Comparative analysis of blast prediction software for far-field shock wave effects behind a blast wall

Date published

2024-12-31

Free to read from

2024-11-27

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SAGE

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Article

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2041-4196

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Citation

Chester A, Hazael R, Critchley R. (2024) Comparative analysis of blast prediction software for far-field shock wave effects behind a blast wall. International Journal of Protective Structures, Available online 12 September 2024

Abstract

This paper investigates a selection of current and emerging software used in the prediction of overpressure generated through the detonation of a high explosive in the far field behind a blast wall. In particular, this paper compares the software Autodyn, blastFoam, ProSAir, Viper::Blast and WALAIR++. These packages are compared by simulating a 100 kg TNT explosive charge at a stand-off distance of 25 m from a complex structure, then reviewing the performance in terms of the overpressure results, speed of each modelling package, the degree of effect from mesh, and domain sizes and ease of use. A live experimental trial representing the simulation was also performed, although it used a similar but different explosive, for a high-level comparison. The live-trial instrumentation design details are reviewed and compared with best practice. The choice of software is found to lead to variations in peak pressure predictions of 28%, specific impulse by 10% and the simulation speed can vary by a factor of up to 1600 for this type of study. This shows that the choice of blast software package can have a significant impact on the accuracy and attainability of blast predictions.

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Github

Keywords

simulation, blast testing, computational modelling, high explosives, 4005 Civil Engineering, 40 Engineering, 4016 Materials Engineering, 4017 Mechanical Engineering, Bioengineering, 4005 Civil engineering, 4016 Materials engineering, 4017 Mechanical engineering

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Attribution 4.0 International

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