近年来,图学系教师在完成繁重的教学任务的同时,积极进行科学研究,近5年各类科研项目到款200余万元。主要的研究方向集中在:耦合优化设计、纤维混凝土材料多因素作用下静动态力学性能、结构的防灾减灾、振动控制、健康检测、混凝土高坝抗震、结构强度理论和结构冲击爆炸、计算机视觉,图形图像处理、驾驶行为分析、汽车主客观评价、交通安全、隧道负离子除尘等方向。
主要科研项目有:
|
起止年月 |
项目名称 |
类别 |
来源 |
到款(万元) |
1 |
2019.08/2022.07 |
高混凝土坝的在地震作用下的水利劈裂研究 |
应用研究 |
厅局级 |
40 |
2 |
2021.04/2021.09 |
盖梁内配筋分布情况的无损检测方法研究 |
基础研究 |
其他 |
43 |
3 |
2021.05-2023.04 |
无人驾驶车辆交叉路口左转向决策问题研究 |
应用研究 |
校级 |
5 |
4 |
2021.06/2023.05 |
砖石古塔抗震性能分析及保护方法研究 |
基础研究 |
省部级 |
3 |
5 |
2021.06-2023.05 |
安塞油田延长组长9岩心特殊实验 |
应用研究 |
其他 |
19.8 |
6 |
2022.03-2023.02 |
岩石样品分析化验技术服务 |
应用研究 |
其他 |
5.8 |
7 |
2022.08-2023.07 |
地灾风险调查解译 |
应用研究 |
其他 |
30.5 |
8 |
2023.05/2024.11 |
客车典型内饰碳化材料热降解产物数值模拟研究 |
应用研究 |
其他 |
15.5 |
9 |
2023.05/2025.04 |
客车典型内饰碳化材料热降解产物数值模拟研究 |
应用研究 |
校级 |
5 |
10 |
2023.06-2024.05 |
钻孔煤样瓦斯成分及含量分析 |
应用研究 |
其他 |
6.8 |
11 |
2023.07/2024.06 |
电液上位锁耐久性试验系统 |
应用研究 |
其他 |
8.1 |
12 |
2023.07-2024.06 |
地质风险调查评价 |
应用研究 |
其他 |
7.4 |
13 |
2023.08-2024.07 |
配电柜系列产品设计及三维造型 |
应用研究 |
其他 |
7.5 |
14 |
2023.08-2024.07 |
恒口采砂地质勘查 |
应用研究 |
其他 |
3.5 |
15 |
2023.09-2025.08 |
移动式隧道负离子装置开发及机理研究 |
应用研究 |
其他 |
6 |
主要的论文有:
[1] Research on fractal characteristics and energy dissipation of basalt fiber reinforced concrete after exposure to elevated temperatures under impact loading[J]. Wenbiao Liang, Junhai Zhao, Yan Li, Yue Zhai. Materials, 2020, 13, 1902. (SCI,二区)
[2] Research on dynamic mechanical properties and constitutive model of basalt fiber reinforced concrete after exposure to elevated temperatures under impact loading[J]. Wenbiao Liang, Junhai Zhao, Yan Li, Yue Zhai, Zhou Wang, Yubing Yang. Applied Sciences, 2020, 10, 7684. (SCI,三区)
[3] Dynamic mechanical properties and visco-elastic damage constitutive model of freeze-thawed concrete [J]. Yan Li, Yue Zhai, Wenbiao Liang, Yubai Li, Qi Dong, Fandong Meng. Materials, 2020, 13, 4056. (SCI,二区)
[4] Study on Model of Penetration into Thick Metallic Targets with Finite Planar Sizes by Long Rods[J]. Juan Wang, Junhai Zhao, Jianhua Zhang, Yuan Zhou. Shock and Vibration, 2021(9): 1-9.(SCI,四区)
[5]Boundary Effect and Dynamic Response Study for the Penetration of Rigid Projectiles into Thick, Finite-Radius, Metallic Targets[J]. Juan Wang, Junhai Zhao, Yuan Zhou, Shanshan Sun. Shock and Vibration, 2020(9): 1-16.(SCI,四区)
[6] Structural Protection of Ancient Masonry Pagodas Based on Modified Epoxy Resin Infiltration[J].Journal of New Materials for Electrochemical Systems,2020,23(1):13-19.ZHOU Yuan, ZHANG Fei ,WANG Sheliang.https://doi.org/10.14447./jnmes.v23i1.a03.(SCI)
[10] Modeling Analysis of the Upper Limit Water Level Mechanism in the Upstream Reservoir of a Dam Embankment[J]. Xu Shiqiang.ADVANCES IN CIVIL ENGINEERING.2020-11-29(SCI)
[11] Self-adaptive Hierarchical Threshold Denoising Based on Parametric Construction of Fixed-length Tight-supported Biorthogonal Wavelet,Jian-Hua Zhang,Traitement du Signal Vol. 36, No. 2, April, 2019, pp. 177-184 (SCI)
[12] A Wavelet-Based Self-adaptive Hierarchical Thresholding Algorithm and Its Application in Image Denoising,Jian-Hua Zhang, Traitement du Signal, Vol. 36, No. 6, December, 2019, pp. 539-547 (SCI)
[13] 参数反演法在聚丙烯蜂窝板多层热解数值模拟中的应用, 安全与环境学报,2024
[14] Kinetic modeling of thermal degradation of TDI/MDI-based flexible polyurethane foam under nitrogen and air atmospheres with Shuffled Complex Evolution algorithm: Insights from TG-FTIR analysis, Journal of Analytical and Applied Pyrolysis,2024 (SCI)\
[15] Multi-Scale Edge Detection of Crack in Extra-High Arch Dam Based on Orthogonal Wavelet Construction, Traitement du Signal,2022 (SCI)
[16] Analysis on Hydraulic Fracturing of Concrete in Super-High Arch Dam Based on the Thermodynamic Principle of Minimum Energy Consumption Rate, International Journal of Heat and Technology,2022(EI)
[17] 高速长杆弹对有限直径金属厚靶的侵彻分析,工程力学,2022(EI)
[18] 刚性弹侵彻有限直径金属厚靶的机理与模型研究,工程力学,2021(EI)
[19] Study on Model of Penetration into Thick Metallic Targets with Finite Planar Sizes by Long Rods, Shock and Vibration,2021(SCI)
主要专利有:
[1]一种基于多弧度导轨的多级减震平台, 2019-2-19,发明专利,ZL 2017 1 0710581.1。
[2]一种组合型抗震支撑结构 ,2020-12-29,发明专利,ZL201910678015.6。
[3]一种测阻拉力机及其测试方法, 2019.07,发明专利,ZL 2018 02 38757.2
[4] 一种水利劈裂实验装置,2023.12,发明专利,ZL 2022 1 0099156.4