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Article

Analysis of the Overpressure Fields in a Shock Tube with Multi-Point Initiation

1
School of Mechanical Engineering and Mechanics, Xiangtan University, Xiangtan 411105, China
2
Defense Engineering Institute, Academy of Military Sciences, People’s Liberation Army of China, Luoyang 471023, China
3
College of Civil Engineering, Xiangtan University, Xiangtan 411105, China
*
Author to whom correspondence should be addressed.
Sensors 2023, 23(10), 4743; https://doi.org/10.3390/s23104743
Submission received: 9 March 2023 / Revised: 4 May 2023 / Accepted: 12 May 2023 / Published: 14 May 2023
(This article belongs to the Special Issue Metrology of Shock Waves)

Abstract

Shock tubes can carry out dynamic mechanical impact tests on civil engineering structures. The current shock tubes mostly use an explosion with aggregate charge to obtain shock waves. Limited effort has been made to study the overpressure field in shock tubes with multi-point initiation. In this paper, the overpressure fields in a shock tube under the conditions of single-point initiation, multi-point simultaneous initiation, and multi-point delayed initiation have been analyzed by combining experiments and numerical simulations. The numerical results match well with the experimental data, which indicates that the computational model and method used can accurately simulate the blast flow field in a shock tube. For the same charge mass, the peak overpressure at the exit of the shock tube with the multi-point simultaneous initiation is smaller than that with single-point initiation. As the shock waves are focused on the wall, the maximum overpressure on the wall of the explosion chamber near the explosion zone is not reduced. The maximum overpressure on the wall of the explosion chamber can be effectively reduced by a six-point delayed initiation. When the interval time is less than 10 ms, the peak overpressure at the nozzle outlet decreases linearly with the interval of the explosion. When the interval time is greater than 10 ms, the overpressure peak remains unchanged.
Keywords: shock tube; overpressure; multi-point initiation; numerical simulation shock tube; overpressure; multi-point initiation; numerical simulation

Share and Cite

MDPI and ACS Style

Chen, Z.; Ren, H.; Zhao, Q.; Zhou, S.; Long, Z.; Liu, W. Analysis of the Overpressure Fields in a Shock Tube with Multi-Point Initiation. Sensors 2023, 23, 4743. https://doi.org/10.3390/s23104743

AMA Style

Chen Z, Ren H, Zhao Q, Zhou S, Long Z, Liu W. Analysis of the Overpressure Fields in a Shock Tube with Multi-Point Initiation. Sensors. 2023; 23(10):4743. https://doi.org/10.3390/s23104743

Chicago/Turabian Style

Chen, Zhuo, Huiqi Ren, Qiang Zhao, Songbai Zhou, Zhilin Long, and Wei Liu. 2023. "Analysis of the Overpressure Fields in a Shock Tube with Multi-Point Initiation" Sensors 23, no. 10: 4743. https://doi.org/10.3390/s23104743

APA Style

Chen, Z., Ren, H., Zhao, Q., Zhou, S., Long, Z., & Liu, W. (2023). Analysis of the Overpressure Fields in a Shock Tube with Multi-Point Initiation. Sensors, 23(10), 4743. https://doi.org/10.3390/s23104743

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