
史庆藩
教授,博士生导师
北京市优秀教师,北京市教学名师
邮箱:qfshi123@bit.edu.cn
1994.4-1998.9期间就读于日本国立冈山大学磁性物理专业,获理学博士学位
1986.8-1989.1期间就读于电子科技大学电磁场与微波技术专业,获工学硕士学位
2023至今,担任深圳北理莫斯科大学教授
2009-2023期间,担任北京理工大学物理学院学术委员会委员
2009-2020期间,担任北京理工大学院长助理/物理实验中心主任
2018-2022期间,担任北京交通大学物理国家级实验教学示范中心教学指导委员会主任委员
获奖与荣誉
[1] 北京市优秀教师
[2] 北京市教学名师
[3] 北京市高等学校教育教学成果奖二等奖(1/5)
[4] T-more创新指导优秀教师
[5] 北京市大学生物理实验竞赛优秀指导教师(2009-2022)
[6] 校优硕论文指导教师(8次)
[7] 指导本科生在全国/北京市级竞赛获奖80余项
[8] 《英汉大学物理实验》获第三届兵工高校优秀教材二等奖(主编)
教学成果
[1] 主编教材:《英汉大学物理实验》、《英汉近代物理实验》、《Physics Laboratory Experiments for Scientists and Engineers》、《新编大学物理实验教程》
[2] “大学物理实验”课程获北京市精品课程称号(责任教授, 2009)
[3] 研发创新实验教学项目10余项
[4] 指导本科生第一作者国内外发表论文60篇(含全国大创年会十佳优秀论文及中国物理学会年度优秀论文)
[5] 指导国家/北京市级大学生创新实验计划项目20余项
学术研究
科研方向为软凝聚态物理(颗粒物理),主持国家自然科学基金3项,国内外发表科研论文70余篇. 教研方向为大学生创新思维与创新实践能力培养方法,国内外发表教研论文60余篇.
科学研究论文 (2020~2026)
1. First Full-Scale 2D Field Experiment on Semi-Embedded Rubber Column Metamaterials: Enhanced Attenuation of Love Waves and Mechanistic Insights, Xinchao Zhang, Ning Zheng, Changyin Ji, Yulin Lu and Qingfan Shi, Materials 18, 5517 (2025)
2. First Full-Scale Field Experiments: Topologically Amplified Seismic Surface Waves via Interface States in a 1D Metamaterial, Xin-Chao Zhan, Ning Zhen, Chang-Yin Ji, Yu-Lin Lu, and Qing-Fan Shi, Chinese Physics Letters 42, 120603 (2025).
3. Field Experiments on a Square-Hole-Type Metamaterial: Exploring the Attenuation of Rayleigh and Love Waves, Xinchao Zhang, Wei Liu and Qingfan Shi, Symmetry 17, 339 (2025).
4. Attenuation of seismic waves using resonant metasurfaces: A field study on an array of rubber oscillators, Xinchao Zhang, Ning Zheng, Changyin Ji, Yulin Lu, Qingfan Shi, Materials Today Communications 41 (2024) 110659.
5. Thermodynamic non-equilibrium effects in bubble coalescence: A discrete Boltzmann study, Guanglan Sun, Yanbiao Gan, Aiguo Xu, Yudong Zhang and Qingfan Shi, Physical Review E 106, 035101 (2022)
6. Clogging of granular materials in a horizontal hopper, Quan-Chun Yu, Ning Zheng, and Qing-Fan Shi, Physical Review E 103, 052902 (2021).
7. Integration of size separation and transport of granular particles by a posts array on a conveyor belt, Li-Xuan Wu, Hong-Wei Zhu, Ning Zheng, Qing-Fan Shi, Powder Technology 391, 157 (2021).
8. Discharge flow of granular particles through an orifice on a horizontal hopper, Xin Wang, Hong-Wei Zhu, Qing-Fan Shi, and Ning Zheng, Chin. Phys. B 29, 04450 (2020).
9. Frictional effect of bottom wall on granular flow through an aperture on a conveyor belt, Hong-Wei Zhu, Qing-Fan Shi, Liang-Sheng Li, Mingcheng Yang, Aiguo Xu, Ning Zheng, Powder Technology 367, 421 (2020).
10. Influence of physical factors on granular flow (in Chinese), Ning Zheng, Hongwei Zhu, Decai Huang, Qingfan Shi, Chinese science: physics, mechanics and astronomy 50, 123456 (2020).
教学研究论文 (2020~2025)
1. Experimental study on broaband noise suppression characteristics of composite oscillator array phononic crystals,
ZHU Hongwei, LIN Hengze, CAO Haijiang, ZHANG Xinchao, SHI Qingfan, Physics and Engineering 35, 264 (2025).
2. Chrono-Diversity in Educational Onset: Lessons from Nobel Physics Laureates’ University Entrance Ages for Inclusive STEM Education, Hongwei Zhu, Wei Liu, Qingfan Shi, Journal of Contemporary Educational Research 9 , 359, (2025)
3. The acoustic Galton board, Xinchao Zhang, Ning Zheng, Fenze Guo, Hengze Lin and Qingfan Shi, Eur. J. Phys. 45 (2024) 065503.
4. A Comprehensive Experimental Device Based on PELTIER Effect for the Study of Thermal Processes (in Chinese), Ruipeng Luo, Mengjin Qu, Jiali Chen, Wei Liu, Qingfan Shi, Physics and Engineering 32, 117 (2022)
5. An Accurate Positioning System Based On Ultrosonic Wave (in Chinese),
Senkang Hu, Zheng Xu, Wei Liu, Qingfan Shi, Physics and Engineering 31, 120 (2021)
6. A Simple Method to Measure the Local Geomagnetic Field Accurately in a First-Year Physics Laboratory, Si Wang, Shiqi Huang, Chenchen Liu, Ziqian Tang, Qingfan Shi, Jurgen Schulte, Physics Teacher 59, 44 (2021).