Образец цитирования:
А. П. Боронин, В. Н. Капинос, С. А. Кренев, В. Н. Минеев, “О физическом механизме генерации электромагнитного поля при взрыве зарядов конденсированного ВВ. Обзор литературы”, Физика горения и взрыва, 26:5 (1990), 110–116; Combustion, Explosion and Shock Waves, 26:5 (1990), 597–602
Yuanbo Cui, Jian Jiang, “Analysis on Anti-Interference Performance of Sensor in Explosive Electromagnetic Environment”, IEEE Sensors J., 24:3 (2024), 2895
Pengzhao Xu, Ning Zhao, Yukun Chang, Shaokang Cui, Guangsong Ma, Kunlin Shi, Bao Zhang, “The experimental and theoretical study on the spatial‐temporal distribution of electromagnetic radiation from JO‐8 explosions.”, Propellants Explo Pyrotec, 49:3 (2024)
Danping Yu, Xuegong Huang, Pengzhao Xu, “Research on explosive electromagnetic field interference analysis based on field-circuit cooperated modeling and simulation”, J Comput Electron, 2024
Yuanbo Cui, Jian Jiang, Deren Kong, “Characteristics and variation laws of electromagnetic radiation generated during explosion”, Propellants Explo Pyrotec, 49:1 (2024)
Zhuxin Chu, Yundan Gan, Lei Xiao, Jianfei Yuan, Yulei Zhang, Wenjun Jiao, Haozhe Liang, Qindong Lin, Lecture Notes in Mechanical Engineering, Proceedings of the 2nd International Conference on Mechanical System Dynamics, 2024, 4483
Yuanbo Cui, Hang Zhou, Naijing Hu, Guanglin Zhang, Third International Seminar on Artificial Intelligence, Networking, and Information Technology (AINIT 2022), 2023, 16
Yuanbo Cui, Deren Kong, Jian Jiang, “Measurement method for electromagnetic radiation generated during a high-capacity warhead explosion”, Meas. Sci. Technol., 34:9 (2023), 095015
Yuanbo Cui, Deren Kong, Jian Jiang, Shang Gao, “Research on Electromagnetic Radiation Characteristics of Energetic Materials”, Magnetochemistry, 8:5 (2022), 57
Yuanbo Cui, Deren Kong, Jian Jiang, Shang Gao, “Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material”, Sensors, 22:7 (2022), 2765
L. F. Chernogor, “Physical Effects in the Atmosphere and Geospace due to Ground-Based Events as Exemplified by the Explosion in the City of Beirut on August 4, 2020. Theoretical Modeling Results”, Kinemat. Phys. Celest. Bodies, 37:3 (2021), 121
L. F. Chernogor, “Examplified by the explosion at the city of Beirut on August 4, 2020: Theoretical modeling results”, Kinemat. fiz. nebesnyh tel (Online), 37:3 (2021), 24
Chuang Chen, Renkui Gao, Kai Guo, Liping He, Mengzhou Chang, Yafei Han, Enling Tang, “Thermoelectric behavior of Al/PTFE reactive materials induced by temperature gradient”, International Communications in Heat and Mass Transfer, 123 (2021), 105203
Yuanbo Cui, Jian Jiang, Deren Kong, Shang Gao, Shuai Wang, “Study on Electromagnetic Radiation Interference Caused by Rocket Fuel”, Sensors, 21:23 (2021), 8123
Cui Yuanbo, Kong Deren, “Analysis of electromagnetic radiation spectrum during the explosion of energetic materials”, IOP Conf. Ser.: Earth Environ. Sci., 585:1 (2020), 012026
Huilan Ren, Zhuxin Chu, Jianqiao Li, “Study on Electromagnetic Radiation Generated During Detonation”, Propellants Explo Pyrotec, 44:12 (2019), 1541
JianQiao Li, Li Hao, Jian Li, “Theoretical modeling and numerical simulations of plasmas generated by shock waves”, Sci. China Technol. Sci., 62:12 (2019), 2204
Zakary Wilde, John Gibson, Teagan Nakamoto, Dalton Smith, Douglas Tasker, Christopher Trujillo, AIP Conference Proceedings, 1979, 2018, 160031
L. F. Chernogor, K. P. Garmash, “Magnetospheric and Ionospheric Effects Accompanying the Strongest Technogenic Catastrophe”, Geomagn. Aeron., 58:5 (2018), 673
Clare Kimblin, Rusty Trainham, Gene A. Capelle, Xianglei Mao, Richard E. Russo, “Characterization of laser-induced plasmas as a complement to high-explosive large-scale detonations”, AIP Advances, 7:9 (2017)