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Article

The Effect of Scaling Building Configuration Blast Experiments on Positive Phase Blast Wave Parameters

by
Sherlyn Gabriel
1,*,
Jack Denny
2,
Steeve Chung Kim Yuen
1,
Genevieve S. Langdon
1,3 and
Reuben A. Govender
1
1
Blast Impact Survivability Research Centre (BISRU), Department of Mechanical Engineering, University of Cape Town, Rondebosch 7700, South Africa
2
Department of Civil, Maritime & Environmental Engineering, University of Southampton, Boldrewood Innovation Campus, Burgess Road, Southampton SO16 7QF, UK
3
Department of Civil and Structural Engineering, University of Sheffield, Mappin Street, Sheffield S1 3JD, UK
*
Author to whom correspondence should be addressed.
Appl. Sci. 2023, 13(10), 5956; https://doi.org/10.3390/app13105956
Submission received: 5 April 2023 / Revised: 5 May 2023 / Accepted: 6 May 2023 / Published: 12 May 2023
(This article belongs to the Special Issue Explosion Effects in the Built Environment)

Abstract

Explosions in an urban setting can have a significant negative impact. There is a need to further understand the loading effects caused by the blast’s interaction with structures. In conjunction with this, the effects of scaling and understanding the limitations of laboratory experiments are equally important given the cost incurred for full-scale experiments. The aim of this study was to determine the scaling effects on blast wave parameters found for reduced-scale urban blast scenario laboratory experiments. This paper presents the results of numerical modelling and physical experiments on detonating cuboidal PE-4 charges and measuring the pressure in direct line of sight and at three distinct positions around the corner of a small-scale “building” parallel to the rear wall. Two scales were used, namely 75% and 100%. Inter-scaling between 75% and 100% worked fairly well for positions shielded by the corner of the wall. Additionally, the lab-scale results were compared to similar (but not identical) field trials at an equivalent scale of 250%. The comparison between lab-scale idealised testing and the larger-scale field trials published by Gajewksi and Sielicki in 2020, indicated sensitivity to factors such as detonator positioning, explosive material, charge confinement/mounting, building surface roughness, and environment.
Keywords: blast; urban blast effects; scaling; blast resilience; explosion modelling blast; urban blast effects; scaling; blast resilience; explosion modelling

Share and Cite

MDPI and ACS Style

Gabriel, S.; Denny, J.; Chung Kim Yuen, S.; Langdon, G.S.; Govender, R.A. The Effect of Scaling Building Configuration Blast Experiments on Positive Phase Blast Wave Parameters. Appl. Sci. 2023, 13, 5956. https://doi.org/10.3390/app13105956

AMA Style

Gabriel S, Denny J, Chung Kim Yuen S, Langdon GS, Govender RA. The Effect of Scaling Building Configuration Blast Experiments on Positive Phase Blast Wave Parameters. Applied Sciences. 2023; 13(10):5956. https://doi.org/10.3390/app13105956

Chicago/Turabian Style

Gabriel, Sherlyn, Jack Denny, Steeve Chung Kim Yuen, Genevieve S. Langdon, and Reuben A. Govender. 2023. "The Effect of Scaling Building Configuration Blast Experiments on Positive Phase Blast Wave Parameters" Applied Sciences 13, no. 10: 5956. https://doi.org/10.3390/app13105956

APA Style

Gabriel, S., Denny, J., Chung Kim Yuen, S., Langdon, G. S., & Govender, R. A. (2023). The Effect of Scaling Building Configuration Blast Experiments on Positive Phase Blast Wave Parameters. Applied Sciences, 13(10), 5956. https://doi.org/10.3390/app13105956

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