姓名:张继承
生日:1976年1月
职称:教授
♦基本情况:
现任建筑与材料工程学院院长。湖北省土木建筑学会江汉石油土建分会秘书长、湖北省土木建筑学会理事、湖北省招投标评标专家。主要从事钢-混凝土组合结构理论与设计、智能材料与结构、结构检测技术与加固、钢结构理论与设计、结构力学性能分析与数值模拟、结构健康监测等方面的研究。
♦主要研究方向:(1)钢-混凝土组合结构;(2)结构健康监测;(3)土木工程材料
♦开设课程:
(1)本科生课程:混凝土结构基本原理、混凝土与砌体结构设计、钢结构基本原理、钢结构设计
(2)研究生课程:高等钢结构理论、地震工程学
♦科研项目:
[1]国家自然科学基金,基于应力监测的异形钢管混凝土柱框架-RC核心筒混合结构抗震性能及失效机理研究,项目负责人,2018.01-2021.12
[2]国家自然科学基金,冷弯型钢结构疲劳性能及设计理论和方法研究,单位项目负责人,2020.01-2023.12
[3]湖北省教育厅科学技术研究项目,大宽厚比高强冷弯型钢钢管混凝土柱力学性能研究,项目负责人,2015.01-2017.12
[4]国家土建结构预制装配化工程技术中心开放课题,异形钢管混凝土柱结构装配式框架节点开发及承载性能研究,项目负责人,2021.01-2022.12
[5]国家自然科学基金,震损型钢混凝土组合结构损伤量化评判及抗震加固及受力性能研究,参与人,2015.01-2018.12
[6]国家自然科学基金,基于压电智能骨料的钢管混凝土结构时变应力监测方法与地震灾变机理研究,参与人,2014.01-2017.12
[7]国家自然科学基金,震后钢管混凝土框架结构抗震性能评价及加固技术研究,参与人,2012.01-2015.12
[8]国家自然科学基金,异形截面钢管混凝土柱— 钢梁节点力学性能与设计方法研究,参与人,2010.01-2013.12
♦专著:
[1] 许成祥,张皓,张继承. 副主编,混凝土结构基本原理,机械工业出版社,副主编,2012.08
♦论文:
[1] Zhang J, Huang Y, Zheng Y. A feasibility study on timber damage detection using piezoceramic-transducer-enabled active sensing[J]. Sensors, 2018, 18(5): 1563. (中科院三区)
[2] Zhang J, Li Y, Huang Y, et al. A feasibility study on timber moisture monitoring using piezoceramic transducer-enabled active sensing[J]. Sensors, 2018, 18(9): 3100. (中科院三区)
[3] Zhang J, Huang Y, Chen Y, et al. Numerical and experimental study on seismic behavior of concrete-filled T-section steel tubular columns and steel beam planar frames[J]. Journal of Central South University, 2018, 25(7): 1774-1785. (中科院三区)
[4] Zhang J, Li Y, Zheng Y, et al. Seismic damage investigation of spatial frames with steel beams connected to L-shaped concrete-filled steel tubular (CFST) columns[J]. Applied Sciences, 2018, 8(10): 1713. (中科院四区)
[5] Zhang J, Zhang C, Xiao J, et al. A pzt-based electromechanical impedance method for monitoring the soil freeze–thaw process[J]. Sensors, 2019, 19(5): 1107. (中科院三区)
[6] Liu X, Zhang J*, Li Y, et al. Experimental Investigation on Web Crippling Property of High‐Strength Cold‐Formed (HSCF) Rectangular Steel Tube[J]. Advances in Civil Engineering, 2020, 2020(1): 8895808. (中科院四区)
[7] Yuan C, Zhang J, Chen L, et al. Timber moisture detection using wavelet packet decomposition and convolutional neural network[J]. Smart Materials and Structures, 2021, 30(3): 035022. (中科院三区)
[8] Liu X, Zhang J*, Lu H, et al. Behavior of the T‐Shaped Concrete‐Filled Steel Tubular Columns after Elevated Temperature[J]. Advances in Civil Engineering, 2021, 2021(1): 6638736. (中科院四区)
[9] Zhang J C, Liu X Y, Zeng L, et al. Seismic behavior of cross-shaped concrete-filled steel tubular columns[J]. Steel and Composite Structures, 2021, 40(3): 405-420. (中科院三区)
[10] Zhai Q, Zhang J*, Xiao J, et al. Feasibility of piezoceramic transducer-enabled active sensing for the monitoring cross-shaped concrete filled steel tubular (CCFST) columns under cyclic loading[J]. Measurement, 2021, 182: 109646. (中科院二区)
[11] Mao Z, Zhang J*, Luo Z, et al. Behavior evaluation of hybrid fibre-reinforced reactive powder concrete after elevated temperatures[J]. Construction and Building Materials, 2021, 306: 124917. (中科院一区)
[12] Zhai Q, Zhang J*, Du G, et al. A PZT-based electromechanical impedance method for monitoring the moisture content of wood[J]. Sensor Review, 2022, 42(1): 102-114. (中科院四区)
[13] Li S, Zhang J*, Du G, et al. Properties of concrete with waste glass after exposure to elevated temperatures[J]. Journal of Building Engineering, 2022, 57: 104822. (中科院二区)
[14] Mao Z, Zhang J*, Ma Q, et al. Performance evaluation of fiber-reinforced reactive powder concrete exposed to high temperature combining nondestructive test[J]. Journal of Building Engineering, 2022, 61: 105266. (中科院二区)
[15] Wu D, Mao Z, Zhang J*, et al. Performance evaluation of concrete with waste glass after elevated temperatures[J]. Construction and Building Materials, 2023, 368: 130486. (中科院一区))
[16] Peng L, Zhang J*, Lu S, et al. One-dimensional residual convolutional neural network and percussion-based method for pipeline leakage and water deposit detection[J]. Process Safety and Environmental Protection, 2023, 177: 1142-1153. (中科院二区)
[17] Ma Q, Mao Z, Zhang J*, et al. Behavior evaluation of concrete made with waste rubber and waste glass after elevated temperatures[J]. Journal of Building Engineering, 2023, 78: 107639. (中科院二区)
[18] Peng L, Huang W, Du G, Zhang J*, et al. Automatic pipeline fault detection using one-dimensional convolutional bidirectional long short-term memory networks with wide first-layer kernels[J]. Structural Health Monitoring, 2024: 14759217241227995. (中科院二区)
[19] Zheng Z, Zhang J*, Miao Y, et al. Performance of T-shaped CFST columns with embedded T-shaped steel skeleton under axial compression[J]. Journal of Constructional Steel Research, 2024, 215: 108554. (中科院二区)
[20] Wang Y, Zhang J*, Du G, et al. Synergistic effects of polypropylene fiber and basalt fiber on the mechanical properties of concrete incorporating fly ash ceramsite after freeze-thaw cycles[J]. Journal of Building Engineering, 2024, 91: 109593. (中科院二区)
[21] Peng L, Zhang J*, Li Y, et al. A novel percussion-based approach for pipeline leakage detection with improved MobileNetV2[J]. Engineering Applications of Artificial Intelligence, 2024, 133: 108537. (中科院二区)
[22] Lei M, Zhang W, Zhang J, et al. Modeling of Safe Evacuation Conditions at the Construction Site for Building Type “I”[J]. Buildings, 2023, 13(8): 2121. (中科院三区)
[23] Ma Q, Mao Z, Lei M, Zhang J, et al. Experimental investigation of concrete prepared with waste rubber and waste glass[J]. Ceramics International, 2023, 49(11): 16951-16970. (中科院二区)
[24] Lei M, Li Y L, Li Y Q, Zhang J C, et al. Behavior of concrete-filled T-shaped steel tubular beam-columns under biaxial compressive loads[J]. Engineering Structures, 2023, 277: 115409. (中科院一区))
[25] Guo S, Shen T, Li L, Hu H, Zhang J, et al. Intelligent Timber Damage Monitoring Using PZT-Enabled Active Sensing and Intrinsic Multiscale Entropy Analysis[J]. Applied Sciences, 2022, 12(18): 9370. (中科院四区)
[26] Liu X, Zhang J, Lu H, et al. Behavior of the T‐Shaped Concrete‐Filled Steel Tubular Columns after Elevated Temperature[J]. Advances in Civil Engineering, 2021, 2021(1): 6638736. (中科院四区)
[27] Liu Y, Zeng L, Xiang S, Mo J, Zhang J, et al. Compressive performance evaluation of concrete confined by stirrups at elevated temperature using DIC technology[J]. Construction and Building Materials, 2020, 260: 119883. (中科院一区)
[28] Xiao Y, Bie X M, Song X, Zhang J C, et al. Performance of composite L-shaped CFST columns with inner I-shaped steel under axial compression[J]. Journal of Constructional Steel Research, 2020, 170: 106138. (中科院二区)
[29] Xiang S, Zeng L, Liu Y, Zhang J, et al. Experimental study on the dynamic behavior of T-shaped steel reinforced concrete columns under impact loading[J]. Engineering Structures, 2020, 208: 110307. (中科院一区))
[30] Du G, Zhang J, Li Y, Zhang J, et al. Experimental study on hysteretic model for L-shaped concrete-filled steel tubular column subjected to cyclic loading[J]. Thin-Walled Structures, 2019, 144: 106278. (中科院二区)
[31] Xiao Y, Zeng L, Chen Y, Du G, Zhang J, et al. Seismic fragility analysis of concrete encased frame‐reinforced concrete core tube hybrid structure based on quasi‐static cyclic test[J]. The Structural Design of Tall and Special Buildings, 2019, 28(15): e1665. (中科院三区)
[32] Xiang S, Zeng L, Zhang J, et al. A DIC-based study on compressive responses of concrete after exposure to elevated temperatures[J]. Materials, 2019, 12(13): 2044. (中科院三区)
[33] Du G, Zhang J, Zhang J, et al. Experimental study on stress monitoring of sand-filled steel tube during impact using piezoceramic smart aggregates[J]. Sensors, 2017, 17(8): 1930. (中科院三区)
[36] 李勇,张继承*,黄泳水,等.T形钢管混凝土柱-钢梁平面框架抗震性能非线性有限元分析[J].混凝土,2018,(09):70-75. (北大核心)
[37] 黄泳水,张继承*,饶玉龙,等.高强冷弯矩形截面钢管混凝土柱偏压性能试验[J].华侨大学学报(自然科学版),2019,40(02):179-185. (科技核心)
[38] 饶玉龙,张继承*,李勇,等.高强冷弯矩形钢管混凝土短柱轴压承载力试验[J].华侨大学学报(自然科学版),2019,40(03):338-343. (科技核心)
[39] 张继承,李勇,周灵姣,等.高强冷弯矩形钢管混凝土柱抗震性能试验[J].广西大学学报(自然科学版),2019,44(04):931-943. (北大核心)
[40] 张继承,李勇,黄泳水,等.高强冷弯矩形钢管混凝土柱抗震性能非线性有限元分析[J].混凝土,2019,(10):43-47+51. (北大核心)
[41] 鄢凡,张继承*,饶玉龙,等.异形钢管混凝土压弯构件承载力相关方程[J].长江大学学报(自然科学版),2020,17(01):108-114.
[42] 肖家浩,张继承*,黄泳水,等.高强冷弯钢管混凝土轴压短柱力学性能非线性有限元分析[J].三峡大学学报(自然科学版),2020,42(05):75-81. (科技核心)
[43] 刘孝禹,饶玉龙,张继承*,等.基于压电传感器的木材轴压损伤监测[J].压电与声光,2020,42(05):681-685. (北大核心、CSCD)
[44] 刘孝禹,蔡高洁,张继承*.GFRP管约束碳纤维混凝土组合柱损伤监测[J].压电与声光,2021,43(03):395-398.(北大核心、CSCD)
[45] Hokly S ,张继承*,刘翔龙, et al.压电波动法监测土壤含水率的可行性研究[J].压电与声光,2021,43(03):391-394.(北大核心、CSCD)
[46] 杨浩,张继承*,杜国锋,等.十字形钢管混凝土中长柱轴压性能试验研究[J].建筑钢结构进展,2021,23(07):49-57. (北大核心)
[47] 毛振豪,张继承*,李元齐,等.活性粉末混凝土高温后性能劣化及微观结构[J].建筑材料学报,2022,25(12):1225-1232.(EI、北大核心)
[48] 段燕妮,苗远,张继承*,等.基于压电效应的纤维高性能混凝土损伤监测研究[J].硅酸盐通报,2022,41(10):3458-3464. (EI、北大核心)
[49] 毛振豪,马乾坤,张继承*,等.活性粉末混凝土高温后强度退化规律试验研究[J].硅酸盐通报,2022,41(12):4245-4253.(EI、北大核心)
[50] 苗远,段燕妮,张继承*,等.内置T形钢骨-T形钢管混凝土短柱轴压性能试验研究[J].建筑钢结构进展,2023,25(12):1-10. (北大核心)
[51]罗卓卓,张继承*,杜国锋,等.木柱抗横向冲击性能研究[J].森林工程,2023,39(06):208-216.
[52] 江子航,翟荃,张继承*,等.基于压电传感器的纤维陶粒混凝土冻融损伤检测[J].科学技术与工程,2024,24(02):576-583.
[53] 张继承,卢盛庆,杨浩,等.L形钢管混凝土柱-钢梁节点的抗震性能试验研究及有限元分析[J/OL].长江大学学报(自然科学版),1-12[2024-06-19].
[54] 何羽茜,杜国锋,曹煊,张继承.多因素影响下超高性能混凝土抗压强度计算[J].混凝土,2024,(03):165-170.
[55] 杜国锋,曹煊,谢向东,张继承.高强钢管超高性能混凝土界面黏结滑移性能试验[J].河南省理工大学学报(自然科学版),2024,43(01):180-188.
[56] 张秭文,袁洪强,张继承,等.基于抗震性能的方钢管混凝土柱端加劲肋构造比较与计算[J].土木工程与管理学报,2023,40(05):140-149.
[57] 雷鸣,尹思阳,王德玲,张继承.基于静力推覆分析算法的高层建筑混凝土核心筒抗震性能模拟[J].吉林大学学报(工学版),2023,53(09):2573-2580.
[58] 雷鸣,杨民,高复阳,王丹丹,张继承.基于Pyrosim和Pathfinder的高校实验楼火灾疏散安全性分析与优化[J].安全与环境工程,2023,30(03):36-44.
[59] 何嘉威,张虎,张继承,等.内置型钢方形不锈钢管超高性能混凝土柱偏压性能[J].建筑钢结构进展,2023,25(11):1-11.
[60] 李文盛,张继承,何磊,等.高空超限型钢混凝土梁本体悬挂平台支模技术研究[J].结构工程师,2022,38(04):169-175.
[61] 雷震,李召,从地文,张继承,等.轴向冲击荷载下T形截面钢管混凝土柱受力性能研究[J].建筑结构学报,2017,38(S1):233-240.
[62] 张继承,周灵姣,吕行,等.T形钢管混凝土柱-钢梁平面框架抗震性能研究[J].建筑结构学报,2017,38(03):76-83.
[63] 张继承,申兴月,王静峰,等.方钢管再生混凝土短柱的轴压力学性能试验[J].广西大学学报(自然科学版),2016,41(04):1008-1015.
[64] 张继承,吕行,范启峰,等.方钢管再生混凝土柱抗震性能试验研究[J].混凝土,2016,(07):61-68.
[65] 倪铁权,许成祥,赵斌,张继承.碳纤维布及钢板复合加固震损方钢管混凝土框架抗震性能试验研究[J].武汉大学学报(工学版),2016,49(01):70-76.
[66] 张继承,吕行,吴胜,等.L形钢管混凝土柱-钢梁框架受力性能有限元分析[J].建筑结构学报,2015,36(S1):27-33.
[67] 许成祥,杨炳,赵斌,张继承,等.外包钢加固震损钢管混凝土柱的抗震性能试验[J].广西大学学报(自然科学版),2015,40(04):821-830.
♦专利:
[1]张继承,李宽义,谭鑫. 电解锰渣资源化利用生产混凝土助剂方法. 2022-12-20, 中国 ZL202111051095.6
[2]郝勇,陈誉,杜国锋,曾磊,谢向东,张继承,吴林松,阳霞,路世伟,黄德文,何康. 基于变形吸能原理的多灾种联合防护功能钢管混凝土结构. 2024-05-31,中国 ZL201811014919.0
[3]杜国锋,李召,聂国平,别雪梦,刘显成,张继承,刘向东,管文强. 落锤冲击加载系统. 2016-07-20,中国 ZL201610135553.7
♦获奖:
[1]许成祥,杜国锋,曾磊,王洪涛,李霆,何昌杰,陈誉,张继承,周鹏华,黄银燊,陈娟,蒋俊志,王江波,廖飞,宋鑫. 高层建筑非常规钢-混凝土组合结构关键技术与应用,湖北省科技进步二等奖,2014.12
[2]许成祥,杜国锋,贾善坡,李凌峰,余华平,肖金品,郑明高,刘显成,张继承,张东山. 油气储运装备健康检测、评价与防灾关键技术,湖北省科技进步二等奖,2015.12
[3]张继承,岳前升,任重,路世伟,王齐,刘罡,胡友林,翟正超,曾卫波. 新型钻井液及其性能评价关键技术与装备,湖北省科技进步三等奖,2019.12
[4]许成祥,杨曌,许奇琦,辜家军,李成玉,张继承,朱红兵,吴东平,肖良丽,彭胜,万胜武,刘晓强,许凯. 钢-混凝土组合结构地震损伤评估及性能提升关键技术,湖北省科技进步三等奖,2023.12