一、基本情况
主要研究面向智慧建造的混凝土材料与施工过程行为,重点开展材料–施工–性能一体化设计及AI驱动预测、参数化设计与材料性能协同优化研究。主持省部级及企业项目6项,参与国家重点研发计划2项,发表SCI论文20余篇。团队氛围融洽,经费充足,提供稳定科研补助,欢迎对智慧建造、数字建造及3D打印混凝土等方向感兴趣的同学加入。
二、学习及工作经历
2011.09-2015.07 青岛理工大学,土木工程学院,工学学士
2015.09-2017.07 湖南大学,土木工程学院,硕士
2017.09-2021.12 湖南大学,土木工程学院,博士
2022.03-至今 青岛理工大学,建筑与城乡规划学院,副教授
三、研究领域
(1)混凝土3D打印与材料–建造一体化设计
(2)面向智慧建造的混凝土材料性能预测与调控(AI驱动)
(3)复杂施工过程下混凝土材料行为与性能演化
四、主讲课程
本科生课程:建筑材料、建筑力学
五、主要科研项目
主持山东省自然科学基金项目:“3D打印海水混凝土流变特性与可打印性调控原理”,2023
主持教育部产学研协同育人项目:“面向应用型人才培养的混凝土3D打印技术教学改革探索”,2023
主持横向课题:“一种海水拌合大掺量粉煤灰混凝土制备方法”,2023
参与国家重点研发计划课题五:“盾构法海底隧道低碳长寿命混凝土制备与应用关键技术”,2023
主持横向课题:“一种高钙粉煤灰UHPC原材料优选方法”,2022
参与国家重点研发计划课题一:“预拌混凝土流变行为与泵送性能理论基础”,2017
六、主要学术成果
近5年主要成果:
[1] W. Shen, C. Jiang, Z. Jin, Q. Yuan, Y. Ji, R. Zeng, Y. Wu, L. Lao, C. Shi, Can concrete pumping pressure be predicted from mixture composition? Insights from machine learning on full-scale pumping experiments, Cem. Concr. Compos. 167 (2026) 106458. (SCI,中科院一区TOP)
[2] K. Liu, W. Shen*, K. Takasu, K. Zu, R. Geng, Y. Yuan, W. Gao, 3D printed geopolymer made with carbon removal modified fly ash: Rheological characterization and printing validation, J. Build. Eng. 118 (2026) 114982. (SCI,中科院二区TOP)
[3] Z. Zhang, Z. Jin, W. Shen*, C. Chen, N. Li, Y. Yu, A. Tian, Y. Yuan, Aggregate packing characteristics dependent fresh and hardened properties of steel fiber reinforced lining segment concrete, Constr. Build. Mater. 506 (2026) 144942. (SCI,中科院一区TOP)
[4] Z. Jin, C. Chen, W. Shen*, Z. Zhang, S. Li, Role of water film thickness in regulating the fresh and hardened properties of ternary cementitious system for shield segments, Constr. Build. Mater. 520 (2026) 146023. (SCI,中科院一区TOP)
[5] S. Wei, H. Zhou, J. Wang, J. Sun, D. Zhong, Z. Liu, Y. Hu, W. Shen*, Effect of superfine river sand on the rheological and mechanical properties of supersulfated cement, J. Indian Chem. Soc. (2025) 101581. (SCI)
[6] W. Shen, Z. Jin, Q. Yuan, Y. Ji, R. Zeng, Y. Wu, L. Lao, C. Shi, Comparative study on the performance of fresh concrete comprising manufactured sand vs. river sand during full-scale long-distance pumping, Constr. Build. Mater. 452 (2024) 138953. (SCI,中科院一区TOP)
[7] W. Shen, H. Cui, D. Jiao, Experimental observations on factors influencing shear-thickening characteristics of cement-based materials, J. Build. Eng. 86 (2024) 108620. (SCI,中科院二区TOP)
[8] M. Zhang, W.Shen*,et al. Understanding the time-dependent rheological behavior of seawater mixed cement paste with fly ash, Constr. Build. Mater. (2024). (SCI,中科院一区TOP)
[9] 申文凯,元强,纪友红,等.剪切速率和温度对低水胶比水泥浆流变性能的影响[J].硅酸盐通报,2023,42(01):48-56+65.
[10] 申文凯, 元强,纪友红,等.搅拌程序对高性能混凝土泵送性能的影响[J].硅酸盐通报,2023,42(03):878-887.
[11] W. Shen, C. Shi, K. Khayat, Q. Yuan, Y. Ji, R. Zeng, Change in fresh properties of high-strength concrete due to pumping, Constr. Build. Mater. 300 (2021) 1–32. (SCI,中科院一区TOP)
[12] W. Shen, Q. Yuan, C. Shi, Y. Ji, R. Zeng, W. Li, Y. Wu, L. Lao, Z. Chen, F. Li, How do discharge rate and pipeline length influence the rheological properties of self-consolidating concrete after pumping??, Cem. Concr. Compos. 124 (2021) 104231. (SCI,中科院一区TOP)
[13] W. Shen, Q. Yuan, C. Shi, Y. Ji, R. Zeng, Z. Chen, Influence of pumping on early hydration of binders and its relation to the rheology of high-strength concrete, Constr. Build. Mater. 302 (2021) 124095. (SCI,中科院一区TOP)