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周海俊
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Highest Degree:
Doctoral degree
Professional Title:
Professor
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Scientific Research
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Scientific Research
Vertical Project
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[1] 国家自然科学基金,(52378169),滨海环境腐蚀钢筋混凝土梁桥承载性能随机退化规律研究,In research.
[2] 深圳市高等院校稳定支持计划,(20220811152251005),滨海大跨桥梁关键构件腐蚀-疲劳损伤机制及韧性提升技术研究,In research.
[3] 国家重点研发计划“物联网与智慧城市关键技术及示范”重点专项,(2020YFB2103503),基于多源异构时空大数据的城市灾害推演与智能预警,In research.
[4] 国家自然科学基金委联合基金重点项目,(U2005216),跨海大桥拉索系统的损伤机制与全寿命安全保障,In research.
[5] 国家自然科学基金,(51778372),锈蚀高强钢丝及拉索承载性能退化的概率评估,Completed.
[6] 国家自然科学基金,(51578336),斜拉索-辅助索-索端阻尼器系统的减振机理与参数优化设计研究,Completed.
[7] 国家自然科学基金,(51378313),海洋腐蚀钢筋混凝土桥墩抗震性能退化的实验与理论研究,Completed.
[8] 国家自然科学基金,(51108269),形状记忆合金辅助索-索网结构减振的理论及试验研究,Completed.
[9] 国家重点研发计划,(2019YFB2102701),“城市地面基础设施群运行保障关键技术研究与应用示范“项目子课题:基于环境多源数据的人群密集公共基础设施安全评估方法,In research.
[10] 广东省科技厅重点研发项目子课题,(2019B111106002),跨海重大交通基础设施寿命适配、经济可靠的混凝土耐久性保障技术及措施,In research.
Horizontal Project
[1] (CCCC4.2-YJGS-D1-2021-009),沿江高速前海段与南坪快速衔接工程钢混组合梁结构分析及设计技术服务,Completed.
[2] 华润深圳湾发展有限公司,华润深圳湾地下大体积混凝土配合比研究,Completed.
[3] 同济大学土木工程防灾国家重点实验室开放基金,(SLDRCE-08-MB-03),斜拉索风雨振动的半主动控制研究,Completed.
Journal Paper
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[1] Bond performance and mechanisms of sulphoaluminate cement-based UHPC for reinforcing old concrete substrate,Construction and Building Materials,2022-12-01.
[2] An experimental study on bond behaviors of reinforced concrete under fatigue loading and corrosion,Structural concrete,2022-10-01.
[3] Effect and mechanism of composite early-strength agents on sulfoaluminate cement-based UHPC,Case Studies in Construction Materials,2022-10-01.
[4] Degradation of artificially corroded galvanized high-strength steel wires: Corrosion morphology and mechanical behavior,CONSTRUCTION AND BUILDING MATERIALS,2022-08-01.
[5] Experimental and theoretical study on the mechanical behavior of concrete confined by corroded stirrups,MATERIALS AND STRUCTURES,2022-04-01.
[6] Stochastic field model for the residual radius along the length of naturally and artificially corroded rebars,Structure and Infrastructure Engineering,2022-02-01.
[7] Structural damage analysis of CRTS II slab track with various interface models under temperature combinations,Engineering Failure Analysis,2022-04-01.
[8] Effects and mechanisms of waste gypsum influencing the mechanical properties and durability of magnesium oxychloride cement,Journal of Cleaner Production,2022-03-01.
[9] Vibration suppression of bridges under moving loads using the structure-immittance approach,International Journal of Mechanical Sciences,2021-12-01.
[10] An effective method for preparing high early-strength cement-based materials: The effects of direct electric curing on Portland cement,Journal of Building Engineering,2021-11-01.
Patent Authorization
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[1] Utility Models,拉索减振装置,ZL 202120636909.1
[2] Invent,一种基于惯容减振的桥梁可动气动措施装置及其控制方法,ZL201910785664.6
[3] Invent,一种可抑制风雨激振的桥梁拉索,ZL 201910153277.0
[4] Invent,缆索承重桥梁及其辅助索监测减振系统,ZL 201510727049.1
[5] Invent,一种应力作用下孔溶液腐蚀钢筋/钢丝的试验装置及试验方法,ZL 201310386090.8
[6] Invent,一种应力作用下孔溶液腐蚀钢筋/钢丝的试验装置及试验方法,ZL 201310386090.8
[7] Invent,一种用于斜拉桥的减振辅助索装置及斜拉桥,ZL 201110101365.X
[8] Invent,一种用于斜拉桥的减振辅助索装置及斜拉桥,ZL 201110101365.X
[9] Invent,用于桥梁拉索或吊杆的减振阻尼装置,ZL 201110378696.8
[10] Invent,用于桥梁拉索或吊杆的减振阻尼装置,ZL 201110378696.8