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Mitigation of blast loading through blast–obstacle interaction

Journal articles  - Journal Article
Alshammari, OG; Isaac, OS; Clarke, SD; Rigby, SE
Published in: International Journal of Protective Structures
September 1, 2023

Obstructing the passage of blast waves is an effective method of mitigating blast pressures downstream of the obstacle. To this end, the interaction between a blast wave and a simplified structural shape, such as a cylinder, has been widely investigated to understand the complex flow pattern that ensues around the obstacle. The patterns include the interference zones of the incident wave, the diffracted wave, and other secondary waves in the downstream region. Such zones are responsible for causing significant modifications to the blast wave parameters. This research aims to identify and study the factors that serve to mitigate the resulting blast loads downstream of a cylindrical obstacle – both on the ground, and on a rigid wall target that the obstacle is aiming to protect. Inputs from this numerical study are also used to develop a fast-running predictive method based on an artificial neural network (ANN) model. It was found that the size of the cylinder, the strength of the blast wave, the position of the cylindrical obstruction, and the target length, all have remarkable effects on the development of the complex flow-field downstream, and on the impulse mitigation on a reflective target. A number of key mitigation mechanisms are identified, namely shadowing and interference, and their origins and significance are discussed. An ANN model trained using scaled input parameters could successfully predict impulse values on such a reflective target. Using this model to predict the response of previously unseen configurations (for the ANN) gave excellent correlation, thereby demonstrating the high fidelity of this fast-running tool, and its ability to predict the effectiveness of various wave-cylinder interactions in mitigating blast loading.

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Published In

International Journal of Protective Structures

DOI

EISSN

2041-420X

ISSN

2041-4196

Publication Date

September 1, 2023

Volume

14

Issue

3

Start / End Page

357 / 389

Related Subject Headings

  • 4017 Mechanical engineering
  • 4016 Materials engineering
  • 4005 Civil engineering
 

Citation

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Alshammari, O. G., Isaac, O. S., Clarke, S. D., & Rigby, S. E. (2023). Mitigation of blast loading through blast–obstacle interaction. International Journal of Protective Structures, 14(3), 357–389. https://doi.org/10.1177/20414196221115869
Alshammari, O. G., O. S. Isaac, S. D. Clarke, and S. E. Rigby. “Mitigation of blast loading through blast–obstacle interaction.” International Journal of Protective Structures 14, no. 3 (September 1, 2023): 357–89. https://doi.org/10.1177/20414196221115869.
Alshammari OG, Isaac OS, Clarke SD, Rigby SE. Mitigation of blast loading through blast–obstacle interaction. International Journal of Protective Structures. 2023 Sep 1;14(3):357–89.
Alshammari, O. G., et al. “Mitigation of blast loading through blast–obstacle interaction.” International Journal of Protective Structures, vol. 14, no. 3, Sept. 2023, pp. 357–89. Scopus, doi:10.1177/20414196221115869.
Alshammari OG, Isaac OS, Clarke SD, Rigby SE. Mitigation of blast loading through blast–obstacle interaction. International Journal of Protective Structures. 2023 Sep 1;14(3):357–389.
Journal cover image

Published In

International Journal of Protective Structures

DOI

EISSN

2041-420X

ISSN

2041-4196

Publication Date

September 1, 2023

Volume

14

Issue

3

Start / End Page

357 / 389

Related Subject Headings

  • 4017 Mechanical engineering
  • 4016 Materials engineering
  • 4005 Civil engineering