算方法[J]. 世界竹藤通讯, 2021,19(04): 39-48.

[40] 黄明, 刘烨, 丁一, 吕清芳*. 附加常规摩擦阻尼器的自复位交错层积竹摇摆墙试验研究[J]. 工业建筑, 2021, 51(10): 40-46+61.

[41] 章丛俊, 吕清芳, 曹秀丽. 竹结构关键性能试验研究[J]. 建筑结构, 2017, 47(17): 1-8.

[42] 魏洋, 张齐生, 蒋身学, 吕清芳, 吕志涛. 现代竹质工程材料的基本性能及其在建筑结构中的应用前景[J]. 建筑技术, 2011, 42(05): 390-393 .

[43] 魏洋, 蒋身学, 吕清芳, 张齐生, 王立彬, 吕志涛. 新型竹梁抗弯性能试验研究[J]. 建筑结构, 2010, 40(01): 88-91.

[44] 魏洋, 吕清芳, 张齐生, 禹永哲, 吕志涛. 现代竹结构抗震安居房的设计与施工[J]. 施工技术, 2009, 38(11): 52-54.

[45] 吕清芳, 魏洋, 张齐生, 禹永哲, 吕志涛. 新型竹质工程材料抗震房屋基本构件力学性能试验研究[J]. 建材技术与应用, 2008(11): 1-5.

[46] 吕清芳, 魏洋, 张齐生, 禹永哲, 吕志涛. 新型抗震竹质工程材料安居示范房及关键技术[J]. 特种结构, 2008(04): 6-10.



专利、软件著作权

1吕清芳, 韩同宸, 王维扬, 刘烨, 附加弹簧的摩擦阻尼器, 2021.8.24, 中国, CN111425040B

2吕清芳, 丁一, 一种适用于装配式混凝土框架-预制墙板的连接装置, 2021.2.26, 中国, CN111119346B

3吕清芳, 丁一, 适用于装配式钢框架-预制墙板的连接结构及安装方法, 2021.2.26, 中国, CN111119345B

4吕清芳, 宋志新, 熊泽龙, 丁菡, 一种SI建筑结构体系, 2019.4.30, 中国, CN201710274100.7

5吕清芳, 熊泽龙, 宋志新, 一种制备木塑预制板的方法, 2016.10.26, 中国, CN201610352564.0

6、王春林, 吕清芳, 董洁, 吴瑞尧, 吴昊, 带肋竹木约束剪切板, 2014.8.13, 中国, CN201410199559.1

7、王春林, 吴瑞尧, 李晴, 吕清芳,杜洋, 竹木填充屈曲约束支撑, 2014.8.13, 中国, CN201410199273.3


荣誉和奖励

曾获得教育部和住建部优秀设计奖、江苏省科技进步一等奖、浙江省科技进步二等奖、南京市科技进步一等奖等。